Ninein (NIN) (NM_182946) Human Untagged Clone
CAT#: SC315383
NIN (untagged)-Human ninein (GSK3B interacting protein) (NIN), transcript variant 5
"NM_182946" in other vectors (2)
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Specifications
Product Data | |
Type | Human Untagged Clone |
Tag | Tag Free |
Symbol | NIN |
Synonyms | SCKL7 |
Vector | pCMV6 series |
Sequence Data |
>NCBI ORF sequence for NM_182946, the custom clone sequence may differ by one or more nucleotides
ATGGATGAGGTGGAGCAGGACCAGCATGAGGCCCGACTCAAGGAGCTGTTTGACAGTTTT GACACGACGGGCACAGGGTCCCTGGGGCAGGAGGAACTCACCGACCTTTGCCACATGTTG AGCTTGGAGGAGGTGGCCCCAGTGCTGCAGCAGACATTACTTCAGGACAACCTCTTGGGC AGGGTACATTTTGACCAATTTAAAGAAGCATTAATACTCATCTTGTCCAGAACTCTGTCA AATGAAGAACACTTTCAAGAACCAGACTGCTCACTAGAAGCTCAGCCCAAATATGTTAGA GGTGGGAAGCGTTACGGACGAAGGTCCTTGCCCGAGTTCCAAGAGTCCGTGGAGGAGTTT CCTGAAGTGACGGTGATTGAGCCACTGGATGAAGAAGCGCGGCCTTCACACATCCCAGCC GGTGACTGCAGTGAGCACTGGAAGACGCAACGCAGTGAGGAGTATGAAGCGGAAGGCCAG TTAAGGTTTTGGAACCCAGATGACTTGAATGCTTCACAGAGTGGATCTTCCCCTCCCCAA GACTGGATAGAAGAGAAACTGCAAGAAGTTTGTGAAGATTTGGGGATCACCCGTGATGGT CACCTGAACCGGAAGAAGCTGGTCTCCATCTGTGAGCAGTATGGTTTACAGAATGTGGAT GGAGAGATGCTCGAGGAAGTATTCCATAATCTTGATCCTGACGGTACAATGAGTGTAGAA GATTTTTTCTATGGTTTGTTTAAAAATGGAAAATCTCTTACACCATCAGCATCTACTCCA TATAGACAACTAAAAAGGCACCTTTCCATGCAGTCTTTCGATGAGAGTGGACGACGTACC ACAACCTCATCAGCAATGACAAGTACCATTGGCTTTCGGGTCTTCTCCTGCCTGGATGAT GGGATGGGCCATGCATCTGTGGAGAGAATACTGGACACCTGGCAGGAAGAGGGCATTGAG AACAGCCAGGAGATCCTGAAGGCCTTGGATTTCAGCCTCGATGGAAACATCAATTTGACA GAATTAACACTGGCCCTTGAAAATGAACTTTTGGTTACCAAGAACAGCATTCACCAGGCG GCTCTGGCCAGCTTTAAGGCTGAAATCCGGCATTTGTTGGAACGAGTTGATCAGGTGGTC AGAGAAAAAGAGAAGCTACGGTCAGATCTGGACAAGGCCGAGAAGCTCAAGTCTTTAATG GCCTCGGAGGTGGATGATCACCATGCGGCCATAGAGCGGCGGAATGAGTACAACCTCAGG AAACTGGATGAAGAGTACAAGGAGCGAATAGCAGCCTTAAAAAATGAACTCCGAAAAGAG AGAGAGCAGATCCTGCAGCAGGCAGGCAAGCAGCGTTTAGAACTTGAACAGGAAATTGAA AAGGCAAAAACAGAAGAGAACTATATCCGGGACCGCCTTGCCCTCTCTTTAAAGGAAAAC AGTCGTCTGGAAAATGAGCTTCTAGAAAATGCAGAGAAGTTGGCAGAATATGAGAATCTG ACAAACAAACTTCAGAGAAATTTGGAAAATGTGTTAGCAGAAAAGTTTGGTGACCTCGAT CCTAGCAGTGCTGAGTTCTTCCTGCAAGAAGAGAGACTGACACAGATGAGAAATGAATAT GAGCGGCAGTGCAGGGTACTACAAGACCAAGTAGATGAACTCCAGTCTGAGCTGGAAGAA TATCGTGCACAAGGCAGAGTGCTCAGGCTTCCGTTGAAGAACTCACCGTCAGAAGAAGTT GAGGCTAACAGCGGTGGCATTGAGCCCGAACACGGGCTCGGTTCTGAAGAATGCAATCCA TTGAATATGAGCATTGAGGCAGAGCTGGTCATTGAACAGATGAAAGAACAACATCACAGG GACATATGTTGCCTCAGACTGGAGCTCGAAGATAAAGTGCGCCATTATGAAAAGCAGCTG GACGAAACCGTGGTCAGCTGCAAGAAGGCACAGGAGAACATGAAGCAAAGGCATGAGAAC GAAACGCACACCTTAGAAAAACAAATAAGTGACCTTAAAAATGAAATTGCTGAACTTCAG GGGCAAGCAGCAGTGCTCAAGGAGGCACATCATGAGGCCACTTGCAGGCATGAGGAGGAG AAAAAACAACTGCAAGTGAAGCTTGAGGAGGAAAAGACTCACCTGCAGGAGAAGCTGAGG CTGCAACATGAGATGGAGCTCAAGGCTAGACTGACACAGGCTCAAGCAAGCTTTGAGCGG GAGAGGGAAGGCCTTCAGAGTAGCGCCTGGACAGAAGAGAAGGTGAGAGGCTTGACTCAG GAACTAGAGCAGTTTCACCAGGAGCAGCTGACAAGCCTGGTGGAGAAACACACTCTTGAG AAAGAGGAGTTAAGAAAAGAGCTCTTGGAAAAGCACCAAAGGGAGCTTCAGGAGGGAAGG GAAAAAATGGAAACAGAGTGTAATAGAAGAACCTCTCAAATAGAAGCCCAGTTTCAGTCT GATTGTCAGAAAGTCACTGAGAGGTGTGAAAGCGCTCTGCAAAGCCTGGAGGGGCGCTAC CGCCAAGAGCTGAAGGACCTCCAGGAACAGCAGCGTGAGGAGAAATCCCAGTGGGAATTT GAGAAGGACGAGCTCACCCAGGAGTGTGCGGAAGCCCAGGAGCTGCTGAAAGAGACTCTT AAGAGAGAGAAAACAACTTCTCTGGTCCTGACCCAGGAGAGAGAGATGCTGGAGAAAACA TACAAAGAACATTTGAACAGCATGGTCGTCGAGAGACAGCAGCTACTCCAAGACCTGGAA GACCTAAGAAATGTATCTGAAACCCAGCAAAGCCTGCTGTCTGACCAGATACTTGAGCTG AAGAGCAGTCACAAAAGGGAACTGAGGGAGCGTGAGGAGGTCCTGTGCCAGGCAGGGGCT TCGGAGCAGCTGGCCAGCCAGCGGCTGGAAAGACTAGAAATGGAACATGACCAGGAAAGG CAGGAAATGATGTCCAAGCTTCTAGCCATGGAGAACATTCACAAAGCGACCTGTGAGACA GCAGATCGAGAAAGAGCCGAGATGAGCACAGAAATCTCCAGACTTCAGAGTAAAATAAAG GAAATGCAGCAGGCAACATCTCCTCTCTCAATGCTTCAGAGTGGTTGCCAGGTGATAGGA GAGGAGGAGGTGGAAGGAGATGGAGCCCTGTCCCTGCTTCAGCAAGGGGAGCAGCTGTTG GAAGAAAATGGGGACGTCCTCTTAAGCCTGCAGAGAGCTCATGAACAGGCAGTGAAGGAA AATGTGAAAATGGCTACTGAAATTTCTAGATTGCAACAGAGGCTACAAAAGTTAGAGCCA GGGTTAGTAATGTCTTCTTGTTTGGATGAGCCAGCTACTGAGTTTTTTGGAAATACTGCG GAACAAACAGAGCCGTTTTTACAGCAAAACCGAACGAAGCAAGTAGAAGGTGTGACCAGG CGGCATGTCCTAAGTGACCTGGAAGATGATGAGGTCCGGGACCTGGGAAGTACAGGGACG AGCTCTGTTCAGAGACAGGAAGTCAAAATAGAGGAGTCTGAAGCTTCAGTAGAGGGTTTT TCTGAGCTTGAAAACAGTGAAGAGACCAGGACTGAATCCTGGGAGCTGAAGAATCAGATT AGTCAGCTTCAGGAACAGCTAATGATGTTATGTGCGGACTGTGATCGAGCTTCTGAAAAG AAACAGGACCTACTTTTTGATGTTTCTGTGCTAAAAAAGAAACTGAAGATGCTTGAGAGA ATCCCTGAGGCTTCTCCCAAATATAAGCTGTTGTATGAAGATGTGAGCCGAGAAAATGAC TGCCTTCAGGAAGAGCTGAGAATGATGGAGACACGCTACGATGAGGCACTAGAAAATAAC AAAGAACTCACTGCAGAGGTTTTCAGGTTGCAGGATGAGCTGAAGAAAATGGAGGAAGTC ACTGAAACATTCCTCAGCCTGGAAAAGAGTTACGATGAGGTCAAAATAGAAAATGAGGAG CTGAATGTTCTGGTTTTGAGACTTCAAGGCAAGATTGAGAAGCTTCAGGAAAGCGTGGTC CAGCGGTGTGACTGCTGCTTATGGGAAGCCAGTTTAGAGAACCTGGAAATCGAACCTGAT GGAAATATACTCCAGCTCAATCAGACACTGGAAGAGTGTGTGCCCAGGGTTAGGAGTGTA CATCATGTCATAGAGGAATGTAAGCAAGAAAACCAGTACCTTGAGGGGAACACACAGCTC TTGGAAAAAGTAAAAGCACATGAAATTGCCTGGTTACATGGAACAATTCAGACACATCAA GAAAGGCCAAGAGTACAGAATCAAGTTATACTGGAGGAAAACACTACTCTCCTAGGCTTT CAAGACAAACATTTTCAGCATCAGGCCACCATAGCAGAGTTAGAACTGGAGAAAACAAAG TTACAGGAGCTGACTAGGAAGTTGAAGGAGAGAGTCACTATTTTAGTTAAGCAAAAAGAT GTACTTTCTCACGGAGAAAAGGAGGAAGAGCTGAAGGCAATGATGCATGACTTGCAGATC ACGTGCAGTGAGATGCAGCAAAAAGTTGAACTTCTGAGATATGAATCTGAAAAGCTTCAA CAGGAAAATTCTATTTTGAGAAATGAAATTACTACTTTAAATGAAGAAGATAGCATTTCT AACCTGAAATTAGGGACATTAAATGGATCTCAGGAAGAAATGTGGCAAAAAACGGAAACT GTAAAACAAGAAAATGCTGCAGTTCAGAAGATGGTTGAAAATTTAAAGAAACAGATTTCA GAATTAAAAATCAAAAACCAACAATTGGATTTGGAAAATACAGAACTTAGCCAAAAGAAC TCTCAAAACCAGGAAAAACTGCAAGAACTTAATCAACGTCTAACAGAAATGCTATGCCAG AAGGAAAAAGAGCCAGGAAACAGTGCATTGGAGGAACGGGAACAAGAGAAGTTTAATCTG AAAGAAGAACTGGAACGTTGTAAAGTGCAGTCCTCCACTTTAGTGTCTTCTCTGGAGGCG GAGCTCTCTGAAGTTAAAATACAGACCCATATTGTGCAACAGGAAAACCACCTTCTCAAA GATGAACTGGAGAAAATGAAACAGCTGCACAGATGTCCCGATCTCTCTGACTTCCAGCAA AAAATCTCTAGTGTTCTAAGCTACAACGAAAAACTGCTGAAAGAAAAGGAAGCTCTGAGT GAGGAATTAAATAGCTGTGTCGATAAGTTGGCAAAATCAAGTCTTTTAGAGCATAGAATT GCGACGATGAAGCAGGAACAGAAATCCTGGGAACATCAGAGTGCGAGCTTAAAGTCACAG CTGGTGGCTTCTCAGGAAAAGGTTCAGAATTTAGAAGACACCGTGCAGAATGTAAACCTG CAAATGTCCCGGATGAAATCTGACCTACGAGTGACTCAGCAGGAAAAGGAGGCTTTAAAA CAAGAAGTGATGTCTTTACATAAGCAACTTCAGAATGCTGGTGGCAAGAGCTGGGCCCCA GAGATAGCTACTCATCCATCAGGGCTCCATAACCAGCAGAAAAGGCTGTCCTGGGACAAG TTGGATCATCTGATGAATGAGGAACAGCAGCTGCTTTGGCAAGAGAATGAGAGGCTCCAG ACCATGGTACAGAACACCAAAGCCGAACTCACGCACTCCCGGGAGAAGGTCCGTCAGTTG GAATCCAATCTTCTTCCCAAGCACCAAAAACATCTAAACCCATCAGGTACCATGAATCCC ACAGAGCAAGAAAAATTGAGCTTAAAGAGAGAGTGTGATCAGTTTCAGAAAGAACAATCT CCTGCTAACAGGAAGGTCAGTCAGATGAATTCCCTTGAACAAGAATTAGAAACAATTCAT TTGGAAAATGAAGGCCTGAAAAAGAAACAAGTAAAACTGGATGAGCAGCTCATGGAGATG CAGCACCTGAGGTCCACTGCGACGCCTAGCCCGTCCCCTCATGCTTGGGATTTGCAGCTG CTCCAGCAGCAAGCCTGTCCGATGGTGCCCAGGGAGCAGTTTCTGCAGCTTCAACGCCAG CTGCTGCAGGCAGAAAGGATAAACCAGCACCTGCAGGAGGAACTTGAAAACAGGACCTCC GAAACCAACACACCACAGGGAAACCAGGAACAACTGGTAACTGTCATGGAGGAACGAATG ATAGAAGTTGAACAGAAACTGAAACTAGTGAAAAGGCTTCTTCAAGAGAAAGTGAATCAG CTCAAAGAACAAGTGAGCCTACCCGGTCATCTCTGTTCACCCACCTCACATTCCAGCTTT AACTCCAGTTTTACATCCCTTTATTGCCAT |
Restriction Sites | Please inquire |
ACCN | NM_182946 |
ORF Size | 6273 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_182946.1, NP_891991.1 |
RefSeq Size | 6522 |
RefSeq ORF | 6273 |
Locus ID | 51199 |
Gene Summary | This gene encodes one of the proteins important for centrosomal function. This protein is important for positioning and anchoring the microtubules minus-ends in epithelial cells. Localization of this protein to the centrosome requires three leucine zippers in the central coiled-coil domain. Multiple alternatively spliced transcript variants that encode different isoforms have been reported. [provided by RefSeq, Jul 2008] Transcript Variant: This variant (5) has multiple differences in the coding region and 3' UTR when compared to variant 2. The resulting isoform (5) has a distinct and shorter C-terminus as compared to isoform 2. Isoform 5 has also been referred to as hNinein-Lm. |
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