KIF26B (NM_018012) Human Untagged Clone
CAT#: SC113797
KIF26B (untagged)-Human kinesin family member 26B (KIF26B)
"NM_018012" in other vectors (3)
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Specifications
Product Data | |
Type | Human Untagged Clone |
Tag | Tag Free |
Symbol | KIF26B |
Synonyms | FLJ10157; MGC35030 |
Vector | pCMV6-XL4 |
E. coli Selection | Ampicillin (100 ug/mL) |
Mammalian Cell Selection | None |
Sequence Data |
>NCBI ORF sequence for NM_018012, the custom clone sequence may differ by one or more nucleotides
ATGAATTCGGTAGCTGGGAATAAAGAGAGGCTTGCGGTCTCCACCAGGGGCAAGAAATACGGGGTGAATG AAGTCTGCTCGCCCACCAAGCCCGCAGCGCCCTTCTCCCCGGAAAGCTGGTACCGGAAAGCATACGAGGA GTCGCGCGCCGGCAGCCGGCCCACTCCTGAGGGCGCGGGCTCAGCGCTCGGCTCCTCGGGGACCCCGTCT CCCGGCTCGGGCACCTCGTCCCCGAGCTCGTTCACCGGCTCCCCGGGACCCGCCTCCCCCGGCATCGGCA CTAGTTCGCCGGGCTCCTTGGGCGGCTCTCCGGGCTTCGGCACAGGCTCCCCGGGCTCCGGCAGCGGCGG CGGCTCCTCCCCCGGCTCGGACCGCGGCGTCTGGTGCGAGAACTGCAACGCCCGCCTGGTGGAGCTCAAG AGGCAGGCCCTGAGGTTGCTCCTCCCGGGGCCCTTCCCGGGCAAGGACCCTGCTTTCTCGGCTGTGATTC ACGACAAACTCCAGGTCCCCAACACCATCCGGAAGGCATGGAACGACCGGGACAACCGCTGTGACATTTG CGCCACTCACCTGAACCAGTTGAAGCAGGAGGCCATCCAGATGGTGCTGACGTTGGAGCAGGCAGCCGGC AGTGAGCACTACGACGCCTCGCCCTGCTCCCCGCCACCGCTCTCCAACATCCCCACCCTGGTGGGGTCCC GGCACGTGGGTGGGCTCCAGCAGCCCAGAGACTGGGCCTTTGTGCCCGCCCCCTGTGCCACCTCCAACTA CACAGGCTTCGCCAACAAGCACGGCAGCAAACCCAGCAGCCTTGGGGTCAGCAATGGGGCGGAAAAGAAG AGCGGGTCCCCAACCCACCAGGCCAAGGTCAGCCTCCAGATGGCCACCAGTCCAAGCAATGGGAACATCC TCAATTCGGTGGCCATCCAGGCTCACCAGTACCTGGATGGCACCTGGTCCCTGTCGAGAACCAACGGGGT CACCCTGTACCCATACCAGATCTCCCAGCTGATGACAGAGAGTAGCCGGGAGGGACTAACAGAAGCAGTG CTGAACCGCTACAATGCAGACAAGCCTTCCGCCTGCAGTGTCCCAGCCTCGCAGGGCTCCTGCGTGGCCA GCGAGACTTCCACAGGCACATCGGTGGCCGCCTCCTTCTTTGCACGAGCTGCCCAGAAGTTAAATCTGTC TTCTAAAAAGAAGAAACATCGGCCTTCCACTTCTTCCGCTGCCGAACCACCGCTCTTTGCAACCAGCTTC AGTGGGATTCTGCAGACCTCCCCTCCCCCAGCCCCACCCTGCCTGCTGAGGGCTGTCAACAAGGTGAAGG ACACCCCGGGGCTGGGCAAGGTGAAAGTCATGCTTCGCATCTGTTCCACCTTGGCTCGAGATACTTCAGA ATCCAGCTCTTTCTTAAAGGTGGACCCACGGAAGAAGCAGATCACCTTGTACGATCCCCTGACTTGTGGA GGTCAAAATGCCTTCCAAAAGAGAGGCAACCAGGTTCCTCCAAAGATGTTTGCCTTCGATGCAGTTTTTC CACAAGACGCTTCTCAGGCTGAAGTGTGTGCAGGCACCGTGGCAGAGGTGATCCAGTCTGTGGTCAACGG GGCAGATGGCTGCGTGTTCTGTTTCGGCCACGCCAAACTGGGAAAATCCTACACCATGATCGGAAAGGAT GATTCCATGCAGAACCTGGGCATCATTCCCTGTGCCATCTCTTGGCTCTTCAAGCTCATAAACGAACGCA AGGAAAAGACCGGCGCCCGTTTCTCAGTCCGGGTTTCCGCCGTGGAAGTGTGGGGGAAGGAGGAGAACCT GCGGGACCTGCTGTCGGAGGTGGCCACGGGCAGCCTGCAGGACGGCCAGTCCCCGGGCGTGTACCTCTGT GAGGACCCCATCTGCGGCACGCAGCTGCAGAACCAGAGCGAGCTGCGGGCCCCCACCGCAGAGAAGGCTG CCTTTTTCCTGGATGCCGCCATTGCCTCCCGCAGGAGCCACCAACAGGACTGTGATGAGGACGACCACCG CAACTCACACGTGTTCTTCACACTGCACATCTACCAGTACCGGATGGAGAAGAGCGGGAAAGGGGGAATG TCTGGAGGTCGCAGCCGCCTGCATCTCATTGATCTCGGCAGCTGTGTGAAAGCTCTTAGCAAAAATCGAG AAGGAGGCTCAGGGCTGTGTCTCTCGCTGTCTGCTCTGGGCAATGTCATCCTGGCTCTCGTCAATGGCAG CAAACACATTCCATACAAAGAGAGCAAGCTCGCCATGTTGCTGCGGGAGTCTCTGGGGAACATGAACTGC CGTACCACCATGATCGCGCACATCTCGGCCGCGGTCGGGAGCTACGCGGAGACCCTGTCCACCATCCAGA TTGCATCGAGAGTCTTGAGGATGAAGAAAAAGAAGACGAAGTACACATCCAGCTCGTCCGGCGGGGAGAG CTCCTGCGAAGAAGGCCGCATGCGCAGGCCCACCCAGCTGAGACCCTTCCACACCAGGGCCACGGTGGAC CCTGACTTCCCCATCGCTCACCTGTCCAGCGACCCCGACTACTCCTCCAGCAGCGAGCAGTCCTGCGACA CCGTCATCTACATCGGGCCCAACGGCACGGCCCTCTCTGACAAGGAGCTCACCGACAACGAGGGCCCCCC AGACTTTGTCCCTATCGTGCCAGCCCTGCAGAAGACCCGGGGCGACAGCCGGCCCGCAGAGGCAGGAGAG GCTGCAGCCGGCAAGTCAGAAAGGGACTGCCTGAAGTGCAACACGTTTGCCGAGCTGCAGGAGAGGCTGG ACTGCATCGACGGCAGCGAGGAGCCCAGCAGCTTTCCTTTCGAAGAACTGCCTGCTCAGTTTGGGCCAGA GCAGGCAAGCAGAGGCCCCCGGTTAAGCCAAGCAGCGGGGGCAAGCCCACTCTCTGAGTCTGATAAGGAA GATAATGGGTCCGAAGGTCAGCTGACCAACAGAGAAGGCCCTGAACTCCCAGCCTCCAAGATGCAGAGGA GTCACTCACCTGTGCCCGCCGCGGCACCCGCCCACAGCCCCAGCCCGGCCTCACCCAGGAGCGTCCCGGG CAGCAGTAGCCAGCACAGCGCCTCCCCACTCGTGCAGAGCCCCAGCCTCCAGAGCAGCCGGGAGAGCCTC AACTCCTGCGGCTTCGTGGAAGGCAAGCCCAGGCCCATGGGCTCCCCCCGGCTGGGCATCGCCAGCCTGT CCAAGACCTCGGAGTACAAGCCACCCAGCTCTCCTTCCCAGAGATGCAAAGTCTACACCCAGAAGGGGGT CCTGCCGTCTCCCGCCCCACTGCCTCCCTCGAGCAAGGATTCCGGCGTGGCGTCTAGGGAGTCCTTGCTG CAGCCCGAGGTGCGTACGCCCCCGGTTGGAATGAGCCCCCAGGTTTTGAAAAAATCCATGTCTGCTGGGA GCGAAGGGTTCCCGGAAACTCCTGTCGATGATGAGCAGCAGGCAGCTACTCCTTCAGAGTCCAAGAAGGA GATCCTGAGCACCACGATGGTGACGGTGCAGCAGCCACTGGAGCTGAACGGTGAGGACGAGCTGGTGTTC ACGCTGGTGGAGGAGCTGACCATCAGCGGGGTCCTGGACAGCGGCCGCCCCACCAGCATCATCAGCTTCA ACAGCGACTGCTCTGCACGGGCCCTGGCCTCGGGCTCGCGGCCCGTCAGCATCATCAGCAGCATCAGCGA GGACCTGGAGTGCTACTCCAGCACGGCCCCCGTCTCCGAGGTCAGCATCACACAGTTCTTGCCCCTCCCG AAGATGAGCCTGGATGAGAAGGCCCAGGACGCAGGGAGCAGACGCTCTTCCATCAGCTCCTGGCTGAGCG AGATGAGCGCGGGCAGTGAGGGTGAGCAGTCGTGCCACAGTTTCATAGCCCAGACGTGTTTTGGGCACGG GGAGGCAATGGCAGAACCTGTGGCCTCGGAGTTTGTCAGCAGCCTCCAGAACACCGCTGTGGTGTGCAGA GAGAAGCCCAAGGCCAGCCCCGACAACTTGCTCATCCTGTCTGAGATGGGAGATGACTCTTTCAACAAAG CAGCCCCCATCAAAGGCTGCAAAATATCCACAGTGAGCAAGGCCATGGTCACCATCTCCAACACGGCCAA TCTGAGCAGCTGCGAGGGGTACATCCCCATGAAGACCAATATCACAGTTTACCCCTGCATTGCCATGAGC CCCCGGAACATCCAAGAGCCGGAGGCCCCCACCGCCACCCCCAAAGCAGGCCCCACATTAGCCCAGTCCC GGGAGAGTAAGGAAAACAGTGCAAAGAAAGAGATGAAATTTGAGGACCCGTGGCTGAAACGAGAAGAGGA AGTGAAAAAAGAGACGGCTCATCCCAATGAAGAAGGGATGATGAGGTGTGAGACTGCCACGGGCCCCTCG AATGCTGAGACCAGAGCAGAGCAGGAGCAGGACGGAAAGCCCAGTCCGGGAGACAGGCTCAGCAGCAGCA GCGGAGAGGTGTCGGCCTCCCCGGTCACTGACAACTTCAGGAGGGTCGTGGATGGGTGTGAGATGGCCCT GCCCGGTTTGGCCACCCAGAGCCCCGTGCATCCCAACAAAAGCGTCAAGTCCAGCAGCCTTCCCAGGGCC TTTCAGAAGGCCAGCCGGCAGGAGGAGCCGGACAGCCTCTCCTATTACTGCGCTGCTGAGACCAACGGGG TGGGTGCAGCCTCGGGCACCCCGCCCTCCAAGGCTACCCTGGAGGGGAAGGTGGCTTCCCCCAAGCACTG TGTTCTGGCTCGGCCCAAAGGGACTCCCCCTCTGCCCCCTGTCCGAAAGTCCAGCCTGGACCAGAAGAAC CGGGCCAGCCCTCAGCACAGTGCCAGCGGCAGCGGCACCAGCAGCCCCCTGAACCAACCAGCCGCCTTCC CGGCGGGCCTCCCAGACGAGCCTAGCGGCAAGACGAAGGACGCCAGCAGCAGCAGCAAGCTCTTCAGTGC CAAGCTGGAGCAGCTGGCCAGCAGAAGCAACTCGCTGGGCAGGGCGACAGTCAGCCACTACGAATGCCTC TCCCTGGAGCGGGCCGAGAGCCTGTCCTCCGTGAGCTCCCGGCTGCACGCGGGCAAGGACGGCACCATGC CCCGCGCGGGGAGGAGCCTGGGCCGCAGCGCCGGGACCTCGCCCCCCAGCTCCGGGGCCTCGCCCAAGGC CGGCCAGTCCAAGATCTCCGCCGTGAGCAGACTCCTCCTGGCCAGCCCCAGAGCGCGCGGCCCGTCCGCC TCCACCACCAAAACCCTCAGCTTCTCCACCAAGTCCCTGCCGCAGGCGGTGGGCCAGGGCTCCAGCTCGC CCCCCGGTGGGAAGCACACGCCCTGGTCCACGCAGTCCCTCAGCAGGAACAGGAGCTCGGGCCTGGCCTC CAAGCTTCCCCTGCGGGCCGTCAGCGGGCGCATCTCGGAGCTGCTGCAGGGTGGCGCGGGCGCCCGGGGC TTGCAGCTGCGGGCCGGGCCCGAGGCGGAGGCGCGCGGGGGGGCCCTGGCCGAGGACGAGCCCGCGGCCG CGCACCTGCTCCCGTCGCCCTACAGCAAGATCACGCCCCCGCGGAGGCCCCACCGCTGCAGCAGCGGCCA CGGCAGCGACAACAGCAGCGTGCTGAGCGGGGAGCTCCCGCCGGCCATGGGGAAGACGGCCCTGTTCTAC CACAGCGGCGGCAGCAGCGGCTACGAGAGCGTGATGCGGGACAGCGAGGCCACCGGCAGCGCGTCCTCGG CGCAGGACTCCACGAGCGAGAACAGCAGCTCCGTGGGCGGCAGGTGCCGGAGCCTCAAGACCCCGAAGAA ACGCTCCAATCCAGGTTCTCAGAGACGGAGGCTTATCCCAGCACTATCCCTGGACACCTCTTCCCCTGTG AGAAAACCCCCCAACAGCACAGGCGTCCGCTGGGTGGATGGCCCCTTGCGGAGCAGCCCGAGGGGCCTTG GGGAACCCTTTGAGATTAAAGTCTATGAAATCGATGACGTGGAGCGCCTGCAGCGGCGACGAGGGGGTGC CAGCAAGGAGGCCATGTGCTTCAATGCAAAGCTGAAGATTCTGGAACACCGCCAGCAGAGGATCGCCGAG GTCCGCGCGAAGTACGAGTGGCTGATGAAGGAGCTGGAGGCGACCAAACAGTATCTGATGCTGGATCCCA ACAAGTGGCTCAGTGAATTTGACTTGGAGCAGGTTTGGGAGCTGGATTCCCTGGAGTACCTGGAGGCACT GGAGTGTGTGACGGAGCGCCTGGAGAGCCGTGTCAACTTCTGCAAGGCCCATCTCATGATGATCACCTGC TTCGACATCACCTCCAGGCGCCGGTAG >OriGene 5' read for NM_018012 unedited
CAGAATTTTGTAATACGACTTCACTATAGGGCGGCCGCGAATTCGCACGAGCCAGCCCTC AGCACAGTGCCAGCGGCAGCGGCACCAGCAGCCCCCTGAACCAACCAGCCGCCTTCCCGG CGGGCCTCCCAGACGAGCCTAGCGGCAAGACGAAGGACGCCAGCAGCAGCAGCAAGCTCT TCAGTGCCAAGCTGGAGCAGCTGGCCAGCAGAAGCAACTCGCTGGGCAGGGCGACGGTCA GCCACTACGAATGCCTCTCCCTGGAGCGGGCCGAGAGCCTGTCCTCCGTGAGCTCCCGGC TGCACGCGGGCAAGGACGGCACCATGCCCCGCGCGGGGAGGAGCCTGGGCCGCAGCGCCG GGACCTCGCCCCCCACTCCGGGGCCTCGCCCAAGGCCGGCCAGTCCAAGATCTCCGCCGT GAGCAGACTCCTCCTGGCCAGCCCCAGAGCGCGCGGCCCGTCCGCCTCCACCACCAAAAC CCTCAGCTTCTCCACCAAGTCCCTGCCGCAGGCGGTGGGCCAGGGCTCCAGCTCGCCCCC CGGTGGGAAGCACACGCCCTGGTCCACGCAGTCCCTCAGCAGGAACAGGAGCTCGGGCCT GGCCTCCAAGCTTCCCCTGCGGGCCGTCAGCGGGCGCATCTCGGAGCTGCTGCAGGGGGG CNCCGGGGCGCCCGGNGGCTTGCAGCTGCGGGCCGGGCCCNNAGCGGAGGCGCGCGGGGG GGGCCCTGGCCGAGGACGAGCCCGCGGCCGCGCACCTGCTCCCGTCGCCCTACAGCAAGA TCACGCCCCCGGGGAGGGCCCACCGCTGCAGCAGCGGCCACCGCAGCGACACAANCANCG TGCTGAGCCGGGGAGCTCCCGCCGGNCATGGGGAAGAACGCCCTTGGTCTAACACAGCGG GGGCAGCACCGGCTACAAAAGCGTGATGGGGGACAACGAGGCCACCGGAAGGGCGTCTTG GGGGAGGACTCACGAGCGAGACGGAGTTTCGGG >OriGene 3' read for NM_018012 unedited
NNGGGTTCAACTATGGAACCGCGGCCGCAATCTANGATCGAGTTTTTTTTTTTTTTTTTT TTTTTTTTTTTTAACCATAAAAAACAGGTAATATTTATTCATAAGCAATACTGATTAAGA AATAGCTCTACAAACACAACTTACTTAGAAACAGCAAGTCAGAAATAGGATAAAACACCA AGAGAAAAAGAGCTGTGAATACATTTCCAAAATGTTTTTCTTGTTTGTTTTGTTGTTTTC ATCTTGACTAGCACCATCTGTACACAAGAAAGTATGAACATAAATGTTTGGATAATAATA AAGATTTGCAAGGCACTTAATCAGTCATTCTGGGTTGTTTTGTGTTCGCTTTCCACAGCA ATCCTACATCCACGCCCCTCCTTTCTCACGAAAGCAAGAGAAGAGTGAGGTCTCTTTTGC TAGCAGTTCTTATGTACAAACAAGGTCTTTAAGGTTCCTCAAAGTGCTTTTTCAGTCTCA CAGGGCTTGGACACCCCTCGGGCTTCCCATCCTTTTCTCCTTCCACGGTGTTTGACGTTT GCACCTTTCCTACAGAAAACAAAAGAAAACTCGCCTTCCGCTCAACGCCCGCTCCAGACT TGCCACCAACCTTCATCCTCATTCATTGTCTTTGATGCCCCAGCACAGAGGGCCTAGGGG CGTGCAACATCTCTGAAGTCCTGGGGAGCGGGGGACCACTAGGACAAGGGTCTGGCTCAT CTACCGGCGCCTGGAGGTGATGTCCAAGCAGGTGATCATCATGAGATGGGCCTTGCAAAA GTGACACGGGTCTCCAGGCGGCTCGTCAAAACTCCAGTGCCTCCGGTACTCCAGGGAATC CAGCTCCCAACCTGCTCCAAGTCAATTCACTGAGCCACTGGTGGGATCCACCTCAGAACG GTT |
Restriction Sites | NotI-NotI |
ACCN | NM_018012 |
ORF Size | 7287 bp |
Insert Size | 2200 |
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). |
Reference Data | |
RefSeq | NM_018012.1, NP_060482.1 |
RefSeq Size | 7287 |
RefSeq ORF | 7287 |
Locus ID | 55083 |
Protein Families | Druggable Genome |
Gene Summary | The protein encoded by this gene is an intracellular motor protein thought to transport organelles along microtubules. The encoded protein is required for kidney development. Elevated levels of this protein have been found in some breast and colorectal cancers. [provided by RefSeq, Mar 2017] |
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