Ninein (NIN) (NM_020921) Human Untagged Clone
CAT#: SC318708
NIN (untagged)-Human ninein (GSK3B interacting protein) (NIN), transcript variant 2
"NM_020921" in other vectors (2)
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Specifications
Product Data | |
Type | Human Untagged Clone |
Tag | Tag Free |
Symbol | NIN |
Synonyms | SCKL7 |
Vector | pCMV6-Entry |
E. coli Selection | Kanamycin (25 ug/mL) |
Mammalian Cell Selection | Neomycin |
Sequence Data |
>NCBI ORF sequence for NM_020921, the custom clone sequence may differ by one or more nucleotides
ATGGATGAGGTGGAGCAGGACCAGCATGAGGCCCGACTCAAGGAGCTGTTTGACAGTTTTGACACGACGG GCACAGGGTCCCTGGGGCAGGAGGAACTCACCGACCTTTGCCACATGTTGAGCTTGGAGGAGGTGGCCCC AGTGCTGCAGCAGACATTACTTCAGGACAACCTCTTGGGCAGGGTACATTTTGACCAATTTAAAGAAGCA TTAATACTCATCTTGTCCAGAACTCTGTCAAATGAAGAACACTTTCAAGAACCAGACTGCTCACTAGAAG CTCAGCCCAAATATGTTAGAGGTGGGAAGCGTTACGGACGAAGGTCCTTGCCCGAGTTCCAAGAGTCCGT GGAGGAGTTTCCTGAAGTGACGGTGATTGAGCCACTGGATGAAGAAGCGCGGCCTTCACACATCCCAGCC GGTGACTGCAGTGAGCACTGGAAGACGCAACGCAGTGAGGAGTATGAAGCGGAAGGCCAGTTAAGGTTTT GGAACCCAGATGACTTGAATGCTTCACAGAGTGGATCTTCCCCTCCCCAAGACTGGATAGAAGAGAAACT GCAAGAAGTTTGTGAAGATTTGGGGATCACCCGTGATGGTCACCTGAACCGGAAGAAGCTGGTCTCCATC TGTGAGCAGTATGGTTTACAGAATGTGGATGGAGAGATGCTCGAGGAAGTATTCCATAATCTTGATCCTG ACGGTACAATGAGTGTAGAAGATTTTTTCTATGGTTTGTTTAAAAATGGAAAATCTCTTACACCATCAGC ATCTACTCCATATAGACAACTAAAAAGGCACCTTTCCATGCAGTCTTTCGATGAGAGTGGACGACGTACC ACAACCTCATCAGCAATGACAAGTACCATTGGCTTTCGGGTCTTCTCCTGCCTGGATGATGGGATGGGCC ATGCATCTGTGGAGAGAATACTGGACACCTGGCAGGAAGAGGGCATTGAGAACAGCCAGGAGATCCTGAA GGCCTTGGATTTCAGCCTCGATGGAAACATCAATTTGACAGAATTAACACTGGCCCTTGAAAATGAACTT TTGGTTACCAAGAACAGCATTCACCAGGCGGCTCTGGCCAGCTTTAAGGCTGAAATCCGGCATTTGTTGG AACGAGTTGATCAGGTGGTCAGAGAAAAAGAGAAGCTACGGTCAGATCTGGACAAGGCCGAGAAGCTCAA GTCTTTAATGGCCTCGGAGGTGGATGATCACCATGCGGCCATAGAGCGGCGGAATGAGTACAACCTCAGG AAACTGGATGAAGAGTACAAGGAGCGAATAGCAGCCTTAAAAAATGAACTCCGAAAAGAGAGAGAGCAGA TCCTGCAGCAGGCAGGCAAGCAGCGTTTAGAACTTGAACAGGAAATTGAAAAGGCAAAAACAGAAGAGAA CTATATCCGGGACCGCCTTGCCCTCTCTTTAAAGGAAAACAGTCGTCTGGAAAATGAGCTTCTAGAAAAT GCAGAGAAGTTGGCAGAATATGAGAATCTGACAAACAAACTTCAGAGAAATTTGGAAAATGTGTTAGCAG AAAAGTTTGGTGACCTCGATCCTAGCAGTGCTGAGTTCTTCCTGCAAGAAGAGAGACTGACACAGATGAG AAATGAATATGAGCGGCAGTGCAGGGTACTACAAGACCAAGTAGATGAACTCCAGTCTGAGCTGGAAGAA TATCGTGCACAAGGCAGAGTGCTCAGGCTTCCGTTGAAGAACTCACCGTCAGAAGAAGTTGAGGCTAACA GCGGTGGCATTGAGCCCGAACACGGGCTCGGTTCTGAAGAATGCAATCCATTGAATATGAGCATTGAGGC AGAGCTGGTCATTGAACAGATGAAAGAACAACATCACAGGGACATATGTTGCCTCAGACTGGAGCTCGAA GATAAAGTGCGCCATTATGAAAAGCAGCTGGACGAAACCGTGGTCAGCTGCAAGAAGGCACAGGAGAACA TGAAGCAAAGGCATGAGAACGAAACGCACACCTTAGAAAAACAAATAAGTGACCTTAAAAATGAAATTGC TGAACTTCAGGGGCAAGCAGCAGTGCTCAAGGAGGCACATCATGAGGCCACTTGCAGGCATGAGGAGGAG AAAAAACAACTGCAAGTGAAGCTTGAGGAGGAAAAGACTCACCTGCAGGAGAAGCTGAGGCTGCAACATG AGATGGAGCTCAAGGCTAGACTGACACAGGCTCAAGCAAGCTTTGAGCGGGAGAGGGAAGGCCTTCAGAG TAGCGCCTGGACAGAAGAGAAGGTGAGAGGCTTGACTCAGGAACTAGAGCAGTTTCACCAGGAGCAGCTG ACAAGCCTGGTGGAGAAACACACTCTTGAGAAAGAGGAGTTAAGAAAAGAGCTCTTGGAAAAGCACCAAA GGGAGCTTCAGGAGGGAAGGGAAAAAATGGAAACAGAGTGTAATAGAAGAACCTCTCAAATAGAAGCCCA GTTTCAGTCTGATTGTCAGAAAGTCACTGAGAGGTGTGAAAGCGCTCTGCAAAGCCTGGAGGGGCGCTAC CGCCAAGAGCTGAAGGACCTCCAGGAACAGCAGCGTGAGGAGAAATCCCAGTGGGAATTTGAGAAGGACG AGCTCACCCAGGAGTGTGCGGAAGCCCAGGAGCTGCTGAAAGAGACTCTTAAGAGAGAGAAAACAACTTC TCTGGTCCTGACCCAGGAGAGAGAGATGCTGGAGAAAACATACAAAGAACATTTGAACAGCATGGTCGTC GAGAGACAGCAGCTACTCCAAGACCTGGAAGACCTAAGAAATGTATCTGAAACCCAGCAAAGCCTGCTGT CTGACCAGATACTTGAGCTGAAGAGCAGTCACAAAAGGGAACTGAGGGAGCGTGAGGAGGTCCTGTGCCA GGCAGGGGCTTCGGAGCAGCTGGCCAGCCAGCGGCTGGAAAGACTAGAAATGGAACATGACCAGGAAAGG CAGGAAATGATGTCCAAGCTTCTAGCCATGGAGAACATTCACAAAGCGACCTGTGAGACAGCAGATCGAG AAAGAGCCGAGATGAGCACAGAAATCTCCAGACTTCAGAGTAAAATAAAGGAAATGCAGCAGGCAACATC TCCTCTCTCAATGCTTCAGAGTGGTTGCCAGGTGATAGGAGAGGAGGAGGTGGAAGGAGATGGAGCCCTG TCCCTGCTTCAGCAAGGGGAGCAGCTGTTGGAAGAAAATGGGGACGTCCTCTTAAGCCTGCAGAGAGCTC ATGAACAGGCAGTGAAGGAAAATGTGAAAATGGCTACTGAAATTTCTAGATTGCAACAGAGGCTACAAAA GTTAGAGCCAGGGTTAGTAATGTCTTCTTGTTTGGATGAGCCAGCTACTGAGTTTTTTGGAAATACTGCG GAACAAACAGAGCCGTTTTTACAGCAAAACCGAACGAAGCAAGTAGAAGGTGTGACCAGGCGGCATGTCC TAAGTGACCTGGAAGATGATGAGGTCCGGGACCTGGGAAGTACAGGGACGAGCTCTGTTCAGAGACAGGA AGTCAAAATAGAGGAGTCTGAAGCTTCAGTAGAGGGTTTTTCTGAGCTTGAAAACAGTGAAGAGACCAGG ACTGAATCCTGGGAGCTGAAGAATCAGATTAGTCAGCTTCAGGAACAGCTAATGATGTTATGTGCGGACT GTGATCGAGCTTCTGAAAAGAAACAGGACCTACTTTTTGATGTTTCTGTGCTAAAAAAGAAACTGAAGAT GCTTGAGAGAATCCCTGAGGCTTCTCCCAAATATAAGCTGTTGTATGAAGATGTGAGCCGAGAAAATGAC TGCCTTCAGGAAGAGCTGAGAATGATGGAGACACGCTACGATGAGGCACTAGAAAATAACAAAGAACTCA CTGCAGAGGTTTTCAGGTTGCAGGATGAGCTGAAGAAAATGGAGGAAGTCACTGAAACATTCCTCAGCCT GGAAAAGAGTTACGATGAGGTCAAAATAGAAAATGAGGAGCTGAATGTTCTGGTTTTGAGACTTCAAGGC AAGATTGAGAAGCTTCAGGAAAGCGTGGTCCAGCGGTGTGACTGCTGCTTATGGGAAGCCAGTTTAGAGA ACCTGGAAATCGAACCTGATGGAAATATACTCCAGCTCAATCAGACACTGGAAGAGTGTGTGCCCAGGGT TAGGAGTGTACATCATGTCATAGAGGAATGTAAGCAAGAAAACCAGTACCTTGAGGGGAACACACAGCTC TTGGAAAAAGTAAAAGCACATGAAATTGCCTGGTTACATGGAACAATTCAGACACATCAAGAAAGGCCAA GAGTACAGAATCAAGTTATACTGGAGGAAAACACTACTCTCCTAGGCTTTCAAGACAAACATTTTCAGCA TCAGGCCACCATAGCAGAGTTAGAACTGGAGAAAACAAAGTTACAGGAGCTGACTAGGAAGTTGAAGGAG AGAGTCACTATTTTAGTTAAGCAAAAAGATGTACTTTCTCACGGAGAAAAGGAGGAAGAGCTGAAGGCAA TGATGCATGACTTGCAGATCACGTGCAGTGAGATGCAGCAAAAAGTTGAACTTCTGAGATATGAATCTGA AAAGCTTCAACAGGAAAATTCTATTTTGAGAAATGAAATTACTACTTTAAATGAAGAAGATAGCATTTCT AACCTGAAATTAGGGACATTAAATGGATCTCAGGAAGAAATGTGGCAAAAAACGGAAACTGTAAAACAAG AAAATGCTGCAGTTCAGAAGATGGTTGAAAATTTAAAGAAACAGATTTCAGAATTAAAAATCAAAAACCA ACAATTGGATTTGGAAAATACAGAACTTAGCCAAAAGAACTCTCAAAACCAGGAAAAACTGCAAGAACTT AATCAACGTCTAACAGAAATGCTATGCCAGAAGGAAAAAGAGCCAGGAAACAGTGCATTGGAGGAACGGG AACAAGAGAAGTTTAATCTGAAAGAAGAACTGGAACGTTGTAAAGTGCAGTCCTCCACTTTAGTGTCTTC TCTGGAGGCGGAGCTCTCTGAAGTTAAAATACAGACCCATATTGTGCAACAGGAAAACCACCTTCTCAAA GATGAACTGGAGAAAATGAAACAGCTGCACAGATGTCCCGATCTCTCTGACTTCCAGCAAAAAATCTCTA GTGTTCTAAGCTACAACGAAAAACTGCTGAAAGAAAAGGAAGCTCTGAGTGAGGAATTAAATAGCTGTGT CGATAAGTTGGCAAAATCAAGTCTTTTAGAGCATAGAATTGCGACGATGAAGCAGGAACAGAAATCCTGG GAACATCAGAGTGCGAGCTTAAAGTCACAGCTGGTGGCTTCTCAGGAAAAGGTTCAGAATTTAGAAGACA CCGTGCAGAATGTAAACCTGCAAATGTCCCGGATGAAATCTGACCTACGAGTGACTCAGCAGGAAAAGGA GGCTTTAAAACAAGAAGTGATGTCTTTACATAAGCAACTTCAGAATGCTGGTGGCAAGAGCTGGGCCCCA GAGATAGCTACTCATCCATCAGGGCTCCATAACCAGCAGAAAAGGCTGTCCTGGGACAAGTTGGATCATC TGATGAATGAGGAACAGCAGCTGCTTTGGCAAGAGAATGAGAGGCTCCAGACCATGGTACAGAACACCAA AGCCGAACTCACGCACTCCCGGGAGAAGGTCCGTCAGTTGGAATCCAATCTTCTTCCCAAGCACCAAAAA CATCTAAACCCATCAGGTACCATGAATCCCACAGAGCAAGAAAAATTGAGCTTAAAGAGAGAGTGTGATC AGTTTCAGAAAGAACAATCTCCTGCTAACAGGAAGGTCAGTCAGATGAATTCCCTTGAACAAGAATTAGA AACAATTCATTTGGAAAATGAAGGCCTGAAAAAGAAACAAGTAAAACTGGATGAGCAGCTCATGGAGATG CAGCACCTGAGGTCCACTGCGACGCCTAGCCCGTCCCCTCATGCTTGGGATTTGCAGCTGCTCCAGCAGC AAGCCTGTCCGATGGTGCCCAGGGAGCAGTTTCTGCAGCTTCAACGCCAGCTGCTGCAGGCAGAAAGGAT AAACCAGCACCTGCAGGAGGAACTTGAAAACAGGACCTCCGAAACCAACACACCACAGGGAAACCAGGAA CAACTGGTAACTGTCATGGAGGAACGAATGATAGAAGTTGAACAGAAACTGAAACTAGTGAAAAGGCTTC TTCAAGAGAAAGTGAATCAGCTCAAAGAACAACTCTGCAAGAACACTAAGGCAGACGCAATGGTGAAGGA CTTGTATGTTGAAAATGCCCAGTTGTTGAAAGCTCTGGAAGTGACTGAACAGCGACAGAAAACAGCAGAG AAGAAAAATTACCTCCTGGAGGAGAAGATTGCCAGCCTCAGTAATATAGTTAGGAATCTGACACCAGCGC CATTGACTTCTACACCTCCTTTGAGGTCATAG |
Restriction Sites | SgfI-MluI |
ACCN | NM_020921 |
ORF Size | 6402 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_020921.3, NP_065972.3 |
RefSeq Size | 10293 |
RefSeq ORF | 6402 |
Locus ID | 51199 |
Domains | EFh |
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 (2) is the longest transcript and it encodes the longest isoform (2). Sequence Note: This RefSeq record was created from transcript and genomic sequence data because no single transcript was available for the full length of the gene. The extent of this transcript is supported by transcript alignments. |
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