The following WDR75 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the WDR75 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 |
OPc05701 |
Clone ID Related Accession (Same CDS sequence) |
XM_001164827.3
|
Accession Version |
XM_001164827.3 Latest version! |
Documents for ORF clone product in default vector |
Sequence Information |
ORF Nucleotide Sequence (Length: 2493bp)
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 |
2018-03-19 |
Organism |
Pan troglodytes(chimpanzee) |
Product |
WD repeat-containing protein 75 |
Comment |
Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_036881.1) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process
On Oct 7, 2014 this sequence version replaced XM_001164827.2.
##Genome-Annotation-Data-START##
Annotation Provider :: NCBI
Annotation Status :: Full annotation
Annotation Name :: Pan troglodytes Annotation Release 105
Annotation Version :: 105
Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline
Annotation Software Version :: 8.0
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
| ATGGTGGAAG AGGAGAACAT CCGCGTGGTT CGTTGTGGCG GCAGCGAGTT GAACTTTAGG AGAGCTGTGT TCTCTGCAGA TTCTAAGTAT ATCTTCTGTG TCTCTGGAGA CTTTGTTAAA GTTTACAGCA CAGTTACAGA GGAGTGTGTA CACATACTGC ATGGACACAG AAATCTGGTG ACTGGAATCC AGCTTAACCC CAACAACCAT CTACAGCTGT ATTCTTGTTC CCTTGATGGC ACAATTAAAC TGTGGGACTA TATAGATGGC ATCTTAATAA AGACTTTCAT AGTTGGATGT AAACTTCATG CCCTCTTTAC TCTTGCCCAA GCTGAGGATT CTGTCTTTGT TATAGTGAAT AAAGAAAAAC CAGATATATT TCAGCTGGTT TCAGTGAAAC TGCCAAAATC ATCAAGCCAG GAAGTAGAAG CCAAGGAGCT GTCCTTCGTT TTGGATTACA TAAACCAGTC ACCCAAGTGC ATTGCCTTTG GAAACGAGGG AGTGTATGTT GCTGCAGTAC GGGAATTTTA CTTGTCTGTT TATTTTTTCA AAAAGAAAAC AACATCAAGG TTTACTTTAT CATCATCAAG AAATAAGAAG CATGCTAAAA ACAATTTTAC ATGTGTAGCA TGTCACCCAA CGGAAGACTG CATCGCATCT GGTCACATGG ATGGCAAAAT TCGTCTTTGG AGGAATTTTT ATGATGATAA GAAATATACG TACACATGTT TACATTGGCA CCATGATATG GTTATGGATT TGGCTTTTTC AGTGACAGGC ACCAGTCTGC TGAGTGGCGG TCGTGAATCT GTACTTGTAG AGTGGCGCGA TGCAACAGAG AAGAATAAGG AGTTTCTCCC GCGTTTAGGA GCTACTATTG AACATATCTC AGTCTCGCCT GCAGGAGATT TATTCTGCAC TTCTCACTCT GATAATAAGA TAATAATTAT TCACCGAAAC CTTGAAGCAT CCGCAGTAAT TCAAGGCCTA GTGAAAGATA GGAGTATCTT CACTGGTTTG ATGATTGATC CAAGAACTAA AGCTTTGGTT TTGAATGGAA AACCTGGCCA CCTGCAGTTT TATTCTCTCC AGAGTGATAA ACAGTTATAC AATTTAGATA TTATACAGCA AGAATATATT AATGATTATG GTCTGATCCA AATTGAACTA ACAAAGGCTG CGTTTGGCTG CTTTGGTAAC TGGCTTGCAA CAGTGGAACA GCGGCAAGAA AAGGAAACTG AGCTTGAATT GCAAATGAAA CTGTGGATGT ATAATAAGAA AACACAAGGG TTTATTCTTA ACACTAAAAT TAACATGCCA CACGAAGACT GCATTACAGC TCTCTGTTTC TGTAATGCAG AAAAATCTGA ACAGCCCACC TTGGTTACAG CTAGCAAAGA TGGTTACTTC AAAGTGTGGA TATTAACAGA TGACTCTGAC ATATACAAAA AAGCTGTTGG CTGGACCTGT GACTTTGTTG GTAGTTATCA CAAGTATCAA GCAACTAACT GTTGTTTCTC CGAAGATGGT TCTTTACTAG CAGTTAGTTT TGAGGAAATA GTCACAATAT GGGATTCTAT AACATGGGAA CTTAAATGTA CATTTTGCCA ACGAGCTGGG AAAATAAGGC ACCTTTGCTT TGGGAGATTG ACATGTTCAA AGTATCTACT TGGTGCTACT GAAAATGGCA TTCTTTGCTG TTGGAATCTG CTGAGCTGTG CATTGGAGTG GAATGCAAAA TTAAATGTTA GAGTTATGGA ACCCGATCCT AATTCAGAGA ATATTGCTGC AATCTCTCAG TCTTCAGTGG GTTCAGACTT GTTTGTATTT AAACCTAGTG AGCCAAGGCC GTTGTATATT CAAAAGGGTA TCTCCAGAGA GGAAGTCCAG TGGGGAGTGT TTGTTCCACG AGATGTCCCT GAATCCTTCA CCTCAGAAGC TTACCAGTGG CTAAATAGAT CCCAGTTTTA CTTCCTAACA AAATCACAGA GTTTATTGAC ATTCAGTACA GAGTCTCCAG AAGAAAAACT CACACCAACA AGCAAACAGC TGCTAGCAGA AGAAAGTCTT CCCACAACCC CATTTTATTT CATATTGGGA AAACACAGGC AACAGCAGGA TGAAAAACTA AACGAAACTT TAGAGAATGA GCTGGTACAA CTACCCTTAA CAGAAAACAT ACCCGCAATT AGTGAGCTTC TTCACACTCC AGCCCATGTC CTGCCATCTG CTGCTTTCCT GTGCTCCATG TTTGTAAATT CATTGCTGCT GTCTAAAGAG ACTAAGAGTG CTAAGGAAAT TCCTGAAGAT GTAGATATGG AAGAAGAAAA AGAAAGTGAA GATTCAGATG AAGAAAATGA TTTTACCAAA AAAGTCCAGG ATACAAGTAA CACAGGTTTA GGAGAAGACA TTATACATCA GTTGTCAAAA TCTGAAGAAA AAGAACTGAG AAAATTTAGG AAAATAGACT ACAGCTGGAT AGCTGCCCTT TAA |
The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.
RefSeq |
XP_001164827.1 |
CDS | 56..2548 |
Translation | |
Target ORF information:
RefSeq Version | XM_001164827.3 |
Organism | Pan troglodytes(chimpanzee) |
Definition | Pan troglodytes WD repeat domain 75 (WDR75), mRNA. |
Target ORF information:
Epitope | DYKDDDDK |
Bacterial selection | AMPR |
Mammalian selection | NeoR |
Vector | pcDNA3.1+/C-(K)DYK |
|
XM_001164827.3 |
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
| ATGGTGGAAG AGGAGAACAT CCGCGTGGTT CGTTGTGGCG GCAGCGAGTT GAACTTTAGG AGAGCTGTGT TCTCTGCAGA TTCTAAGTAT ATCTTCTGTG TCTCTGGAGA CTTTGTTAAA GTTTACAGCA CAGTTACAGA GGAGTGTGTA CACATACTGC ATGGACACAG AAATCTGGTG ACTGGAATCC AGCTTAACCC CAACAACCAT CTACAGCTGT ATTCTTGTTC CCTTGATGGC ACAATTAAAC TGTGGGACTA TATAGATGGC ATCTTAATAA AGACTTTCAT AGTTGGATGT AAACTTCATG CCCTCTTTAC TCTTGCCCAA GCTGAGGATT CTGTCTTTGT TATAGTGAAT AAAGAAAAAC CAGATATATT TCAGCTGGTT TCAGTGAAAC TGCCAAAATC ATCAAGCCAG GAAGTAGAAG CCAAGGAGCT GTCCTTCGTT TTGGATTACA TAAACCAGTC ACCCAAGTGC ATTGCCTTTG GAAACGAGGG AGTGTATGTT GCTGCAGTAC GGGAATTTTA CTTGTCTGTT TATTTTTTCA AAAAGAAAAC AACATCAAGG TTTACTTTAT CATCATCAAG AAATAAGAAG CATGCTAAAA ACAATTTTAC ATGTGTAGCA TGTCACCCAA CGGAAGACTG CATCGCATCT GGTCACATGG ATGGCAAAAT TCGTCTTTGG AGGAATTTTT ATGATGATAA GAAATATACG TACACATGTT TACATTGGCA CCATGATATG GTTATGGATT TGGCTTTTTC AGTGACAGGC ACCAGTCTGC TGAGTGGCGG TCGTGAATCT GTACTTGTAG AGTGGCGCGA TGCAACAGAG AAGAATAAGG AGTTTCTCCC GCGTTTAGGA GCTACTATTG AACATATCTC AGTCTCGCCT GCAGGAGATT TATTCTGCAC TTCTCACTCT GATAATAAGA TAATAATTAT TCACCGAAAC CTTGAAGCAT CCGCAGTAAT TCAAGGCCTA GTGAAAGATA GGAGTATCTT CACTGGTTTG ATGATTGATC CAAGAACTAA AGCTTTGGTT TTGAATGGAA AACCTGGCCA CCTGCAGTTT TATTCTCTCC AGAGTGATAA ACAGTTATAC AATTTAGATA TTATACAGCA AGAATATATT AATGATTATG GTCTGATCCA AATTGAACTA ACAAAGGCTG CGTTTGGCTG CTTTGGTAAC TGGCTTGCAA CAGTGGAACA GCGGCAAGAA AAGGAAACTG AGCTTGAATT GCAAATGAAA CTGTGGATGT ATAATAAGAA AACACAAGGG TTTATTCTTA ACACTAAAAT TAACATGCCA CACGAAGACT GCATTACAGC TCTCTGTTTC TGTAATGCAG AAAAATCTGA ACAGCCCACC TTGGTTACAG CTAGCAAAGA TGGTTACTTC AAAGTGTGGA TATTAACAGA TGACTCTGAC ATATACAAAA AAGCTGTTGG CTGGACCTGT GACTTTGTTG GTAGTTATCA CAAGTATCAA GCAACTAACT GTTGTTTCTC CGAAGATGGT TCTTTACTAG CAGTTAGTTT TGAGGAAATA GTCACAATAT GGGATTCTAT AACATGGGAA CTTAAATGTA CATTTTGCCA ACGAGCTGGG AAAATAAGGC ACCTTTGCTT TGGGAGATTG ACATGTTCAA AGTATCTACT TGGTGCTACT GAAAATGGCA TTCTTTGCTG TTGGAATCTG CTGAGCTGTG CATTGGAGTG GAATGCAAAA TTAAATGTTA GAGTTATGGA ACCCGATCCT AATTCAGAGA ATATTGCTGC AATCTCTCAG TCTTCAGTGG GTTCAGACTT GTTTGTATTT AAACCTAGTG AGCCAAGGCC GTTGTATATT CAAAAGGGTA TCTCCAGAGA GGAAGTCCAG TGGGGAGTGT TTGTTCCACG AGATGTCCCT GAATCCTTCA CCTCAGAAGC TTACCAGTGG CTAAATAGAT CCCAGTTTTA CTTCCTAACA AAATCACAGA GTTTATTGAC ATTCAGTACA GAGTCTCCAG AAGAAAAACT CACACCAACA AGCAAACAGC TGCTAGCAGA AGAAAGTCTT CCCACAACCC CATTTTATTT CATATTGGGA AAACACAGGC AACAGCAGGA TGAAAAACTA AACGAAACTT TAGAGAATGA GCTGGTACAA CTACCCTTAA CAGAAAACAT ACCCGCAATT AGTGAGCTTC TTCACACTCC AGCCCATGTC CTGCCATCTG CTGCTTTCCT GTGCTCCATG TTTGTAAATT CATTGCTGCT GTCTAAAGAG ACTAAGAGTG CTAAGGAAAT TCCTGAAGAT GTAGATATGG AAGAAGAAAA AGAAAGTGAA GATTCAGATG AAGAAAATGA TTTTACCAAA AAAGTCCAGG ATACAAGTAA CACAGGTTTA GGAGAAGACA TTATACATCA GTTGTCAAAA TCTGAAGAAA AAGAACTGAG AAAATTTAGG AAAATAGACT ACAGCTGGAT AGCTGCCCTT TAA |
The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.