Gene Symbol
Evc2
Entrez Gene ID
68525
Full Name
EvC ciliary complex subunit 2
Synonyms
1110017L09Rik,Lbn,limbin
General protein information
Preferred NamesEvC ciliary complex subunit 2
Nameslimbin Ellis van Creveld syndrome 2 homolog
Gene Type
protein-coding
Organism
Mus musculus(house mouse)
Genome
Chromosome: 5
Map Location: 5|5 B3
Homo sapiens (human)
EVC2
NP_667338.3
Pan troglodytes (chimpanzee)
EVC2
XP_001155684.1
Canis lupus familiaris (dog)
EVC2
XP_005618640.1
Bos taurus (cattle)
EVC2
NP_776352.1
Xenopus tropicalis (tropical clawed frog)
evc2
XP_002939100.2
Mus musculus (house mouse)
Evc2
NP_666032.1
Rattus norvegicus (Norway rat)
Evc2
NP_001099482.1
Gallus gallus (chicken)
EVC2
NP_001073217.1
EVC2
XP_001118862.2
Related articles in PubMed
The Role of Ellis-Van Creveld 2(EVC2) in Mice During Cranial Bone Development.
Kwon EK, Louie K, Kulkarni A, Yatabe M, Ruellas ACO, Snider TN, Mochida Y, Cevidanes LHS, Mishina Y, Zhang H Anatomical record (Hoboken, N.J. : 2007)301(1)46-55(2018 Jan)
Loss of Function of Evc2 in Dental Mesenchyme Leads to Hypomorphic Enamel.
Zhang H, Takeda H, Tsuji T, Kamiya N, Kunieda T, Mochida Y, Mishina Y Journal of dental research96(4)421-429(2017 Apr)
Elevated Fibroblast Growth Factor Signaling Is Critical for the Pathogenesis of the Dwarfism in Evc2/Limbin Mutant Mice.
Zhang H, Kamiya N, Tsuji T, Takeda H, Scott G, Rajderkar S, Ray MK, Mochida Y, Allen B, Lefebvre V, Hung IH, Ornitz DM, Kunieda T, Mishina Y PLoS genetics12(12)e1006510(2016 Dec)
Expression of Evc2 in craniofacial tissues and craniofacial bone defects in Evc2 knockout mouse.
Badri MK, Zhang H, Ohyama Y, Venkitapathi S, Alamoudi A, Kamiya N, Takeda H, Ray M, Scott G, Tsuji T, Kunieda T, Mishina Y, Mochida Y Archives of oral biology68142-52(2016 Aug)
Cilia gene mutations cause atrioventricular septal defects by multiple mechanisms.
Burnicka-Turek O, Steimle JD, Huang W, Felker L, Kamp A, Kweon J, Peterson M, Reeves RH, Maslen CL, Gruber PJ, Yang XH, Shendure J, Moskowitz IP Human molecular genetics25(14)3011-3028(2016 07)
GeneRIFs: Gene References Into Functions What's a GeneRIF?
The following Evc2 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Evc2 cDNA ORF which is encoded by the open reading frame (ORF) sequence. ORF sequences can be delivered in our standard vector, pcDNA3.1+ /C-(K)DYK or the vector of your choice as an expression/transfection-ready ORF clone. Not the clone you want? Click here to find your clone.
CloneID
OMu12012
Clone ID Related Accession (Same CDS sequence)
NM_145920.3
Accession Version
NM_145920.3 Latest version!
Documents for ORF clone product in default vector
Sequence Information
ORF Nucleotide Sequence (Length: 3663bp)
Protein sequence
SNP
Vector
pcDNA3.1+ /C-(K)DYK or customized vector
User Manual
Clone information
Clone Map
MSDS
Tag on pcDNA3.1+ /C-(K)DYK
C terminal DYKDDDDK tags
ORF Insert Method
CloneEZ™ Seamless cloning technology
Insert Structure
linear
Update Date
2019-02-21
Organism
Mus musculus(house mouse)
Product
limbin precursor
Comment
Comment: VALIDATED REFSEQ: This record has undergone validation or preliminary review. The reference sequence was derived from BY270131.1, AB083066.1 and AW548747.2. On Aug 15, 2009 this sequence version replaced NM_145920.2.
Publication Note: This RefSeq record includes a subset of the publications that are available for this gene. Please see the Gene record to access additional publications.
##Evidence-Data-START##
Transcript exon combination :: BC064473.1, SRR1660817.180071.1 [ECO:0000332]
RNAseq introns :: single sample supports all introns SAMN00849374, SAMN00849375 [ECO:0000348]
##Evidence-Data-END##
COMPLETENESS: complete on the 3' end.
1 61 121 181 241 301 361 421 481 541 601 661 721 781 841 901 961 1021 1081 1141 1201 1261 1321 1381 1441 1501 1561 1621 1681 1741 1801 1861 1921 1981 2041 2101 2161 2221 2281 2341 2401 2461 2521 2581 2641 2701 2761 2821 2881 2941 3001 3061 3121 3181 3241 3301 3361 3421 3481 3541 3601 3661 ATGGGGGCGA CGGGCCCCAC GGGCGCTGGG GGACGAGCCA CGTGGGTGCT GGCTGGGAAT ATCCTGGCCG CTGCCCTGGT ACTGGGCTCG GGTCCGCGTG CACTTCCACC ATCCTTCCCT GCCCTGGGCC CAGGGTCACC ATCTCGGCCC GGCCCAGCAG GACCCTGGGC AAGCTCGCAG TACAGCGATA TTTCAAGAGA AGCCCGAGGT CCCTTTGAGA ATGGAGTGAT ATTTCAAAAA TGCTCACTGG TGTCTGGGCA GAGCGAATCG CAGACCATGC ACGTGCAGCT GTCCGTGAAC AACACCAGGA CGCCCACATC AGTCAACCTT TCGAACCTGC TCGTGCTAGA TGAGATCACT GGCCTTGCTG TGAAGGAGTC GCCTGGAAAT AATACTCAGG ATGGAATCCA GACTTTCAGA AAGAGCTTTC TGCAAGTGGG AGAATGCTAC TCTGTCAGCT ACACAGCCTC GCTGGACCCC ACAGCCCTTG GGACTGGGGA GAGCCTGGAT CTTCCTGCCC GGCTCATCTT TCAGAGCCCC TCACAGAACA GAACTCAGCT AAAAGCCCCC TTTACCATCA CAGTGGAAGA AAAGATAATG GTTCTTCCTA ACCATGGTCT TCACGCAGCA GGCTTCATCG CAGCCTTCCT CATCTCCCTC CTCCTGACCG TGGCAGCCCT GTTCTTCTTG GCGAGGGGTC GATGTCTGCA GGGAGGCATG CTGTCCAGAT GCCGGATTCA GCATCCTGAG AACAAGCTGG AGCCCTCGCC CTTCACCTCT GCTAACGGTG TGAGCCAGGA CCTTTCCCTC AATGACCAAG TGGTTGCCAT CCTGACTTCT GAGGAGCCTG GGAGCATGCT TCAAGCCCTA GAAGAGTTGG AGATCGCAAC CCTGAATCAG GCAGATGCGG ATCTGGAGGC TTGTCGAAAC CAGATTAGTA AGGACATCAT TGCCCTTTTG ATGAAGAATC TGGTCAGCGG TGGTCACCTC TCTCCGCAAA CAGAAAGGAA GATGGCCGCT GCTTTCAAAA AGCAGTTTCT GCTGTTGGAA AATGAAATAC AGGAGGAGTA TGAGCGGAAG ATGTTGGCAC TGACGGCAGA GTGTGACCTA GAGATGAGGA AGAAGACAGA AAACCAGTAC CAGAGGGAGA TGGTGGCCAT GGAGGAAGCA GAAGAGGTGT TGAAGAGAGT TAGCGAGAGG TCTGCTGCCG AGTGCAGCAG CCTTTTGCGG ACCCTCCATG GGCTGGAGCA GGAGGACATG CAGAGGTCCC TTACTCTGGA CCAAGCCGAG GACTTTGCTC AAGCACACAG GCAGCTGGCT GTTTTCCAGA GGAATGAATT ACACAGCATC GTCTATACCC AGATACAGAG TGCTGTCTCC AAAGGGGAAC TGAGGCCTGA GGTGGCTAAA ATGATGCTGC AAGACTACTC TAAAACACAG GAGAGTGTAG AAGAGCTGAT GGACTTCTTC CAGGCCACCA AGCGATACCA TCTCAGCAAG AGGTTTGGCC ACAGAGAGTA CCTGGTCCAG AGACTGCAGG CCATGGAGAC CCGGGTGCAA GGGCTGCTGA ACACCGCGGC TACCCAGCTA ACAAGCCTCA TCCATAAACA TGAGAGGGCT GGCTACTTGG ATGAAGATCA GATGGAAACG CTATTGGAGC GTGCACAGAC AGAAACCTTT TCTATAAAAC AGAAGCTGGA CAATGACTTA AAGCAGGAAA AGAAAAGGCT CCACCAGAGA TTAATAACCA GGAGGCGGCG AGAGCTTCTG CAGAAGCACA AGGAGCAGCA GAAGGAGCAG GTGTCCCTTG GCGAGGCCTC CAGCACCGCG GAGGACGCAG TCCAGTACCT GCACCAGTGG AGGAGCGTGA TGGCCGAGCA CACCGCTGCC CTGGAGGAGC TGCAGGAACG TCTGGACCAG GCTGCCCTGG ATGACCTCCG GGTCCTGACT GTGTCGCTGT CGGAGAAAGC CACGGAAGAG CTGAGGCGCC TGCAGAGCAC GGCCATGACA CAGGAGCTGC TGAAGCGCAG TGCTCCCTGG CTCTTCCTGC AGCAGATCTT AGAGGAGCAC AGCCGGGAGT CTGCGGCTCG CACCACGCAA CTGGAGGCAG AGGAGAGGGA ACGTGGCCAG GAGCTGGTGC AGGGCGTGAG GCAGAGGCTA CAGCAGGATG CACTGGAGGC CTACACGGAA GAGCAGGCAG AGCTGAGGCA CTGGGAGCAC TTGGTGTTCA TGAAACTCTG CTGTGCGGCC ATCTCATTGT CTGAAGAAGA CCTGCTCCGG GTAAGGCAGG AGGCACAGGG CTGCTTCAGC CAGCTGGACC GGAGCTTGGC CCTCCCCAGA GTCCGTGCAC GAGTGTTGCA GCAGCAGGCG CAGATGGCCT GGCGGGAAGC AGAGTTTCGG AAACTGGACC AGGCCCTGGC TGCGCCTGAG CTGCAGTCCA AGGCAAGAAA GCTGCGTTCC AAGGGCAGAG GCAAGGCCGA TCTTCTGAAG AAGAACCTGG AGGATAAGAT CCGACTATTC GAGGAGCGGG CCCCTGTAGA ACTGGCTGAC CAGGTGCGAG GGGAATTGCT CCAAGAGAGG GTCCAGAGGC TGGAGGCCCA GGAGGCGCAC TTTGCTGAGT CACTTGTGGC TCTGCAGTTC CAGAAGGTGG CCCGGGCTGC TGAGACCCTC TCAGTCTACA CCGCCCTGCT CAGCATTCAA GACCTGCTGC TGGGGGAGCT GAGTGAGTCG GAGACCCTGA CCAAGTCAGC CTGTGTGCAG ATCCTGGAGT CCCACAGGCC GGAGCTGCAG GAGCTGCAGG AGCTGGAGAG GAAGCTGGAG GACCAGCTGG TGCAGCAGGA AGAGGCCGAG CAGCAGCGGG TCCTGGAGAG CTGGCAGCGG TGGGCGGCCG ATGGACCTGG GCTGAGCGAA CCTGAGGAGA TGGATCCTGA AAGGCAGGTC TCTGCCATCC TGCGGCAAGC CCTGAACAAG GGCCAGAAGC TGCTGGAGCA GCATCAGCAG AGGGTGAGAG AGGAGTGGCA GAACGGTGCG GTGCTGGAAG ATTCTCTGGA AAGCATTGAA GCTGACACCA TGGCCAGCCT TTGCAGCCAG GGACTGAGGC TGGTGTCATA CCTCTCAAGG ATGACAATGG TACCAGGCAG CACACTACTG CGACTCCTGA GTGTGGTGCT TCCAGCGGCT TCACAGCCTC AGCTACTGGC CCTGCTGGAC GCAGTCAGTG AGAAGCACTC CGACCACACA GCTGAGAATG AGAGCAGTGG TGAGCAGGCT CAGGCAGAGC AGAGCAAGAG GAGGAAACAC CAAGTTTGGT GGAAGGTTTT GGACAGCAGA TTCAGAGCAG ATCTGGTGAG TCAAGGACTG GAGAGGATGC TCTGGGCCCG CCAGAAGAAG GAGCGCATAT TGAAGAAGAT ATATGTTCCC GTCCAGGAGA GGGTGATGTT TCCTGGGAAA GGAAGCTGGC CACACCTGTC CCTAGAACCC ATTGGAGAAC TGGCTCCCAT CCCCATCACT GGGGCAGACG CTATGGACAT ATTAAACACG GGAGAAAAGA TCTTTGTATT CAGAAGCCCA AGGGAGCCCG AGATCTCTTT GCGTGTTCCT CCCAGGAGGA AAAAGAATTT CCTGAATGCC AAGAAGGCCA ACAGGGCCTT GGGCTTGGAC TGA
The stop codons will be deleted if pcDNA3.1+ /C-(K)DYK vector is selected.
RefSeq
NP_666032.1
CDS 71..3733
Translation
Target ORF information:
RefSeq Version NM_145920.3
Organism Mus musculus(house mouse)
Definition Mus musculus EvC ciliary complex subunit 2 (Evc2), mRNA.
Target ORF information:
Epitope DYKDDDDK
Bacterial selection AMPR
Mammalian selection NeoR
Vector pcDNA3.1+ /C-(K)DYK
NM_145920.3
ORF Insert Sequence:
1 61 121 181 241 301 361 421 481 541 601 661 721 781 841 901 961 1021 1081 1141 1201 1261 1321 1381 1441 1501 1561 1621 1681 1741 1801 1861 1921 1981 2041 2101 2161 2221 2281 2341 2401 2461 2521 2581 2641 2701 2761 2821 2881 2941 3001 3061 3121 3181 3241 3301 3361 3421 3481 3541 3601 3661 ATGGGGGCGA CGGGCCCCAC GGGCGCTGGG GGACGAGCCA CGTGGGTGCT GGCTGGGAAT ATCCTGGCCG CTGCCCTGGT ACTGGGCTCG GGTCCGCGTG CACTTCCACC ATCCTTCCCT GCCCTGGGCC CAGGGTCACC ATCTCGGCCC GGCCCAGCAG GACCCTGGGC AAGCTCGCAG TACAGCGATA TTTCAAGAGA AGCCCGAGGT CCCTTTGAGA ATGGAGTGAT ATTTCAAAAA TGCTCACTGG TGTCTGGGCA GAGCGAATCG CAGACCATGC ACGTGCAGCT GTCCGTGAAC AACACCAGGA CGCCCACATC AGTCAACCTT TCGAACCTGC TCGTGCTAGA TGAGATCACT GGCCTTGCTG TGAAGGAGTC GCCTGGAAAT AATACTCAGG ATGGAATCCA GACTTTCAGA AAGAGCTTTC TGCAAGTGGG AGAATGCTAC TCTGTCAGCT ACACAGCCTC GCTGGACCCC ACAGCCCTTG GGACTGGGGA GAGCCTGGAT CTTCCTGCCC GGCTCATCTT TCAGAGCCCC TCACAGAACA GAACTCAGCT AAAAGCCCCC TTTACCATCA CAGTGGAAGA AAAGATAATG GTTCTTCCTA ACCATGGTCT TCACGCAGCA GGCTTCATCG CAGCCTTCCT CATCTCCCTC CTCCTGACCG TGGCAGCCCT GTTCTTCTTG GCGAGGGGTC GATGTCTGCA GGGAGGCATG CTGTCCAGAT GCCGGATTCA GCATCCTGAG AACAAGCTGG AGCCCTCGCC CTTCACCTCT GCTAACGGTG TGAGCCAGGA CCTTTCCCTC AATGACCAAG TGGTTGCCAT CCTGACTTCT GAGGAGCCTG GGAGCATGCT TCAAGCCCTA GAAGAGTTGG AGATCGCAAC CCTGAATCAG GCAGATGCGG ATCTGGAGGC TTGTCGAAAC CAGATTAGTA AGGACATCAT TGCCCTTTTG ATGAAGAATC TGGTCAGCGG TGGTCACCTC TCTCCGCAAA CAGAAAGGAA GATGGCCGCT GCTTTCAAAA AGCAGTTTCT GCTGTTGGAA AATGAAATAC AGGAGGAGTA TGAGCGGAAG ATGTTGGCAC TGACGGCAGA GTGTGACCTA GAGATGAGGA AGAAGACAGA AAACCAGTAC CAGAGGGAGA TGGTGGCCAT GGAGGAAGCA GAAGAGGTGT TGAAGAGAGT TAGCGAGAGG TCTGCTGCCG AGTGCAGCAG CCTTTTGCGG ACCCTCCATG GGCTGGAGCA GGAGGACATG CAGAGGTCCC TTACTCTGGA CCAAGCCGAG GACTTTGCTC AAGCACACAG GCAGCTGGCT GTTTTCCAGA GGAATGAATT ACACAGCATC GTCTATACCC AGATACAGAG TGCTGTCTCC AAAGGGGAAC TGAGGCCTGA GGTGGCTAAA ATGATGCTGC AAGACTACTC TAAAACACAG GAGAGTGTAG AAGAGCTGAT GGACTTCTTC CAGGCCACCA AGCGATACCA TCTCAGCAAG AGGTTTGGCC ACAGAGAGTA CCTGGTCCAG AGACTGCAGG CCATGGAGAC CCGGGTGCAA GGGCTGCTGA ACACCGCGGC TACCCAGCTA ACAAGCCTCA TCCATAAACA TGAGAGGGCT GGCTACTTGG ATGAAGATCA GATGGAAACG CTATTGGAGC GTGCACAGAC AGAAACCTTT TCTATAAAAC AGAAGCTGGA CAATGACTTA AAGCAGGAAA AGAAAAGGCT CCACCAGAGA TTAATAACCA GGAGGCGGCG AGAGCTTCTG CAGAAGCACA AGGAGCAGCA GAAGGAGCAG GTGTCCCTTG GCGAGGCCTC CAGCACCGCG GAGGACGCAG TCCAGTACCT GCACCAGTGG AGGAGCGTGA TGGCCGAGCA CACCGCTGCC CTGGAGGAGC TGCAGGAACG TCTGGACCAG GCTGCCCTGG ATGACCTCCG GGTCCTGACT GTGTCGCTGT CGGAGAAAGC CACGGAAGAG CTGAGGCGCC TGCAGAGCAC GGCCATGACA CAGGAGCTGC TGAAGCGCAG TGCTCCCTGG CTCTTCCTGC AGCAGATCTT AGAGGAGCAC AGCCGGGAGT CTGCGGCTCG CACCACGCAA CTGGAGGCAG AGGAGAGGGA ACGTGGCCAG GAGCTGGTGC AGGGCGTGAG GCAGAGGCTA CAGCAGGATG CACTGGAGGC CTACACGGAA GAGCAGGCAG AGCTGAGGCA CTGGGAGCAC TTGGTGTTCA TGAAACTCTG CTGTGCGGCC ATCTCATTGT CTGAAGAAGA CCTGCTCCGG GTAAGGCAGG AGGCACAGGG CTGCTTCAGC CAGCTGGACC GGAGCTTGGC CCTCCCCAGA GTCCGTGCAC GAGTGTTGCA GCAGCAGGCG CAGATGGCCT GGCGGGAAGC AGAGTTTCGG AAACTGGACC AGGCCCTGGC TGCGCCTGAG CTGCAGTCCA AGGCAAGAAA GCTGCGTTCC AAGGGCAGAG GCAAGGCCGA TCTTCTGAAG AAGAACCTGG AGGATAAGAT CCGACTATTC GAGGAGCGGG CCCCTGTAGA ACTGGCTGAC CAGGTGCGAG GGGAATTGCT CCAAGAGAGG GTCCAGAGGC TGGAGGCCCA GGAGGCGCAC TTTGCTGAGT CACTTGTGGC TCTGCAGTTC CAGAAGGTGG CCCGGGCTGC TGAGACCCTC TCAGTCTACA CCGCCCTGCT CAGCATTCAA GACCTGCTGC TGGGGGAGCT GAGTGAGTCG GAGACCCTGA CCAAGTCAGC CTGTGTGCAG ATCCTGGAGT CCCACAGGCC GGAGCTGCAG GAGCTGCAGG AGCTGGAGAG GAAGCTGGAG GACCAGCTGG TGCAGCAGGA AGAGGCCGAG CAGCAGCGGG TCCTGGAGAG CTGGCAGCGG TGGGCGGCCG ATGGACCTGG GCTGAGCGAA CCTGAGGAGA TGGATCCTGA AAGGCAGGTC TCTGCCATCC TGCGGCAAGC CCTGAACAAG GGCCAGAAGC TGCTGGAGCA GCATCAGCAG AGGGTGAGAG AGGAGTGGCA GAACGGTGCG GTGCTGGAAG ATTCTCTGGA AAGCATTGAA GCTGACACCA TGGCCAGCCT TTGCAGCCAG GGACTGAGGC TGGTGTCATA CCTCTCAAGG ATGACAATGG TACCAGGCAG CACACTACTG CGACTCCTGA GTGTGGTGCT TCCAGCGGCT TCACAGCCTC AGCTACTGGC CCTGCTGGAC GCAGTCAGTG AGAAGCACTC CGACCACACA GCTGAGAATG AGAGCAGTGG TGAGCAGGCT CAGGCAGAGC AGAGCAAGAG GAGGAAACAC CAAGTTTGGT GGAAGGTTTT GGACAGCAGA TTCAGAGCAG ATCTGGTGAG TCAAGGACTG GAGAGGATGC TCTGGGCCCG CCAGAAGAAG GAGCGCATAT TGAAGAAGAT ATATGTTCCC GTCCAGGAGA GGGTGATGTT TCCTGGGAAA GGAAGCTGGC CACACCTGTC CCTAGAACCC ATTGGAGAAC TGGCTCCCAT CCCCATCACT GGGGCAGACG CTATGGACAT ATTAAACACG GGAGAAAAGA TCTTTGTATT CAGAAGCCCA AGGGAGCCCG AGATCTCTTT GCGTGTTCCT CCCAGGAGGA AAAAGAATTT CCTGAATGCC AAGAAGGCCA ACAGGGCCTT GGGCTTGGAC TGA
The stop codons will be deleted if pcDNA3.1+ /C-(K)DYK vector is selected.
CloneID
OMu35177
Clone ID Related Accession (Same CDS sequence)
XM_006504082.3
, XM_006504082.2
Accession Version
XM_006504082.3 Latest version!
Documents for ORF clone product in default vector
Sequence Information
ORF Nucleotide Sequence (Length: 3258bp)
Protein sequence
SNP
Vector
pcDNA3.1+ /C-(K)DYK or customized vector
User Manual
Clone information
Clone Map
MSDS
Tag on pcDNA3.1+ /C-(K)DYK
C terminal DYKDDDDK tags
ORF Insert Method
CloneEZ™ Seamless cloning technology
Insert Structure
linear
Update Date
2019-08-07
Organism
Mus musculus(house mouse)
Product
limbin isoform X1
Comment
Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_000071.6) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process
On Aug 8, 2019 this sequence version replaced XM_006504082.2.
##Genome-Annotation-Data-START##
Annotation Provider :: NCBI
Annotation Status :: Full annotation
Annotation Name :: Mus musculus Annotation Release 108
Annotation Version :: 108
Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline
Annotation Software Version :: 8.2
Annotation Method :: Best-placed RefSeq; Gnomon
Features Annotated :: Gene; mRNA; CDS; ncRNA
##Genome-Annotation-Data-END##
1 61 121 181 241 301 361 421 481 541 601 661 721 781 841 901 961 1021 1081 1141 1201 1261 1321 1381 1441 1501 1561 1621 1681 1741 1801 1861 1921 1981 2041 2101 2161 2221 2281 2341 2401 2461 2521 2581 2641 2701 2761 2821 2881 2941 3001 3061 3121 3181 3241 ATGGAATCCA GACTTTCAGA AAGAGCTTTC TGCAAGTGGG AGAATGCTAC TCTGTCAGCT ACACAGCCTC GCTGGACCCC ACAGCCCTTG GGACTGGGGA GAGCCTGGAT CTTCCTGCCC GGCTCATCTT TCAGAGCCCC TCACAGAACT CAGCTAAAAG CCCCCTTTAC CATCACAGTG GAAGAAAAGA TAATGGTTCT TCCTAACCAT GGTCTTCACG CAGCAGGCTT CATCGCAGCC TTCCTCATCT CCCTCCTCCT GACCGTGGCA GCCCTGTTCT TCTTGGCGAG GGGTCGATGT CTGCAGGGAG GCATGCTGTC CAGATGCCGG ATTCAGCATC CTGAGAACAA GCTGGAGCCC TCGCCCTTCA CCTCTGCTAA CGGTGTGAGC CAGGACCTTT CCCTCAATGA CCAAGTGGTT GCCATCCTGA CTTCTGAGGA GCCTGGGAGC ATGCTTCAAG CCCTAGAAGA GTTGGAGATC GCAACCCTGA ATCAGGCAGA TGCGGATCTG GAGGCTTGTC GAAACCAGAT TAGTAAGGAC ATCATTGCCC TTTTGATGAA GAATCTGGTC AGCGGTGGTC ACCTCTCTCC GCAAACAGAA AGGAAGATGG CCGCTGCTTT CAAAAAGCAG TTTCTGCTGT TGGAAAATGA AATACAGGAG GAGTATGAGC GGAAGATGTT GGCACTGACG GCAGAGTGTG ACCTAGAGAT GAGGAAGAAG ACAGAAAACC AGTACCAGAG GGAGATGGTG GCCATGGAGG AAGCAGAAGA GGTGTTGAAG AGAGTTAGCG AGAGGTCTGC TGCCGAGTGC AGCAGCCTTT TGCGGACCCT CCATGGGCTG GAGCAGGAGG ACATGCAGAG GTCCCTTACT CTGGACCAAG CCGAGGACTT TGCTCAAGCA CACAGGCAGC TGGCTGTTTT CCAGAGGAAT GAATTACACA GCATCGTCTA TACCCAGATA CAGAGTGCTG TCTCCAAAGG GGAACTGAGG CCTGAGGTGG CTAAAATGAT GCTGCAAGAC TACTCTAAAA CACAGGAGAG TGTAGAAGAG CTGATGGACT TCTTCCAGGC CACCAAGCGA TACCATCTCA GCAAGAGGTT TGGCCACAGA GAGTACCTGG TCCAGAGACT GCAGGCCATG GAGACCCGGG TGCAAGGGCT GCTGAACACC GCGGCTACCC AGCTAACAAG CCTCATCCAT AAACATGAGA GGGCTGGCTA CTTGGATGAA GATCAGATGG AAACGCTATT GGAGCGTGCA CAGACAGAAA CCTTTTCTAT AAAACAGAAG CTGGACAATG ACTTAAAGCA GGAAAAGAAA AGGCTCCACC AGAGATTAAT AACCAGGAGG CGGCGAGAGC TTCTGCAGAA GCACAAGGAG CAGCAGAAGG AGCAGGTGTC CCTTGGCGAG GCCTCCAGCA CCGCGGAGGA CGCAGTCCAG TACCTGCACC AGTGGAGGAG CGTGATGGCC GAGCACACCG CTGCCCTGGA GGAGCTGCAG GAACGTCTGG ACCAGGCTGC CCTGGATGAC CTCCGGGTCC TGACTGTGTC GCTGTCGGAG AAAGCCACGG AAGAGCTGAG GCGCCTGCAG AGCACGGCCA TGACACAGGA GCTGCTGAAG CGCAGTGCTC CCTGGCTCTT CCTGCAGCAG ATCTTAGAGG AGCACAGCCG GGAGTCTGCG GCTCGCACCA CGCAACTGGA GGCAGAGGAG AGGGAACGTG GCCAGGAGCT GGTGCAGGGC GTGAGGCAGA GGCTACAGCA GGATGCACTG GAGGCCTACA CGGAAGAGCA GGCAGAGCTG AGGCACTGGG AGCACTTGGT GTTCATGAAA CTCTGCTGTG CGGCCATCTC ATTGTCTGAA GAAGACCTGC TCCGGGTAAG GCAGGAGGCA CAGGGCTGCT TCAGCCAGCT GGACCGGAGC TTGGCCCTCC CCAGAGTCCG TGCACGAGTG TTGCAGCAGC AGGCGCAGAT GGCCTGGCGG GAAGCAGAGT TTCGGAAACT GGACCAGGCC CTGGCTGCGC CTGAGCTGCA GTCCAAGGCA AGAAAGCTGC GTTCCAAGGG CAGAGGCAAG GCCGATCTTC TGAAGAAGAA CCTGGAGGAT AAGATCCGAC TATTCGAGGA GCGGGCCCCT GTAGAACTGG CTGACCAGGT GCGAGGGGAA TTGCTCCAAG AGAGGGTCCA GAGGCTGGAG GCCCAGGAGG CGCACTTTGC TGAGTCACTT GTGGCTCTGC AGTTCCAGAA GGTGGCCCGG GCTGCTGAGA CCCTCTCAGT CTACACCGCC CTGCTCAGCA TTCAAGACCT GCTGCTGGGG GAGCTGAGTG AGTCGGAGAC CCTGACCAAG TCAGCCTGTG TGCAGATCCT GGAGTCCCAC AGGCCGGAGC TGCAGGAGCT GCAGGAGCTG GAGAGGAAGC TGGAGGACCA GCTGGTGCAG CAGGAAGAGG CCGAGCAGCA GCGGGTCCTG GAGAGCTGGC AGCGGTGGGC GGCCGATGGA CCTGGGCTGA GCGAACCTGA GGAGATGGAT CCTGAAAGGC AGGTCTCTGC CATCCTGCGG CAAGCCCTGA ACAAGGGCCA GAAGCTGCTG GAGCAGCATC AGCAGAGGGT GAGAGAGGAG TGGCAGAACG GTGCGGTGCT GGAAGATTCT CTGGAAAGCA TTGAAGCTGA CACCATGGCC AGCCTTTGCA GCCAGGGACT GAGGCTGGTG TCATACCTCT CAAGGATGAC AATGGTACCA GGCAGCACAC TACTGCGACT CCTGAGTGTG GTGCTTCCAG CGGCTTCACA GCCTCAGCTA CTGGCCCTGC TGGACGCAGT CAGTGAGAAG CACTCCGACC ACACAGCTGA GAATGAGAGC AGTGGTGAGC AGGCTCAGGC AGAGCAGAGC AAGAGGAGGA AACACCAAGT TTGGTGGAAG GTTTTGGACA GCAGATTCAG AGCAGATCTG GTGAGTCAAG GACTGGAGAG GATGCTCTGG GCCCGCCAGA AGAAGGAGCG CATATTGAAG AAGATATATG TTCCCGTCCA GGAGAGGGTG ATGTTTCCTG GGAAAGGAAG CTGGCCACAC CTGTCCCTAG AACCCATTGG AGAACTGGCT CCCATCCCCA TCACTGGGGC AGACGCTATG GACATATTAA ACACGGGAGA AAAGATCTTT GTATTCAGAA GCCCAAGGGA GCCCGAGATC TCTTTGCGTG TTCCTCCCAG GAGGAAAAAG AATTTCCTGA ATGCCAAGAA GGCCAACAGG GCCTTGGGCT TGGACTGA
The stop codons will be deleted if pcDNA3.1+ /C-(K)DYK vector is selected.
RefSeq
XP_006504145.1
CDS 470..3727
Translation
Target ORF information:
RefSeq Version XM_006504082.3
Organism Mus musculus(house mouse)
Definition Mus musculus EvC ciliary complex subunit 2 (Evc2), transcript variant X1, mRNA.
Target ORF information:
Epitope DYKDDDDK
Bacterial selection AMPR
Mammalian selection NeoR
Vector pcDNA3.1+ /C-(K)DYK
XM_006504082.3
ORF Insert Sequence:
1 61 121 181 241 301 361 421 481 541 601 661 721 781 841 901 961 1021 1081 1141 1201 1261 1321 1381 1441 1501 1561 1621 1681 1741 1801 1861 1921 1981 2041 2101 2161 2221 2281 2341 2401 2461 2521 2581 2641 2701 2761 2821 2881 2941 3001 3061 3121 3181 3241 ATGGAATCCA GACTTTCAGA AAGAGCTTTC TGCAAGTGGG AGAATGCTAC TCTGTCAGCT ACACAGCCTC GCTGGACCCC ACAGCCCTTG GGACTGGGGA GAGCCTGGAT CTTCCTGCCC GGCTCATCTT TCAGAGCCCC TCACAGAACT CAGCTAAAAG CCCCCTTTAC CATCACAGTG GAAGAAAAGA TAATGGTTCT TCCTAACCAT GGTCTTCACG CAGCAGGCTT CATCGCAGCC TTCCTCATCT CCCTCCTCCT GACCGTGGCA GCCCTGTTCT TCTTGGCGAG GGGTCGATGT CTGCAGGGAG GCATGCTGTC CAGATGCCGG ATTCAGCATC CTGAGAACAA GCTGGAGCCC TCGCCCTTCA CCTCTGCTAA CGGTGTGAGC CAGGACCTTT CCCTCAATGA CCAAGTGGTT GCCATCCTGA CTTCTGAGGA GCCTGGGAGC ATGCTTCAAG CCCTAGAAGA GTTGGAGATC GCAACCCTGA ATCAGGCAGA TGCGGATCTG GAGGCTTGTC GAAACCAGAT TAGTAAGGAC ATCATTGCCC TTTTGATGAA GAATCTGGTC AGCGGTGGTC ACCTCTCTCC GCAAACAGAA AGGAAGATGG CCGCTGCTTT CAAAAAGCAG TTTCTGCTGT TGGAAAATGA AATACAGGAG GAGTATGAGC GGAAGATGTT GGCACTGACG GCAGAGTGTG ACCTAGAGAT GAGGAAGAAG ACAGAAAACC AGTACCAGAG GGAGATGGTG GCCATGGAGG AAGCAGAAGA GGTGTTGAAG AGAGTTAGCG AGAGGTCTGC TGCCGAGTGC AGCAGCCTTT TGCGGACCCT CCATGGGCTG GAGCAGGAGG ACATGCAGAG GTCCCTTACT CTGGACCAAG CCGAGGACTT TGCTCAAGCA CACAGGCAGC TGGCTGTTTT CCAGAGGAAT GAATTACACA GCATCGTCTA TACCCAGATA CAGAGTGCTG TCTCCAAAGG GGAACTGAGG CCTGAGGTGG CTAAAATGAT GCTGCAAGAC TACTCTAAAA CACAGGAGAG TGTAGAAGAG CTGATGGACT TCTTCCAGGC CACCAAGCGA TACCATCTCA GCAAGAGGTT TGGCCACAGA GAGTACCTGG TCCAGAGACT GCAGGCCATG GAGACCCGGG TGCAAGGGCT GCTGAACACC GCGGCTACCC AGCTAACAAG CCTCATCCAT AAACATGAGA GGGCTGGCTA CTTGGATGAA GATCAGATGG AAACGCTATT GGAGCGTGCA CAGACAGAAA CCTTTTCTAT AAAACAGAAG CTGGACAATG ACTTAAAGCA GGAAAAGAAA AGGCTCCACC AGAGATTAAT AACCAGGAGG CGGCGAGAGC TTCTGCAGAA GCACAAGGAG CAGCAGAAGG AGCAGGTGTC CCTTGGCGAG GCCTCCAGCA CCGCGGAGGA CGCAGTCCAG TACCTGCACC AGTGGAGGAG CGTGATGGCC GAGCACACCG CTGCCCTGGA GGAGCTGCAG GAACGTCTGG ACCAGGCTGC CCTGGATGAC CTCCGGGTCC TGACTGTGTC GCTGTCGGAG AAAGCCACGG AAGAGCTGAG GCGCCTGCAG AGCACGGCCA TGACACAGGA GCTGCTGAAG CGCAGTGCTC CCTGGCTCTT CCTGCAGCAG ATCTTAGAGG AGCACAGCCG GGAGTCTGCG GCTCGCACCA CGCAACTGGA GGCAGAGGAG AGGGAACGTG GCCAGGAGCT GGTGCAGGGC GTGAGGCAGA GGCTACAGCA GGATGCACTG GAGGCCTACA CGGAAGAGCA GGCAGAGCTG AGGCACTGGG AGCACTTGGT GTTCATGAAA CTCTGCTGTG CGGCCATCTC ATTGTCTGAA GAAGACCTGC TCCGGGTAAG GCAGGAGGCA CAGGGCTGCT TCAGCCAGCT GGACCGGAGC TTGGCCCTCC CCAGAGTCCG TGCACGAGTG TTGCAGCAGC AGGCGCAGAT GGCCTGGCGG GAAGCAGAGT TTCGGAAACT GGACCAGGCC CTGGCTGCGC CTGAGCTGCA GTCCAAGGCA AGAAAGCTGC GTTCCAAGGG CAGAGGCAAG GCCGATCTTC TGAAGAAGAA CCTGGAGGAT AAGATCCGAC TATTCGAGGA GCGGGCCCCT GTAGAACTGG CTGACCAGGT GCGAGGGGAA TTGCTCCAAG AGAGGGTCCA GAGGCTGGAG GCCCAGGAGG CGCACTTTGC TGAGTCACTT GTGGCTCTGC AGTTCCAGAA GGTGGCCCGG GCTGCTGAGA CCCTCTCAGT CTACACCGCC CTGCTCAGCA TTCAAGACCT GCTGCTGGGG GAGCTGAGTG AGTCGGAGAC CCTGACCAAG TCAGCCTGTG TGCAGATCCT GGAGTCCCAC AGGCCGGAGC TGCAGGAGCT GCAGGAGCTG GAGAGGAAGC TGGAGGACCA GCTGGTGCAG CAGGAAGAGG CCGAGCAGCA GCGGGTCCTG GAGAGCTGGC AGCGGTGGGC GGCCGATGGA CCTGGGCTGA GCGAACCTGA GGAGATGGAT CCTGAAAGGC AGGTCTCTGC CATCCTGCGG CAAGCCCTGA ACAAGGGCCA GAAGCTGCTG GAGCAGCATC AGCAGAGGGT GAGAGAGGAG TGGCAGAACG GTGCGGTGCT GGAAGATTCT CTGGAAAGCA TTGAAGCTGA CACCATGGCC AGCCTTTGCA GCCAGGGACT GAGGCTGGTG TCATACCTCT CAAGGATGAC AATGGTACCA GGCAGCACAC TACTGCGACT CCTGAGTGTG GTGCTTCCAG CGGCTTCACA GCCTCAGCTA CTGGCCCTGC TGGACGCAGT CAGTGAGAAG CACTCCGACC ACACAGCTGA GAATGAGAGC AGTGGTGAGC AGGCTCAGGC AGAGCAGAGC AAGAGGAGGA AACACCAAGT TTGGTGGAAG GTTTTGGACA GCAGATTCAG AGCAGATCTG GTGAGTCAAG GACTGGAGAG GATGCTCTGG GCCCGCCAGA AGAAGGAGCG CATATTGAAG AAGATATATG TTCCCGTCCA GGAGAGGGTG ATGTTTCCTG GGAAAGGAAG CTGGCCACAC CTGTCCCTAG AACCCATTGG AGAACTGGCT CCCATCCCCA TCACTGGGGC AGACGCTATG GACATATTAA ACACGGGAGA AAAGATCTTT GTATTCAGAA GCCCAAGGGA GCCCGAGATC TCTTTGCGTG TTCCTCCCAG GAGGAAAAAG AATTTCCTGA ATGCCAAGAA GGCCAACAGG GCCTTGGGCT TGGACTGA
The stop codons will be deleted if pcDNA3.1+ /C-(K)DYK vector is selected.
CloneID
OMu35177
Clone ID Related Accession (Same CDS sequence)
XM_006504082.3
, XM_006504082.2
Accession Version
XM_006504082.2
Documents for ORF clone product in default vector
Sequence Information
ORF Nucleotide Sequence (Length: 3258bp)
Protein sequence
SNP
Vector
pcDNA3.1+ /C-(K)DYK or customized vector
User Manual
Clone information
Clone Map
MSDS
Tag on pcDNA3.1+ /C-(K)DYK
C terminal DYKDDDDK tags
ORF Insert Method
CloneEZ™ Seamless cloning technology
Insert Structure
linear
Update Date
2016-06-21
Organism
Mus musculus(house mouse)
Product
limbin isoform X1
Comment
Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_000071.6) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process
On Jun 22, 2016 this sequence version replaced XM_006504082.1.
##Genome-Annotation-Data-START##
Annotation Provider :: NCBI
Annotation Status :: Full annotation
Annotation Version :: Mus musculus Annotation Release 106
Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline
Annotation Software Version :: 7.1
Annotation Method :: Best-placed RefSeq; Gnomon
Features Annotated :: Gene; mRNA; CDS; ncRNA
##Genome-Annotation-Data-END##
1 61 121 181 241 301 361 421 481 541 601 661 721 781 841 901 961 1021 1081 1141 1201 1261 1321 1381 1441 1501 1561 1621 1681 1741 1801 1861 1921 1981 2041 2101 2161 2221 2281 2341 2401 2461 2521 2581 2641 2701 2761 2821 2881 2941 3001 3061 3121 3181 3241 ATGGAATCCA GACTTTCAGA AAGAGCTTTC TGCAAGTGGG AGAATGCTAC TCTGTCAGCT ACACAGCCTC GCTGGACCCC ACAGCCCTTG GGACTGGGGA GAGCCTGGAT CTTCCTGCCC GGCTCATCTT TCAGAGCCCC TCACAGAACT CAGCTAAAAG CCCCCTTTAC CATCACAGTG GAAGAAAAGA TAATGGTTCT TCCTAACCAT GGTCTTCACG CAGCAGGCTT CATCGCAGCC TTCCTCATCT CCCTCCTCCT GACCGTGGCA GCCCTGTTCT TCTTGGCGAG GGGTCGATGT CTGCAGGGAG GCATGCTGTC CAGATGCCGG ATTCAGCATC CTGAGAACAA GCTGGAGCCC TCGCCCTTCA CCTCTGCTAA CGGTGTGAGC CAGGACCTTT CCCTCAATGA CCAAGTGGTT GCCATCCTGA CTTCTGAGGA GCCTGGGAGC ATGCTTCAAG CCCTAGAAGA GTTGGAGATC GCAACCCTGA ATCAGGCAGA TGCGGATCTG GAGGCTTGTC GAAACCAGAT TAGTAAGGAC ATCATTGCCC TTTTGATGAA GAATCTGGTC AGCGGTGGTC ACCTCTCTCC GCAAACAGAA AGGAAGATGG CCGCTGCTTT CAAAAAGCAG TTTCTGCTGT TGGAAAATGA AATACAGGAG GAGTATGAGC GGAAGATGTT GGCACTGACG GCAGAGTGTG ACCTAGAGAT GAGGAAGAAG ACAGAAAACC AGTACCAGAG GGAGATGGTG GCCATGGAGG AAGCAGAAGA GGTGTTGAAG AGAGTTAGCG AGAGGTCTGC TGCCGAGTGC AGCAGCCTTT TGCGGACCCT CCATGGGCTG GAGCAGGAGG ACATGCAGAG GTCCCTTACT CTGGACCAAG CCGAGGACTT TGCTCAAGCA CACAGGCAGC TGGCTGTTTT CCAGAGGAAT GAATTACACA GCATCGTCTA TACCCAGATA CAGAGTGCTG TCTCCAAAGG GGAACTGAGG CCTGAGGTGG CTAAAATGAT GCTGCAAGAC TACTCTAAAA CACAGGAGAG TGTAGAAGAG CTGATGGACT TCTTCCAGGC CACCAAGCGA TACCATCTCA GCAAGAGGTT TGGCCACAGA GAGTACCTGG TCCAGAGACT GCAGGCCATG GAGACCCGGG TGCAAGGGCT GCTGAACACC GCGGCTACCC AGCTAACAAG CCTCATCCAT AAACATGAGA GGGCTGGCTA CTTGGATGAA GATCAGATGG AAACGCTATT GGAGCGTGCA CAGACAGAAA CCTTTTCTAT AAAACAGAAG CTGGACAATG ACTTAAAGCA GGAAAAGAAA AGGCTCCACC AGAGATTAAT AACCAGGAGG CGGCGAGAGC TTCTGCAGAA GCACAAGGAG CAGCAGAAGG AGCAGGTGTC CCTTGGCGAG GCCTCCAGCA CCGCGGAGGA CGCAGTCCAG TACCTGCACC AGTGGAGGAG CGTGATGGCC GAGCACACCG CTGCCCTGGA GGAGCTGCAG GAACGTCTGG ACCAGGCTGC CCTGGATGAC CTCCGGGTCC TGACTGTGTC GCTGTCGGAG AAAGCCACGG AAGAGCTGAG GCGCCTGCAG AGCACGGCCA TGACACAGGA GCTGCTGAAG CGCAGTGCTC CCTGGCTCTT CCTGCAGCAG ATCTTAGAGG AGCACAGCCG GGAGTCTGCG GCTCGCACCA CGCAACTGGA GGCAGAGGAG AGGGAACGTG GCCAGGAGCT GGTGCAGGGC GTGAGGCAGA GGCTACAGCA GGATGCACTG GAGGCCTACA CGGAAGAGCA GGCAGAGCTG AGGCACTGGG AGCACTTGGT GTTCATGAAA CTCTGCTGTG CGGCCATCTC ATTGTCTGAA GAAGACCTGC TCCGGGTAAG GCAGGAGGCA CAGGGCTGCT TCAGCCAGCT GGACCGGAGC TTGGCCCTCC CCAGAGTCCG TGCACGAGTG TTGCAGCAGC AGGCGCAGAT GGCCTGGCGG GAAGCAGAGT TTCGGAAACT GGACCAGGCC CTGGCTGCGC CTGAGCTGCA GTCCAAGGCA AGAAAGCTGC GTTCCAAGGG CAGAGGCAAG GCCGATCTTC TGAAGAAGAA CCTGGAGGAT AAGATCCGAC TATTCGAGGA GCGGGCCCCT GTAGAACTGG CTGACCAGGT GCGAGGGGAA TTGCTCCAAG AGAGGGTCCA GAGGCTGGAG GCCCAGGAGG CGCACTTTGC TGAGTCACTT GTGGCTCTGC AGTTCCAGAA GGTGGCCCGG GCTGCTGAGA CCCTCTCAGT CTACACCGCC CTGCTCAGCA TTCAAGACCT GCTGCTGGGG GAGCTGAGTG AGTCGGAGAC CCTGACCAAG TCAGCCTGTG TGCAGATCCT GGAGTCCCAC AGGCCGGAGC TGCAGGAGCT GCAGGAGCTG GAGAGGAAGC TGGAGGACCA GCTGGTGCAG CAGGAAGAGG CCGAGCAGCA GCGGGTCCTG GAGAGCTGGC AGCGGTGGGC GGCCGATGGA CCTGGGCTGA GCGAACCTGA GGAGATGGAT CCTGAAAGGC AGGTCTCTGC CATCCTGCGG CAAGCCCTGA ACAAGGGCCA GAAGCTGCTG GAGCAGCATC AGCAGAGGGT GAGAGAGGAG TGGCAGAACG GTGCGGTGCT GGAAGATTCT CTGGAAAGCA TTGAAGCTGA CACCATGGCC AGCCTTTGCA GCCAGGGACT GAGGCTGGTG TCATACCTCT CAAGGATGAC AATGGTACCA GGCAGCACAC TACTGCGACT CCTGAGTGTG GTGCTTCCAG CGGCTTCACA GCCTCAGCTA CTGGCCCTGC TGGACGCAGT CAGTGAGAAG CACTCCGACC ACACAGCTGA GAATGAGAGC AGTGGTGAGC AGGCTCAGGC AGAGCAGAGC AAGAGGAGGA AACACCAAGT TTGGTGGAAG GTTTTGGACA GCAGATTCAG AGCAGATCTG GTGAGTCAAG GACTGGAGAG GATGCTCTGG GCCCGCCAGA AGAAGGAGCG CATATTGAAG AAGATATATG TTCCCGTCCA GGAGAGGGTG ATGTTTCCTG GGAAAGGAAG CTGGCCACAC CTGTCCCTAG AACCCATTGG AGAACTGGCT CCCATCCCCA TCACTGGGGC AGACGCTATG GACATATTAA ACACGGGAGA AAAGATCTTT GTATTCAGAA GCCCAAGGGA GCCCGAGATC TCTTTGCGTG TTCCTCCCAG GAGGAAAAAG AATTTCCTGA ATGCCAAGAA GGCCAACAGG GCCTTGGGCT TGGACTGA
The stop codons will be deleted if pcDNA3.1+ /C-(K)DYK vector is selected.
RefSeq
XP_006504145.1
CDS 448..3705
Translation
Target ORF information:
RefSeq Version XM_006504082.2
Organism Mus musculus(house mouse)
Definition Mus musculus Ellis van Creveld syndrome 2 (Evc2), transcript variant X1, mRNA.
Target ORF information:
Epitope DYKDDDDK
Bacterial selection AMPR
Mammalian selection NeoR
Vector pcDNA3.1+ /C-(K)DYK
XM_006504082.2
ORF Insert Sequence:
1 61 121 181 241 301 361 421 481 541 601 661 721 781 841 901 961 1021 1081 1141 1201 1261 1321 1381 1441 1501 1561 1621 1681 1741 1801 1861 1921 1981 2041 2101 2161 2221 2281 2341 2401 2461 2521 2581 2641 2701 2761 2821 2881 2941 3001 3061 3121 3181 3241 ATGGAATCCA GACTTTCAGA AAGAGCTTTC TGCAAGTGGG AGAATGCTAC TCTGTCAGCT ACACAGCCTC GCTGGACCCC ACAGCCCTTG GGACTGGGGA GAGCCTGGAT CTTCCTGCCC GGCTCATCTT TCAGAGCCCC TCACAGAACT CAGCTAAAAG CCCCCTTTAC CATCACAGTG GAAGAAAAGA TAATGGTTCT TCCTAACCAT GGTCTTCACG CAGCAGGCTT CATCGCAGCC TTCCTCATCT CCCTCCTCCT GACCGTGGCA GCCCTGTTCT TCTTGGCGAG GGGTCGATGT CTGCAGGGAG GCATGCTGTC CAGATGCCGG ATTCAGCATC CTGAGAACAA GCTGGAGCCC TCGCCCTTCA CCTCTGCTAA CGGTGTGAGC CAGGACCTTT CCCTCAATGA CCAAGTGGTT GCCATCCTGA CTTCTGAGGA GCCTGGGAGC ATGCTTCAAG CCCTAGAAGA GTTGGAGATC GCAACCCTGA ATCAGGCAGA TGCGGATCTG GAGGCTTGTC GAAACCAGAT TAGTAAGGAC ATCATTGCCC TTTTGATGAA GAATCTGGTC AGCGGTGGTC ACCTCTCTCC GCAAACAGAA AGGAAGATGG CCGCTGCTTT CAAAAAGCAG TTTCTGCTGT TGGAAAATGA AATACAGGAG GAGTATGAGC GGAAGATGTT GGCACTGACG GCAGAGTGTG ACCTAGAGAT GAGGAAGAAG ACAGAAAACC AGTACCAGAG GGAGATGGTG GCCATGGAGG AAGCAGAAGA GGTGTTGAAG AGAGTTAGCG AGAGGTCTGC TGCCGAGTGC AGCAGCCTTT TGCGGACCCT CCATGGGCTG GAGCAGGAGG ACATGCAGAG GTCCCTTACT CTGGACCAAG CCGAGGACTT TGCTCAAGCA CACAGGCAGC TGGCTGTTTT CCAGAGGAAT GAATTACACA GCATCGTCTA TACCCAGATA CAGAGTGCTG TCTCCAAAGG GGAACTGAGG CCTGAGGTGG CTAAAATGAT GCTGCAAGAC TACTCTAAAA CACAGGAGAG TGTAGAAGAG CTGATGGACT TCTTCCAGGC CACCAAGCGA TACCATCTCA GCAAGAGGTT TGGCCACAGA GAGTACCTGG TCCAGAGACT GCAGGCCATG GAGACCCGGG TGCAAGGGCT GCTGAACACC GCGGCTACCC AGCTAACAAG CCTCATCCAT AAACATGAGA GGGCTGGCTA CTTGGATGAA GATCAGATGG AAACGCTATT GGAGCGTGCA CAGACAGAAA CCTTTTCTAT AAAACAGAAG CTGGACAATG ACTTAAAGCA GGAAAAGAAA AGGCTCCACC AGAGATTAAT AACCAGGAGG CGGCGAGAGC TTCTGCAGAA GCACAAGGAG CAGCAGAAGG AGCAGGTGTC CCTTGGCGAG GCCTCCAGCA CCGCGGAGGA CGCAGTCCAG TACCTGCACC AGTGGAGGAG CGTGATGGCC GAGCACACCG CTGCCCTGGA GGAGCTGCAG GAACGTCTGG ACCAGGCTGC CCTGGATGAC CTCCGGGTCC TGACTGTGTC GCTGTCGGAG AAAGCCACGG AAGAGCTGAG GCGCCTGCAG AGCACGGCCA TGACACAGGA GCTGCTGAAG CGCAGTGCTC CCTGGCTCTT CCTGCAGCAG ATCTTAGAGG AGCACAGCCG GGAGTCTGCG GCTCGCACCA CGCAACTGGA GGCAGAGGAG AGGGAACGTG GCCAGGAGCT GGTGCAGGGC GTGAGGCAGA GGCTACAGCA GGATGCACTG GAGGCCTACA CGGAAGAGCA GGCAGAGCTG AGGCACTGGG AGCACTTGGT GTTCATGAAA CTCTGCTGTG CGGCCATCTC ATTGTCTGAA GAAGACCTGC TCCGGGTAAG GCAGGAGGCA CAGGGCTGCT TCAGCCAGCT GGACCGGAGC TTGGCCCTCC CCAGAGTCCG TGCACGAGTG TTGCAGCAGC AGGCGCAGAT GGCCTGGCGG GAAGCAGAGT TTCGGAAACT GGACCAGGCC CTGGCTGCGC CTGAGCTGCA GTCCAAGGCA AGAAAGCTGC GTTCCAAGGG CAGAGGCAAG GCCGATCTTC TGAAGAAGAA CCTGGAGGAT AAGATCCGAC TATTCGAGGA GCGGGCCCCT GTAGAACTGG CTGACCAGGT GCGAGGGGAA TTGCTCCAAG AGAGGGTCCA GAGGCTGGAG GCCCAGGAGG CGCACTTTGC TGAGTCACTT GTGGCTCTGC AGTTCCAGAA GGTGGCCCGG GCTGCTGAGA CCCTCTCAGT CTACACCGCC CTGCTCAGCA TTCAAGACCT GCTGCTGGGG GAGCTGAGTG AGTCGGAGAC CCTGACCAAG TCAGCCTGTG TGCAGATCCT GGAGTCCCAC AGGCCGGAGC TGCAGGAGCT GCAGGAGCTG GAGAGGAAGC TGGAGGACCA GCTGGTGCAG CAGGAAGAGG CCGAGCAGCA GCGGGTCCTG GAGAGCTGGC AGCGGTGGGC GGCCGATGGA CCTGGGCTGA GCGAACCTGA GGAGATGGAT CCTGAAAGGC AGGTCTCTGC CATCCTGCGG CAAGCCCTGA ACAAGGGCCA GAAGCTGCTG GAGCAGCATC AGCAGAGGGT GAGAGAGGAG TGGCAGAACG GTGCGGTGCT GGAAGATTCT CTGGAAAGCA TTGAAGCTGA CACCATGGCC AGCCTTTGCA GCCAGGGACT GAGGCTGGTG TCATACCTCT CAAGGATGAC AATGGTACCA GGCAGCACAC TACTGCGACT CCTGAGTGTG GTGCTTCCAG CGGCTTCACA GCCTCAGCTA CTGGCCCTGC TGGACGCAGT CAGTGAGAAG CACTCCGACC ACACAGCTGA GAATGAGAGC AGTGGTGAGC AGGCTCAGGC AGAGCAGAGC AAGAGGAGGA AACACCAAGT TTGGTGGAAG GTTTTGGACA GCAGATTCAG AGCAGATCTG GTGAGTCAAG GACTGGAGAG GATGCTCTGG GCCCGCCAGA AGAAGGAGCG CATATTGAAG AAGATATATG TTCCCGTCCA GGAGAGGGTG ATGTTTCCTG GGAAAGGAAG CTGGCCACAC CTGTCCCTAG AACCCATTGG AGAACTGGCT CCCATCCCCA TCACTGGGGC AGACGCTATG GACATATTAA ACACGGGAGA AAAGATCTTT GTATTCAGAA GCCCAAGGGA GCCCGAGATC TCTTTGCGTG TTCCTCCCAG GAGGAAAAAG AATTTCCTGA ATGCCAAGAA GGCCAACAGG GCCTTGGGCT TGGACTGA
The stop codons will be deleted if pcDNA3.1+ /C-(K)DYK vector is selected.
The Role of Ellis-Van Creveld 2(EVC2) in Mice During Cranial Bone Development.
Anatomical record (Hoboken, N.J. : 2007)301(1)46-55(2018 Jan)
Kwon EK,Louie K,Kulkarni A,Yatabe M,Ruellas ACO,Snider TN,Mochida Y,Cevidanes LHS,Mishina Y,Zhang H
Elevated Fibroblast Growth Factor Signaling Is Critical for the Pathogenesis of the Dwarfism in Evc2/Limbin Mutant Mice.
PLoS genetics12(12)e1006510(2016 Dec)
Zhang H,Kamiya N,Tsuji T,Takeda H,Scott G,Rajderkar S,Ray MK,Mochida Y,Allen B,Lefebvre V,Hung IH,Ornitz DM,Kunieda T,Mishina Y
Expression of Evc2 in craniofacial tissues and craniofacial bone defects in Evc2 knockout mouse.
Archives of oral biology68142-52(2016 Aug)
Badri MK,Zhang H,Ohyama Y,Venkitapathi S,Alamoudi A,Kamiya N,Takeda H,Ray M,Scott G,Tsuji T,Kunieda T,Mishina Y,Mochida Y
Cilia gene mutations cause atrioventricular septal defects by multiple mechanisms.
Human molecular genetics25(14)3011-3028(2016 07)
Burnicka-Turek O,Steimle JD,Huang W,Felker L,Kamp A,Kweon J,Peterson M,Reeves RH,Maslen CL,Gruber PJ,Yang XH,Shendure J,Moskowitz IP