KIF13A (NM_022113) Human Untagged Clone
CAT#: SC308822
KIF13A (untagged)-Human kinesin family member 13A (KIF13A), transcript variant 1
"NM_022113" in other vectors (2)
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Specifications
Product Data | |
Type | Human Untagged Clone |
Tag | Tag Free |
Symbol | KIF13A |
Synonyms | bA500C11.2; RBKIN |
Vector | pCMV6-Entry |
E. coli Selection | Kanamycin (25 ug/mL) |
Mammalian Cell Selection | Neomycin |
Sequence Data |
>NCBI ORF sequence for NM_022113, the custom clone sequence may differ by one or more nucleotides
ATGTCGGATACCAAGGTAAAAGTTGCCGTCCGGGTCCGGCCCATGAACCGACGAGAACTGGAACTGAACA CCAAGTGCGTGGTGGAGATGGAAGGGAATCAAACGGTCCTGCACCCTCCTCCTTCTAACACCAAACAGGG AGAAAGGAAACCTCCCAAGGTATTTGCCTTTGATTATTGCTTTTGGTCCATGGATGAATCTAACACTACA AAATACGCTGGTCAAGAAGTGGTTTTCAAGTGCCTTGGGGAAGGAATTCTTGAAAAAGCCTTTCAGGGGT ATAATGCGTGTATTTTTGCATATGGACAGACAGGTTCGGGAAAATCCTTTTCCATGATGGGCCATGCTGA GCAGCTGGGCCTTATTCCAAGGCTCTGCTGTGCTTTATTTAAAAGGATCTCTTTGGAGCAAAATGAGTCA CAGACCTTTAAAGTTGAAGTGTCCTATATGGAAATTTATAATGAGAAAGTTCGGGATCTTTTAGACCCCA AAGGGAGTAGACAGTCTCTTAAAGTTCGAGAACATAAAGTTTTGGGACCATATGTAGATGGTTTATCTCA ACTAGCTGTCACTAGTTTTGAGGATATTGAGTCATTGATGTCTGAGGGAAATAAGTCTCGAACGGTAGCT GCTACCAACATGAACGAAGAAAGCAGCCGCTCCCATGCTGTGTTCAACATCATAATCACACAGACACTTT ATGACCTGCAGTCTGGGAATTCCGGGGAGAAAGTCAGTAAGGTCAGCTTGGTAGACCTGGCGGGTAGCGA AAGAGTATCTAAAACAGGAGCTGCAGGAGAGCGACTGAAAGAAGGCAGCAACATTAACAAATCGCTTACA ACCTTGGGGTTGGTTATATCATCACTGGCTGACCAGGCAGCTGGCAAGGGTAAAAGCAAATTTGTGCCTT ATCGAGATTCAGTCCTCACTTGGCTGCTTAAGGACAACTTGGGGGGCAACAGCCAAACCTCTATGATAGC CACAATCAGCCCAGCCGCAGACAACTATGAAGAGACCCTCTCCACATTAAGATATGCAGACCGAGCCAAA AGGATTGTGAACCATGCTGTTGTGAATGAGGACCCCAACGCAAAAGTGATCCGAGAACTGCGGGAGGAAG TCGAGAAACTGAGAGAGCAGCTCTCTCAGGCAGAGGCCATGAAGGCCCCTGAACTGAAGGAGAAGCTCGA AGAGTCTGAAAAGCTGATAAAAGAACTAACAGTGACTTGGGAAGAGAAGCTGAGAAAAACAGAAGAGATA GCACAGGAAAGACAACGACAACTTGAAAGCATGGGGATTTCCCTGGAGATGTCCGGTATCAAGGTGGGGG ATGACAAATGCTACTTAGTCAATCTGAATGCAGACCCTGCTCTTAACGAACTTCTGGTTTATTATTTAAA GGATCACACCAGGGTGGGTGCAGATACCTCTCAAGATATCCAGCTTTTTGGCATAGGAATTCAGCCTCAG CACTGTGAGATTGACATTGCATCTGATGGAGACGTCACTCTCACTCCAAAAGAAAATGCAAGGTCCTGTG TGAACGGCACCCTTGTGTGCAGTACCACCCAGCTGTGGCATGGTGACCGAATCCTATGGGGAAATAATCA CTTTTTTAGAATAAACTTACCTAAGAGGAAACGTCGAGATTGGTTGAAAGACTTTGAAAAAGAAACGGGC CCGCCAGAGCATGACCTGGATGCAGCCAGTGAGGCTTCCTCTGAACCAGACTATAACTATGAATTTGCAC AGATGGAAGTTATCATGAAAACCCTGAATAGTAATGACCCAGTTCAAAATGTGGTTCAGGTCCTGGAGAA ACAATACCTAGAAGAAAAGAGAAGTGCCCTAGAGGAGCAGCGGCTCATGTATGAGCGGGAACTGGAGCAA CTCCGCCAGCAGCTCTCCCCCGACAGGCAGCCACAGAGTAGCGGCCCTGACCGCCTGGCCTACAGCAGCC AGACAGCGCAGCAGAAGGTGACCCAGTGGGCAGAAGAGAGGGATGAACTCTTCCGACAAAGCCTGGCAAA ACTGCGAGAGCAGCTGGTTAAAGCTAATACCTTGGTGAGGGAAGCAAACTTCCTGGCTGAGGAAATGAGC AAACTCACCGATTACCAAGTGACTCTTCAGATCCCTGCTGCAAACCTCAGTGCCAATAGGAAGAGAGGTG CAATAGTGAGTGAACCAGCTATCCAAGTGAGGAGGAAAGGAAAGAGCACCCAAGTGTGGACCATTGAGAA GCTGGAGAATAAATTAATTGACATGAGAGACCTTTACCAAGAATGGAAGGAAAAAGTTCCTGAGGCAAAG AGACTCTACGGAAAACGAGGTGACCCTTTCTATGAAGCCCAAGAAAATCACAACCTCATCGGGGTGGCGA ATGTATTCTTGGAATGCCTCTTCTGTGATGTGAAACTTCAGTATGCAGTCCCTATCATCAGCCAGCAGGG GGAGGTTGCAGGGCGTCTCCACGTGGAAGTGATGCGTGTTACAGGAGCTGTTCCAGAGCGTGTGGTGGAG GATGACTCTTCGGAGAATTCCAGTGAAAGTGGGAGCCTTGAAGTCGTAGACAGCAGCGGGGAAATCATTC ACCGAGTCAAAAAGCTGACATGTCGGGTAAAAATTAAAGAAGCAACGGGGCTGCCCTTAAACCTCTCAAA TTTTGTCTTCTGTCAATACACATTCTGGGACCAGTGTGAGTCTACGGTGGCTGCCCCGGTGGTGGACCCC GAGGTGCCTTCACCACAGTCCAAGGATGCCCAGTACACAGTGACCTTCTCCCACTGTAAGGACTATGTGG TGAATGTAACAGAAGAATTTCTGGAGTTCATTTCAGATGGAGCACTGGCCATTGAAGTATGGGGCCACCG GTGTGCTGGAAATGGCAGCTCCATCTGGGAGGTCGATTCTCTTCATGCTAAGACAAGAACACTGCATGAC AGGTGGAATGAAGTAACGCGAAGAATAGAAATGTGGATCTCCATATTAGAATTGAATGAGTTAGGAGAGT ATGCTGCAGTGGAACTTCATCAGGCAAAAGATGTCAACACAGGAGGCATCTTTCAACTTAGACAGGGTCA TTCCCGTAGAGTACAAGTCACGGTGAAACCTGTGCAGCATTCAGGGACACTGCCACTTATGGTTGAAGCC ATCCTGTCAGTATCCATCGGCTGTGTAACTGCCAGGTCCACCAAACTCCAAAGAGGGCTGGACAGTTACC AGAGAGATGATGAGGATGGTGATGATATGGATAGTTATCAGGAAGAAGACTTAAACTGCGTAAGGGAGAG GTGGTCAGATGCACTCATTAAACGACGAGAATACCTGGATGAACAGATAAAAAAAGTCAGCAATAAAACA GAGAAAACAGAGGACGATGTGGAGCGGGAAGCCCAGCTTGTGGAGCAGTGGGTAGGGCTGACTGAGGAAA GGAATGCTGTGCTGGTGCCAGCCCCAGGCAGTGGGATTCCTGGGGCACCTGCCGACTGGATCCCACCTCC TGGAATGGAAACCCACATACCAGTTCTCTTCCTCGATTTGAATGCGGATGACCTCAGTGCCAATGAGCAG CTTGTTGGCCCCCATGCATCCGGCGTGAACTCCATCCTGCCCAAGGAGCATGGCAGCCAGTTTTTCTACC TGCCCATCATAAAGCACAGTGATGATGAGGTTTCAGCCACAGCCTCTTGGGATTCCTCGGTGCATGATTC TGTTCACTTGAATAGGGTCACACCACAGAATGAAAGGATTTACCTAATTGTGAAAACCACAGTTCAACTC AGCCACCCTGCTGCTATGGAGTTAGTATTACGAAAACGAATTGCAGCCAATATTTACAACAAACAGAGTT TCACGCAGAGTTTGAAGAGGAGAATATCCCTGAAAAATATATTTTATTCCTGTGGTGTAACCTATGAAAT AGTATCCAATATACCAAAGGCAACTGAGGAGATAGAGGACCGGGAAACGCTGGCTCTCCTGGCAGCAAGG AGTGAAAACGAAGGCACATCAGATGGGGAGACGTACATTGAGAAGTACACTCGAGGCGTGCTGCAGGTGG AAAACATTCTGAGTCTTGAACGGCTCCGGCAGGCCGTCACAGTCAAAGAAGCACTTTCCACCAAAGCCCG GCACATTCGGAGGAGCCTCAGTACACCAAATGTTCATAATGTCTCTTCCAGCCGACCGGACCTTTCTGGC TTTGATGAAGATGACAAGGGTTGGCCAGAGAACCAGTTGGACATGTCTGACTATAGCTCCAGTTACCAAG ATGTAGCATGTTATGGAACTTTACCCAGGGATTCTCCTCGAAGGAATAAAGAAGGTTGTACATCAGAGAC TCCTCATGCCTTAACCGTCAGCCCTTTTAAAGCATTCTCTCCTCAGCCACCAAAGTTTTTCAAGCCCCTA ATGCCTGTAAAAGAGGAGCATAAGAAAAGGATAGCCCTGGAAGCAAGGCCTCTTCTAAGCCAGGAGAGCA TGCCTCCACCTCAGGCACATAACCCTGGCTGCATTGTACCCTCAGGAAGCAATGGCAGCAGCATGCCAGT AGAACACAATAGCAAACGTGAGAAGAAGATTGACTCTGAGGAGGAAGAAAATGAGCTGGAAGCTATTAAC AGGAAGCTAATAAGTTCACAGCCTTATGTACCTGTGGAGTTTGCTGACTTCAGTGTTTACAATGCCAGCT TGGAGAACAGGGAATGGTTTTCCTCTAAAGTAGATCTGTCAAACTCACGGGTCTTGGAGAAAGAAGTGTC CCGTAGCCCTACCACCAGCAGTATTACCAGTGGCTACTTTTCCCACAGTGCCTCCAATGCCACCCTGTCT GACATGGTGGTCCCTTCTAGTGACAGCTCAGACCAGCTGGCCATTCAGACGAAGGATGCAGACTCCACCG AGCACTCCACACCATCGCTTGTGCATGATTTCAGGCCGTCCTCAAACAAAGAGTTGACAGAAGTCGAAAA AGGCTTGGTAAAGGACAAGATAATTGTGGTGCCACTCAAGGAAAACAGTGCCTTAGCCAAAGGGAGCCCA TCATCCCAGAGCATCCCTGAGAAAAACTCCAAATCACTGTGCAGGACTGGCTCATGTTCAGAACTAGATG CCTGCCCCAGCAAAATTAGCCAGCCAGCCAGGGGATTCTGCCCCAGGGAGGTGACGGTAGAACACACCAC CAACATCCTTGAAGACCATTCTTTCACAGAATTTATGGGAGTGTCAGAGGGAAAAGATTTTGATGGTTTG ACAGATTCTTCTGCTGGAGAGCTTTCCAGTAGGAGGAGTCTACCAAATAAAACAGGCGGCAAGACTGTCT CCGATGGGCTCCACCACCCCAGCCAGCTGCATTCCAAGTTAGAGAATGACCAGGTAATAATTCCAGAGGC AGCCTTTTGGGTTCTGTGCTGTCAATGA |
Restriction Sites | SgfI-MluI |
ACCN | NM_022113 |
ORF Size | 5418 bp |
OTI Disclaimer | Our molecular clone sequence data has been matched to the reference identifier above as a point of reference. Note that the complete sequence of our molecular clones may differ from the sequence published for this corresponding reference, e.g., by representing an alternative RNA splicing form or single nucleotide polymorphism (SNP). |
OTI Annotation | This TrueClone is provided through our Custom Cloning Process that includes sub-cloning into OriGene's pCMV6 vector and full sequencing to provide a non-variant match to the expected reference without frameshifts, and is delivered as lyophilized plasmid DNA. |
Reference Data | |
RefSeq | NM_022113.5, NP_071396.4 |
RefSeq Size | 6005 |
RefSeq ORF | 5418 |
Locus ID | 63971 |
Domains | kinesin |
Protein Families | Druggable Genome |
Gene Summary | This gene encodes a member of the kinesin family of microtubule-based motor proteins that function in the positioning of endosomes. This family member can direct mannose-6-phosphate receptor-containing vesicles from the trans-Golgi network to the plasma membrane, and it is necessary for the steady-state distribution of late endosomes/lysosomes. It is also required for the translocation of FYVE-CENT and TTC19 from the centrosome to the midbody during cytokinesis, and it plays a role in melanosome maturation. Alternative splicing of this gene results in multiple transcript variants. [provided by RefSeq, Aug 2011] Transcript Variant: This variant (1) encodes the longest isoform (a, also known as RBKIN1). |
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