Gene Symbol
Skiv2l
Entrez Gene ID
294260
Full Name
Ski2 like RNA helicase
General protein information
Preferred NamesSki2 like RNA helicase
Nameshelicase SKI2W SKI2 homolog, superkiller viralicidic activity 2-like superkiller viralicidic activity 2-like
Gene Type
protein-coding
Organism
Rattus norvegicus(Norway rat)
Genome
Chromosome: 20
Map Location: 20p12
Summary
putative RNA helicase; member of a family of DEAD box proteins, characterized by the conserved motif Asp-Glu-Ala-Asp (DEAD); rat mouse and human homologs are all located within the MHC class III region [RGD, Feb 2006].
Anopheles gambiae (African malaria mosquito)
AgaP_AGAP003182
XP_312880.4
Homo sapiens (human)
SKIV2L
NP_008860.4
Danio rerio (zebrafish)
skiv2l
NP_001038366.1
Schizosaccharomyces pombe (fission yeast)
SPCC550.03c
NP_588095.1
Canis lupus familiaris (dog)
SKIV2L
XP_538841.2
Bos taurus (cattle)
SKIV2L
XP_003587743.1
Arabidopsis thaliana (thale cress)
AT3G46960
NP_190280.5
Pan troglodytes (chimpanzee)
SKIV2L
XP_001160927.2
SKIV2L
XP_001106475.2
Rattus norvegicus (Norway rat)
Skiv2l
NP_998724.1
Drosophila melanogaster (fruit fly)
tst
NP_524465.1
Caenorhabditis elegans (roundworm)
skih-2
NP_502084.2
Saccharomyces cerevisiae (baker's yeast)
SKI2
NP_013502.3
Xenopus tropicalis (tropical clawed frog)
skiv2l
XP_004917184.1
Mus musculus (house mouse)
Skiv2l
NP_067312.2
Eremothecium gossypii
AGOS_AER067C
NP_984927.2
Neurospora crassa
NCU01857
XP_965488.1
Related articles in PubMed
The human PAF complex coordinates transcription with events downstream of RNA synthesis.
Zhu B, Mandal SS, Pham AD, Zheng Y, Erdjument-Bromage H, Batra SK, Tempst P, Reinberg D Genes & development19(14)1668-73(2005 Jul)
The human DEVH-box protein Ski2w from the HLA is localized in nucleoli and ribosomes.
Qu X, Yang Z, Zhang S, Shen L, Dangel AW, Hughes JH, Redman KL, Wu LC, Yu CY Nucleic acids research26(17)4068-77(1998 Sep)
GeneRIFs: Gene References Into Functions What's a GeneRIF?
The following Skiv2l gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Skiv2l 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
ORa05659
Clone ID Related Accession (Same CDS sequence)
NM_213559.2
Accession Version
NM_213559.2 Latest version!
Documents for ORF clone product in default vector
Sequence Information
ORF Nucleotide Sequence (Length: 3726bp)
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
2018-05-28
Organism
Rattus norvegicus(Norway rat)
Product
helicase SKI2W
Comment
Comment: VALIDATED REFSEQ: This record has undergone validation or preliminary review. The reference sequence was derived from BX883045.1. On Sep 28, 2009 this sequence version replaced NM_213559.1.
Sequence Note: The RefSeq transcript and protein were derived from genomic sequence. The genomic coordinates used for the transcript record were based on alignments.
##Evidence-Data-START##
RNAseq introns :: mixed/partial sample support SAMD00052296, SAMD00052297 [ECO:0000350]
##Evidence-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 3301 3361 3421 3481 3541 3601 3661 3721 ATGATGGAGA CCGAGCGACT CGTGCTGCCT CCCCCAGACC CCCTGAACCT GCCCCTTCGA GCTCTGGAAG TGGGGTGCAC TGGCCGTTGG GAGCTGCTAA ACGTGCCAGG GCCTCCAGAG AGTACTCTTC CCCATGGCCT CCCTCCCTGT GCCCCAGATC TGTGCCAGGA AGCAGAGCAG TTGTTTCTGT CGTCTCCGGC CTGGCTTCCT CTACACGGTG TGGAGCACTC AGCTCGAAAA TGGCAGAGGA AGACAGATCC CTGGTCGCTT CTGGCTGCTC TGGGGACTCC AGTCCCATCC GACCTTCAGG CCCAGAGACA CCCAACCACA GGCCATATAC TGGGCTATAA GGAGGTCCTG CTGGAGAACA CGAACCTGTC GGCCACCACC TCCTTGTCCC TTCGCCGGCC TCCAGGGCCA GCCTCCCAGT CGCTATGGGG CAATCCGACA CAGTACCCTT TCTGGCCGGG TGGGATGGAC GAGCCCAGCA TAACTGATCT GAGTACTCGG GAGGAAGCCG AGGAGGAGAT AGACTTTGAG AAAGATCTTC TCACCGTTCC ACCCGGCTTC AAGAAAGGGG TGGATTTTGC CCCCAAAGCT CCTGTGCCAG GTTTGCTCAG CCTCAGCCGT CTGCTGGAGC CTCTGGATCT GAGTGGAGGT GATGAGGGTG AGGGAGAGGC AGCAGGAGGT CCTAGAGGGG ATGCGGCCTC AGCCTCTCCC TCCAGCACTC CCCTGATCCG GGCAAGCAGC TTGGAGGACC TAGTGTTGAA GGAAGCTTCC ACAGTCGTAT CCACCCTGGA GCCCCTCAAA CCTCCACCTC AGGAACAGTG GGCTGTGCCT GTGGACGTCA CCTCCCCCGT GGGTGATTTT TACCGTCTCA TCCCTCAGCC GGCCTTCCAG TGGGCGTTCG AGCCAGATGT GTTTCAGAAG CAGGCCATCC TGCACTTGGA GCAGCACGAC TCTGTCTTTG TTGCAGCTCA CACATCCGCT GGGAAGACGG TGGTGGCCGA GTATGCCATT GCCCTGGCCC AGAAACACAT GACCCGTACC ATCTACACTT CTCCTATCAA AGCCCTGAGC AACCAGAAGT TTCGGGACTT CCGAAACACA TTCGGGGATG TGGGACTGCT CACGGGGGAT GTGCAGCTGC ACCCAGAGGC CTCCTGCCTC ATCATGACCA CGGAGATCCT TCGCTCCATG CTGTACAGTG GCTCAGACGT CATCCGAGAC CTGGAGTGGG TCATTTTTGA TGAAGTCCAC TATATCAATG ATGCTGAGCG TGGGGTCGTG TGGGAGGAGG TGCTCATTAT GCTCCCTGAG CACGTCTCCA TCATCCTGCT GAGTGCCACC GTCCCCAACG CCCTGGAGTT TGCTGACTGG ATCGGGAGGC TGAAGCGGCG GCAGATCTAT GTGATCAGCA CGGTGGCCCG TCCCGTCCCC TTGGAGCACT ATCTCTTCAC AGGAAACAGC CCCAAGACAC AGGGCGAACT CTTCCTTCTG CTGGACTCCC GAGGGGCCTT CCACACCAAG GGGTACTACG CTGCCGTGGA GGCCAAGAAA GAGAGGATGA GCAAACACGC CCAGACCTTC GGGGCCAAGC AGCCCACACA CCAGGGTGGG CCTGCGCAGG ACCGTGGGGT GTACCTGGCC TTGCTGGCTT CCCTCCGGAC CCGGGCTCAG TTGCCTGTGG TAGTGTTCAC CTTCTCCCGA GGCCGCTGTG ATGAACAGGC TTCAGGTCTC ACCTCCCTAG ACCTCACAAC AAGCTCAGAG AAGAGTGAGA TCCACCTCTT CCTGCAGCGC TGTCTTGCCC GGCTCCGAGG CTCTGACCGA CAGCTCCCCC AGGTCCTGCA CATGTCGGAG CTCCTCCGCC GAGGCCTGGG TGTGCACCAC AGCGGCATCC TGCCCATCCT TAAGGAGATT GTGGAGATGC TTTTCAGCCG GGGCCTAGTC AAGGTCCTGT TTGCCACCGA GACTTTTGCC ATGGGGGTAA ACATGCCAGC CAGGACAGTG GTGTTTGACT CCATGCGCAA ACATGATGGC TCCACCTTCC GGGACCTGCT GCCTGGAGAG TACGTGCAGA TGGCAGGCCG GGCGGGCCGG AGGGGCCTGG ACCCCACGGG CACCGTCATC CTTCTCTGTA AGGGCCGAGT GCCTGAGATG GCAGATCTAC ACCGCATGAT GATGGGGAAA CCATCACAGC TTCAGTCCCA GTTCCGCCTC ACATATACCA TGATCCTCAA CCTGCTGCGG GTGGACGCCC TCAGAGTGGA AGACATGATG AAGAGGAGCT TCTCAGAGTT CCCCTCCCGC AAGGACAGCA AGGCCCATGA GCAGGCTCTG GCTGACCTCA CCAAGAGGCT GGGGGCTTTG GAGGAGCCTG ATGTGACTGG TCAGTTGGCT GACCTGCCTG AGTATTACAG CTGGGCGGAG GAGCTGACAG AGACCCGGAA CATGATCCAG CGACGCATCA TGGAGTCTGT GAACGGGCTG AAATCTCTGT CAGTGGGAAG GGTGGTGGTT GTGAAGAATG AAGAGCATCA CAATGCGCTG GGTGTGATCC TGCAGGTCTC CTCAAACTCC ACTAGCCGAG TATTTACAAC CTTGGTCTTG TGTGATAAAC CTGCTGTGTC TGAGAACCCA AGGGACAAGG GGCCAGCCAC TCCAGATGTG CCCCACCCAG ATGACCTTGT AGGCTTCAAG TTGTTCCTGC CTGAAGGGCC CTGCGAGCAC ACTGTGGCCA AGCTCCAGCC AGGGGATGTG GCTGCCATCT CTACCAAGGT GCTCCGGGTG AATGGGGAGA AGATTTCTGA GGACTTCAGC AAGAGGCAGC AACCGAAATT CAGGAAGGAC CCTCCCCTCG CGGCCGTGAC CACTGCTGTT CAGGAGCTGC TGCGTCTGGC CCAGGCCTAT CCAGCAGGAC CCCCAACCCT CGACCCTATC AACGACCTGC AACTGAAGGA TGTGGCAGTG GTAGAAGGTG GGCTCCGGGC CCGGAAGCTG GAGGAGCTGA TCCGAGGCGC TCAGTGTGTA CACAGCCCCC GGTTTCCTGC CCAGTATGTG AAGCTACAGG AGCGAATGCA GATTCAGAAG GAAATGGAGA GGCTGCGCTT CCTCCTGTCT GACCAGTCGC TGTTGCTGCT CCCCGAGTAC CACCAGCGTG TAGAGGTGCT TCGGACCCTG GGCTATGTGG ATGAGGCTGG CACAGTGAAG CTGGCGGGCC GGGTGGCCTG TGCCATGAGC AGCCATGAGC TGCTCCTCAC TGAACTCATG TTTGACAATG CACTGAGTGC TCTGCGACCA GAGGAAATAG CAGCTCTGCT CTCTGGTCTG GTGTGCCAGA GCCCCGGAGA CCCTGGGGAT CAGCTGCCAA GCACCCTCAA ACAGGGGGTA GAACGCGTCA AAGCTGTGGC CAAGCGGATT GGTGAGGTTC AGGTGGCCTG CGGCCTGAAC CAGACGGTGG AGGAATTTGT GGGGGAGCTG AATTTTGGGC TGGTGGAAGT TGTTTATGAG TGGGCTCGGG GTATGCCCTT CTCCGAGTTG GCAGGGCTCT CGGGGACCCC CGAAGGCTTG GTTGTCCGCT GTATCCAGCG CCTGGCTGAG ATGTGCCGCT CACTTCGAGG GGCGGCCCGT TTGGTAGGAG AGCCTGTGTT AGGGGCCAAG ATGGAGACGG CAGCCACCTT GCTCCGGAGG GACATCGTCT TCGCAGCCAG CCTCTATACC CAGTAA
The stop codons will be deleted if pcDNA3.1+ /C-(K)DYK vector is selected.
RefSeq
NP_998724.1
CDS 31..3756
Translation
Target ORF information:
RefSeq Version NM_213559.2
Organism Rattus norvegicus(Norway rat)
Definition Rattus norvegicus Ski2 like RNA helicase (Skiv2l), mRNA.
Target ORF information:
Epitope DYKDDDDK
Bacterial selection AMPR
Mammalian selection NeoR
Vector pcDNA3.1+ /C-(K)DYK
NM_213559.2
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 3301 3361 3421 3481 3541 3601 3661 3721 ATGATGGAGA CCGAGCGACT CGTGCTGCCT CCCCCAGACC CCCTGAACCT GCCCCTTCGA GCTCTGGAAG TGGGGTGCAC TGGCCGTTGG GAGCTGCTAA ACGTGCCAGG GCCTCCAGAG AGTACTCTTC CCCATGGCCT CCCTCCCTGT GCCCCAGATC TGTGCCAGGA AGCAGAGCAG TTGTTTCTGT CGTCTCCGGC CTGGCTTCCT CTACACGGTG TGGAGCACTC AGCTCGAAAA TGGCAGAGGA AGACAGATCC CTGGTCGCTT CTGGCTGCTC TGGGGACTCC AGTCCCATCC GACCTTCAGG CCCAGAGACA CCCAACCACA GGCCATATAC TGGGCTATAA GGAGGTCCTG CTGGAGAACA CGAACCTGTC GGCCACCACC TCCTTGTCCC TTCGCCGGCC TCCAGGGCCA GCCTCCCAGT CGCTATGGGG CAATCCGACA CAGTACCCTT TCTGGCCGGG TGGGATGGAC GAGCCCAGCA TAACTGATCT GAGTACTCGG GAGGAAGCCG AGGAGGAGAT AGACTTTGAG AAAGATCTTC TCACCGTTCC ACCCGGCTTC AAGAAAGGGG TGGATTTTGC CCCCAAAGCT CCTGTGCCAG GTTTGCTCAG CCTCAGCCGT CTGCTGGAGC CTCTGGATCT GAGTGGAGGT GATGAGGGTG AGGGAGAGGC AGCAGGAGGT CCTAGAGGGG ATGCGGCCTC AGCCTCTCCC TCCAGCACTC CCCTGATCCG GGCAAGCAGC TTGGAGGACC TAGTGTTGAA GGAAGCTTCC ACAGTCGTAT CCACCCTGGA GCCCCTCAAA CCTCCACCTC AGGAACAGTG GGCTGTGCCT GTGGACGTCA CCTCCCCCGT GGGTGATTTT TACCGTCTCA TCCCTCAGCC GGCCTTCCAG TGGGCGTTCG AGCCAGATGT GTTTCAGAAG CAGGCCATCC TGCACTTGGA GCAGCACGAC TCTGTCTTTG TTGCAGCTCA CACATCCGCT GGGAAGACGG TGGTGGCCGA GTATGCCATT GCCCTGGCCC AGAAACACAT GACCCGTACC ATCTACACTT CTCCTATCAA AGCCCTGAGC AACCAGAAGT TTCGGGACTT CCGAAACACA TTCGGGGATG TGGGACTGCT CACGGGGGAT GTGCAGCTGC ACCCAGAGGC CTCCTGCCTC ATCATGACCA CGGAGATCCT TCGCTCCATG CTGTACAGTG GCTCAGACGT CATCCGAGAC CTGGAGTGGG TCATTTTTGA TGAAGTCCAC TATATCAATG ATGCTGAGCG TGGGGTCGTG TGGGAGGAGG TGCTCATTAT GCTCCCTGAG CACGTCTCCA TCATCCTGCT GAGTGCCACC GTCCCCAACG CCCTGGAGTT TGCTGACTGG ATCGGGAGGC TGAAGCGGCG GCAGATCTAT GTGATCAGCA CGGTGGCCCG TCCCGTCCCC TTGGAGCACT ATCTCTTCAC AGGAAACAGC CCCAAGACAC AGGGCGAACT CTTCCTTCTG CTGGACTCCC GAGGGGCCTT CCACACCAAG GGGTACTACG CTGCCGTGGA GGCCAAGAAA GAGAGGATGA GCAAACACGC CCAGACCTTC GGGGCCAAGC AGCCCACACA CCAGGGTGGG CCTGCGCAGG ACCGTGGGGT GTACCTGGCC TTGCTGGCTT CCCTCCGGAC CCGGGCTCAG TTGCCTGTGG TAGTGTTCAC CTTCTCCCGA GGCCGCTGTG ATGAACAGGC TTCAGGTCTC ACCTCCCTAG ACCTCACAAC AAGCTCAGAG AAGAGTGAGA TCCACCTCTT CCTGCAGCGC TGTCTTGCCC GGCTCCGAGG CTCTGACCGA CAGCTCCCCC AGGTCCTGCA CATGTCGGAG CTCCTCCGCC GAGGCCTGGG TGTGCACCAC AGCGGCATCC TGCCCATCCT TAAGGAGATT GTGGAGATGC TTTTCAGCCG GGGCCTAGTC AAGGTCCTGT TTGCCACCGA GACTTTTGCC ATGGGGGTAA ACATGCCAGC CAGGACAGTG GTGTTTGACT CCATGCGCAA ACATGATGGC TCCACCTTCC GGGACCTGCT GCCTGGAGAG TACGTGCAGA TGGCAGGCCG GGCGGGCCGG AGGGGCCTGG ACCCCACGGG CACCGTCATC CTTCTCTGTA AGGGCCGAGT GCCTGAGATG GCAGATCTAC ACCGCATGAT GATGGGGAAA CCATCACAGC TTCAGTCCCA GTTCCGCCTC ACATATACCA TGATCCTCAA CCTGCTGCGG GTGGACGCCC TCAGAGTGGA AGACATGATG AAGAGGAGCT TCTCAGAGTT CCCCTCCCGC AAGGACAGCA AGGCCCATGA GCAGGCTCTG GCTGACCTCA CCAAGAGGCT GGGGGCTTTG GAGGAGCCTG ATGTGACTGG TCAGTTGGCT GACCTGCCTG AGTATTACAG CTGGGCGGAG GAGCTGACAG AGACCCGGAA CATGATCCAG CGACGCATCA TGGAGTCTGT GAACGGGCTG AAATCTCTGT CAGTGGGAAG GGTGGTGGTT GTGAAGAATG AAGAGCATCA CAATGCGCTG GGTGTGATCC TGCAGGTCTC CTCAAACTCC ACTAGCCGAG TATTTACAAC CTTGGTCTTG TGTGATAAAC CTGCTGTGTC TGAGAACCCA AGGGACAAGG GGCCAGCCAC TCCAGATGTG CCCCACCCAG ATGACCTTGT AGGCTTCAAG TTGTTCCTGC CTGAAGGGCC CTGCGAGCAC ACTGTGGCCA AGCTCCAGCC AGGGGATGTG GCTGCCATCT CTACCAAGGT GCTCCGGGTG AATGGGGAGA AGATTTCTGA GGACTTCAGC AAGAGGCAGC AACCGAAATT CAGGAAGGAC CCTCCCCTCG CGGCCGTGAC CACTGCTGTT CAGGAGCTGC TGCGTCTGGC CCAGGCCTAT CCAGCAGGAC CCCCAACCCT CGACCCTATC AACGACCTGC AACTGAAGGA TGTGGCAGTG GTAGAAGGTG GGCTCCGGGC CCGGAAGCTG GAGGAGCTGA TCCGAGGCGC TCAGTGTGTA CACAGCCCCC GGTTTCCTGC CCAGTATGTG AAGCTACAGG AGCGAATGCA GATTCAGAAG GAAATGGAGA GGCTGCGCTT CCTCCTGTCT GACCAGTCGC TGTTGCTGCT CCCCGAGTAC CACCAGCGTG TAGAGGTGCT TCGGACCCTG GGCTATGTGG ATGAGGCTGG CACAGTGAAG CTGGCGGGCC GGGTGGCCTG TGCCATGAGC AGCCATGAGC TGCTCCTCAC TGAACTCATG TTTGACAATG CACTGAGTGC TCTGCGACCA GAGGAAATAG CAGCTCTGCT CTCTGGTCTG GTGTGCCAGA GCCCCGGAGA CCCTGGGGAT CAGCTGCCAA GCACCCTCAA ACAGGGGGTA GAACGCGTCA AAGCTGTGGC CAAGCGGATT GGTGAGGTTC AGGTGGCCTG CGGCCTGAAC CAGACGGTGG AGGAATTTGT GGGGGAGCTG AATTTTGGGC TGGTGGAAGT TGTTTATGAG TGGGCTCGGG GTATGCCCTT CTCCGAGTTG GCAGGGCTCT CGGGGACCCC CGAAGGCTTG GTTGTCCGCT GTATCCAGCG CCTGGCTGAG ATGTGCCGCT CACTTCGAGG GGCGGCCCGT TTGGTAGGAG AGCCTGTGTT AGGGGCCAAG ATGGAGACGG CAGCCACCTT GCTCCGGAGG GACATCGTCT TCGCAGCCAG CCTCTATACC CAGTAA
The stop codons will be deleted if pcDNA3.1+ /C-(K)DYK vector is selected.
CloneID
ORa39120
Clone ID Related Accession (Same CDS sequence)
XM_006255923.2
Accession Version
XM_006255923.2 Latest version!
Documents for ORF clone product in default vector
Sequence Information
ORF Nucleotide Sequence (Length: 3735bp)
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
2016-07-25
Organism
Rattus norvegicus(Norway rat)
Product
helicase SKI2W isoform X1
Comment
Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_005119.4) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process
On Jul 26, 2016 this sequence version replaced XM_006255923.1.
##Genome-Annotation-Data-START##
Annotation Provider :: NCBI
Annotation Status :: Full annotation
Annotation Version :: Rattus norvegicus 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 3301 3361 3421 3481 3541 3601 3661 3721 ATGATGGAGA CCGAGCGACT CGTGCTGCCT CCCCCAGACC CCCTGAACCT GCCCCTTCGA GCTCTGGAAG TGGGGTGCAC TGGCCGTTGG GAGCTGCTAA ACGTGCCAGG GCCTCCAGAG AGTACTCTTC CCCATGGCCT CCCTCCCTGT GCCCCAGATC TGTGCCAGGA AGCAGAGCAG TTGTTTCTGT CGTCTCCGGC CTGGCTTCCT CTACACGGTG TGGAGCACTC AGCTCGAAAA TGGCAGAGGA AGACAGATCC CTGGTCGCTT CTGGCTGCTC TGGGGACTCC AGTCCCATCC GACCTTCAGG CCCAGAGACA CCCAACCACA GGCCATATAC TGGGCTATAA GGAGGTCCTG CTGGAGAACA CGAACCTGTC GGCCACCACC TCCTTGTCCC TTCGCCGGCC TCCAGGGCCA GCCTCCCAGT CGCTATGGGG CAATCCGACA CAGTACCCTT TCTGGCCGGG TGGGATGGAC GAGCCCAGCA TAACTGATCT GAGTACTCGG GAGGAAGCCG AGGAGGAGAT AGACTTTGAG AAAGATCTTC TCACCGTTCC ACCCGGCTTC AAGAAAGGGG TGGATTTTGC CCCCAAAGAT CACCCAGCTC CTGTGCCAGG TTTGCTCAGC CTCAGCCGTC TGCTGGAGCC TCTGGATCTG AGTGGAGGTG ATGAGGGTGA GGGAGAGGCA GCAGGAGGTC CTAGAGGGGA TGCGGCCTCA GCCTCTCCCT CCAGCACTCC CCTGATCCGG GCAAGCAGCT TGGAGGACCT AGTGTTGAAG GAAGCTTCCA CAGTCGTATC CACCCTGGAG CCCCTCAAAC CTCCACCTCA GGAACAGTGG GCTGTGCCTG TGGACGTCAC CTCCCCCGTG GGTGATTTTT ACCGTCTCAT CCCTCAGCCG GCCTTCCAGT GGGCGTTCGA GCCAGATGTG TTTCAGAAGC AGGCCATCCT GCACTTGGAG CAGCACGACT CTGTCTTTGT TGCAGCTCAC ACATCCGCTG GGAAGACGGT GGTGGCCGAG TATGCCATTG CCCTGGCCCA GAAACACATG ACCCGTACCA TCTACACTTC TCCTATCAAA GCCCTGAGCA ACCAGAAGTT TCGGGACTTC CGAAACACAT TCGGGGATGT GGGACTGCTC ACGGGGGATG TGCAGCTGCA CCCAGAGGCC TCCTGCCTCA TCATGACCAC GGAGATCCTT CGCTCCATGC TGTACAGTGG CTCAGACGTC ATCCGAGACC TGGAGTGGGT CATTTTTGAT GAAGTCCACT ATATCAATGA TGCTGAGCGT GGGGTCGTGT GGGAGGAGGT GCTCATTATG CTCCCTGAGC ACGTCTCCAT CATCCTGCTG AGTGCCACCG TCCCCAACGC CCTGGAGTTT GCTGACTGGA TCGGGAGGCT GAAGCGGCGG CAGATCTATG TGATCAGCAC GGTGGCCCGT CCCGTCCCCT TGGAGCACTA TCTCTTCACA GGAAACAGCC CCAAGACACA GGGCGAACTC TTCCTTCTGC TGGACTCCCG AGGGGCCTTC CACACCAAGG GGTACTACGC TGCCGTGGAG GCCAAGAAAG AGAGGATGAG CAAACACGCC CAGACCTTCG GGGCCAAGCA GCCCACACAC CAGGGTGGGC CTGCGCAGGA CCGTGGGGTG TACCTGGCCT TGCTGGCTTC CCTCCGGACC CGGGCTCAGT TGCCTGTGGT AGTGTTCACC TTCTCCCGAG GCCGCTGTGA TGAACAGGCT TCAGGTCTCA CCTCCCTAGA CCTCACAACA AGCTCAGAGA AGAGTGAGAT CCACCTCTTC CTGCAGCGCT GTCTTGCCCG GCTCCGAGGC TCTGACCGAC AGCTCCCCCA GGTCCTGCAC ATGTCGGAGC TCCTCCGCCG AGGCCTGGGT GTGCACCACA GCGGCATCCT GCCCATCCTT AAGGAGATTG TGGAGATGCT TTTCAGCCGG GGCCTAGTCA AGGTCCTGTT TGCCACCGAG ACTTTTGCCA TGGGGGTAAA CATGCCAGCC AGGACAGTGG TGTTTGACTC CATGCGCAAA CATGATGGCT CCACCTTCCG GGACCTGCTG CCTGGAGAGT ACGTGCAGAT GGCAGGCCGG GCGGGCCGGA GGGGCCTGGA CCCCACGGGC ACCGTCATCC TTCTCTGTAA GGGCCGAGTG CCTGAGATGG CAGATCTACA CCGCATGATG ATGGGGAAAC CATCACAGCT TCAGTCCCAG TTCCGCCTCA CATATACCAT GATCCTCAAC CTGCTGCGGG TGGACGCCCT CAGAGTGGAA GACATGATGA AGAGGAGCTT CTCAGAGTTC CCCTCCCGCA AGGACAGCAA GGCCCATGAG CAGGCTCTGG CTGACCTCAC CAAGAGGCTG GGGGCTTTGG AGGAGCCTGA TGTGACTGGT CAGTTGGCTG ACCTGCCTGA GTATTACAGC TGGGCGGAGG AGCTGACAGA GACCCGGAAC ATGATCCAGC GACGCATCAT GGAGTCTGTG AACGGGCTGA AATCTCTGTC AGTGGGAAGG GTGGTGGTTG TGAAGAATGA AGAGCATCAC AATGCGCTGG GTGTGATCCT GCAGGTCTCC TCAAACTCCA CTAGCCGAGT ATTTACAACC TTGGTCTTGT GTGATAAACC TGCTGTGTCT GAGAACCCAA GGGACAAGGG GCCAGCCACT CCAGATGTGC CCCACCCAGA TGACCTTGTA GGCTTCAAGT TGTTCCTGCC TGAAGGGCCC TGCGAGCACA CTGTGGCCAA GCTCCAGCCA GGGGATGTGG CTGCCATCTC TACCAAGGTG CTCCGGGTGA ATGGGGAGAA GATTTCTGAG GACTTCAGCA AGAGGCAGCA ACCGAAATTC AGGAAGGACC CTCCCCTCGC GGCCGTGACC ACTGCTGTTC AGGAGCTGCT GCGTCTGGCC CAGGCCTATC CAGCAGGACC CCCAACCCTC GACCCTATCA ACGACCTGCA ACTGAAGGAT GTGGCAGTGG TAGAAGGTGG GCTCCGGGCC CGGAAGCTGG AGGAGCTGAT CCGAGGCGCT CAGTGTGTAC ACAGCCCCCG GTTTCCTGCC CAGTATGTGA AGCTACAGGA GCGAATGCAG ATTCAGAAGG AAATGGAGAG GCTGCGCTTC CTCCTGTCTG ACCAGTCGCT GTTGCTGCTC CCCGAGTACC ACCAGCGTGT AGAGGTGCTT CGGACCCTGG GCTATGTGGA TGAGGCTGGC ACAGTGAAGC TGGCGGGCCG GGTGGCCTGT GCCATGAGCA GCCATGAGCT GCTCCTCACT GAACTCATGT TTGACAATGC ACTGAGTGCT CTGCGACCAG AGGAAATAGC AGCTCTGCTC TCTGGTCTGG TGTGCCAGAG CCCCGGAGAC CCTGGGGATC AGCTGCCAAG CACCCTCAAA CAGGGGGTAG AACGCGTCAA AGCTGTGGCC AAGCGGATTG GTGAGGTTCA GGTGGCCTGC GGCCTGAACC AGACGGTGGA GGAATTTGTG GGGGAGCTGA ATTTTGGGCT GGTGGAAGTT GTTTATGAGT GGGCTCGGGG TATGCCCTTC TCCGAGTTGG CAGGGCTCTC GGGGACCCCC GAAGGCTTGG TTGTCCGCTG TATCCAGCGC CTGGCTGAGA TGTGCCGCTC ACTTCGAGGG GCGGCCCGTT TGGTAGGAGA GCCTGTGTTA GGGGCCAAGA TGGAGACGGC AGCCACCTTG CTCCGGAGGG ACATCGTCTT CGCAGCCAGC CTCTATACCC AGTAA
The stop codons will be deleted if pcDNA3.1+ /C-(K)DYK vector is selected.
RefSeq
XP_006255985.1
CDS 90..3824
Translation
Target ORF information:
RefSeq Version XM_006255923.2
Organism Rattus norvegicus(Norway rat)
Definition Rattus norvegicus Ski2 like RNA helicase (Skiv2l), transcript variant X1, mRNA.
Target ORF information:
Epitope DYKDDDDK
Bacterial selection AMPR
Mammalian selection NeoR
Vector pcDNA3.1+ /C-(K)DYK
XM_006255923.2
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 3301 3361 3421 3481 3541 3601 3661 3721 ATGATGGAGA CCGAGCGACT CGTGCTGCCT CCCCCAGACC CCCTGAACCT GCCCCTTCGA GCTCTGGAAG TGGGGTGCAC TGGCCGTTGG GAGCTGCTAA ACGTGCCAGG GCCTCCAGAG AGTACTCTTC CCCATGGCCT CCCTCCCTGT GCCCCAGATC TGTGCCAGGA AGCAGAGCAG TTGTTTCTGT CGTCTCCGGC CTGGCTTCCT CTACACGGTG TGGAGCACTC AGCTCGAAAA TGGCAGAGGA AGACAGATCC CTGGTCGCTT CTGGCTGCTC TGGGGACTCC AGTCCCATCC GACCTTCAGG CCCAGAGACA CCCAACCACA GGCCATATAC TGGGCTATAA GGAGGTCCTG CTGGAGAACA CGAACCTGTC GGCCACCACC TCCTTGTCCC TTCGCCGGCC TCCAGGGCCA GCCTCCCAGT CGCTATGGGG CAATCCGACA CAGTACCCTT TCTGGCCGGG TGGGATGGAC GAGCCCAGCA TAACTGATCT GAGTACTCGG GAGGAAGCCG AGGAGGAGAT AGACTTTGAG AAAGATCTTC TCACCGTTCC ACCCGGCTTC AAGAAAGGGG TGGATTTTGC CCCCAAAGAT CACCCAGCTC CTGTGCCAGG TTTGCTCAGC CTCAGCCGTC TGCTGGAGCC TCTGGATCTG AGTGGAGGTG ATGAGGGTGA GGGAGAGGCA GCAGGAGGTC CTAGAGGGGA TGCGGCCTCA GCCTCTCCCT CCAGCACTCC CCTGATCCGG GCAAGCAGCT TGGAGGACCT AGTGTTGAAG GAAGCTTCCA CAGTCGTATC CACCCTGGAG CCCCTCAAAC CTCCACCTCA GGAACAGTGG GCTGTGCCTG TGGACGTCAC CTCCCCCGTG GGTGATTTTT ACCGTCTCAT CCCTCAGCCG GCCTTCCAGT GGGCGTTCGA GCCAGATGTG TTTCAGAAGC AGGCCATCCT GCACTTGGAG CAGCACGACT CTGTCTTTGT TGCAGCTCAC ACATCCGCTG GGAAGACGGT GGTGGCCGAG TATGCCATTG CCCTGGCCCA GAAACACATG ACCCGTACCA TCTACACTTC TCCTATCAAA GCCCTGAGCA ACCAGAAGTT TCGGGACTTC CGAAACACAT TCGGGGATGT GGGACTGCTC ACGGGGGATG TGCAGCTGCA CCCAGAGGCC TCCTGCCTCA TCATGACCAC GGAGATCCTT CGCTCCATGC TGTACAGTGG CTCAGACGTC ATCCGAGACC TGGAGTGGGT CATTTTTGAT GAAGTCCACT ATATCAATGA TGCTGAGCGT GGGGTCGTGT GGGAGGAGGT GCTCATTATG CTCCCTGAGC ACGTCTCCAT CATCCTGCTG AGTGCCACCG TCCCCAACGC CCTGGAGTTT GCTGACTGGA TCGGGAGGCT GAAGCGGCGG CAGATCTATG TGATCAGCAC GGTGGCCCGT CCCGTCCCCT TGGAGCACTA TCTCTTCACA GGAAACAGCC CCAAGACACA GGGCGAACTC TTCCTTCTGC TGGACTCCCG AGGGGCCTTC CACACCAAGG GGTACTACGC TGCCGTGGAG GCCAAGAAAG AGAGGATGAG CAAACACGCC CAGACCTTCG GGGCCAAGCA GCCCACACAC CAGGGTGGGC CTGCGCAGGA CCGTGGGGTG TACCTGGCCT TGCTGGCTTC CCTCCGGACC CGGGCTCAGT TGCCTGTGGT AGTGTTCACC TTCTCCCGAG GCCGCTGTGA TGAACAGGCT TCAGGTCTCA CCTCCCTAGA CCTCACAACA AGCTCAGAGA AGAGTGAGAT CCACCTCTTC CTGCAGCGCT GTCTTGCCCG GCTCCGAGGC TCTGACCGAC AGCTCCCCCA GGTCCTGCAC ATGTCGGAGC TCCTCCGCCG AGGCCTGGGT GTGCACCACA GCGGCATCCT GCCCATCCTT AAGGAGATTG TGGAGATGCT TTTCAGCCGG GGCCTAGTCA AGGTCCTGTT TGCCACCGAG ACTTTTGCCA TGGGGGTAAA CATGCCAGCC AGGACAGTGG TGTTTGACTC CATGCGCAAA CATGATGGCT CCACCTTCCG GGACCTGCTG CCTGGAGAGT ACGTGCAGAT GGCAGGCCGG GCGGGCCGGA GGGGCCTGGA CCCCACGGGC ACCGTCATCC TTCTCTGTAA GGGCCGAGTG CCTGAGATGG CAGATCTACA CCGCATGATG ATGGGGAAAC CATCACAGCT TCAGTCCCAG TTCCGCCTCA CATATACCAT GATCCTCAAC CTGCTGCGGG TGGACGCCCT CAGAGTGGAA GACATGATGA AGAGGAGCTT CTCAGAGTTC CCCTCCCGCA AGGACAGCAA GGCCCATGAG CAGGCTCTGG CTGACCTCAC CAAGAGGCTG GGGGCTTTGG AGGAGCCTGA TGTGACTGGT CAGTTGGCTG ACCTGCCTGA GTATTACAGC TGGGCGGAGG AGCTGACAGA GACCCGGAAC ATGATCCAGC GACGCATCAT GGAGTCTGTG AACGGGCTGA AATCTCTGTC AGTGGGAAGG GTGGTGGTTG TGAAGAATGA AGAGCATCAC AATGCGCTGG GTGTGATCCT GCAGGTCTCC TCAAACTCCA CTAGCCGAGT ATTTACAACC TTGGTCTTGT GTGATAAACC TGCTGTGTCT GAGAACCCAA GGGACAAGGG GCCAGCCACT CCAGATGTGC CCCACCCAGA TGACCTTGTA GGCTTCAAGT TGTTCCTGCC TGAAGGGCCC TGCGAGCACA CTGTGGCCAA GCTCCAGCCA GGGGATGTGG CTGCCATCTC TACCAAGGTG CTCCGGGTGA ATGGGGAGAA GATTTCTGAG GACTTCAGCA AGAGGCAGCA ACCGAAATTC AGGAAGGACC CTCCCCTCGC GGCCGTGACC ACTGCTGTTC AGGAGCTGCT GCGTCTGGCC CAGGCCTATC CAGCAGGACC CCCAACCCTC GACCCTATCA ACGACCTGCA ACTGAAGGAT GTGGCAGTGG TAGAAGGTGG GCTCCGGGCC CGGAAGCTGG AGGAGCTGAT CCGAGGCGCT CAGTGTGTAC ACAGCCCCCG GTTTCCTGCC CAGTATGTGA AGCTACAGGA GCGAATGCAG ATTCAGAAGG AAATGGAGAG GCTGCGCTTC CTCCTGTCTG ACCAGTCGCT GTTGCTGCTC CCCGAGTACC ACCAGCGTGT AGAGGTGCTT CGGACCCTGG GCTATGTGGA TGAGGCTGGC ACAGTGAAGC TGGCGGGCCG GGTGGCCTGT GCCATGAGCA GCCATGAGCT GCTCCTCACT GAACTCATGT TTGACAATGC ACTGAGTGCT CTGCGACCAG AGGAAATAGC AGCTCTGCTC TCTGGTCTGG TGTGCCAGAG CCCCGGAGAC CCTGGGGATC AGCTGCCAAG CACCCTCAAA CAGGGGGTAG AACGCGTCAA AGCTGTGGCC AAGCGGATTG GTGAGGTTCA GGTGGCCTGC GGCCTGAACC AGACGGTGGA GGAATTTGTG GGGGAGCTGA ATTTTGGGCT GGTGGAAGTT GTTTATGAGT GGGCTCGGGG TATGCCCTTC TCCGAGTTGG CAGGGCTCTC GGGGACCCCC GAAGGCTTGG TTGTCCGCTG TATCCAGCGC CTGGCTGAGA TGTGCCGCTC ACTTCGAGGG GCGGCCCGTT TGGTAGGAGA GCCTGTGTTA GGGGCCAAGA TGGAGACGGC AGCCACCTTG CTCCGGAGGG ACATCGTCTT CGCAGCCAGC CTCTATACCC AGTAA
The stop codons will be deleted if pcDNA3.1+ /C-(K)DYK vector is selected.