Nin (NM_001106737) Rat Untagged Clone

CAT#: RN208150

Nin (untagged ORF) - Rat ninein (GSK3B interacting protein) (Nin), (10 ug)


  "NM_001106737" in other vectors (1)

Reconstitution Protocol

USD 4,120.00

11 Weeks*

Size
    • 10 ug

Product Images

Specifications

Product Data
Type Rat Untagged Clone
Tag Tag Free
Symbol Nin
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>RN208150 representing NM_001106737
Red=Cloning site Blue=ORF Orange=Stop codon

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGGATGAGGTGGAGCAGGACCAACATGAGGCCCGACTCAAGGAGCTGTTTGACAGTTTTGACACCCTGG
GAACTGGGTCTCTGGGTCAAGAGGAGCTCACTGACCTCTGCCATGTGCTATGCTTGGAAGATGTGGGCCC
GGTGCTGCAACAGACGCTACTCCAGGACAACCTCTTGGGCAGGGTACATTTCGACCAATTTAAAGAAGCA
TTAATACTTATCTTGTCTAGAACTCTGTCCAGTGAGGAGCACTTTGAGGAGTCAGACTGCTCACCAGAAG
CTCAGCCCAAATACGTTAGAGGCGGGAAGCGTTATGGACGGAGATCCCTGCCCGAGTTTCAAGAGTCTGG
GGAAGAGTTTGCAGAGGTGACAGTGCTTGAGCCACTGGAGGAAGAAGCCAGGCCATCACACATCCCAGCT
GGTGACTGCAGTGAGCACTGGAAGACACAACGCAGTGAGGAGTATGAAGCGGAAGGCCAGCTGAGGTTTT
GGAATCCAGACGACCTGAATGCTTCACATGGTGGGTCTTGCCCTCCTCCAGACTGGATAGAAGAGAAGCT
GCAAGAGGTTTGTGAGGATCTGGGGATCACTCGAGATGGTCACCTGAACCGGAAGAAGCTGGTTTCCATC
TGCGAACAGTATGGATTGCAGAATGTGGATGGAGCGATGCTGGAAGAGGTGTTTCTCAGCCTCGACCCTG
ATGGTACAATGAGTGTGGAAGACTTTTTCTATGGTCTGTTTAAGACTGGGAAATCCCTTACACCATCAGC
ATCTACTCCCTATAGACAACTAAAACGGCATCTGTCTATGCAGTCTTTTGATGAGAGTGGACGGCGGACC
ACAACCTCGTCAGCAATGATGAGTACCATTGGCTTCCGGGTCTTCTCCTGCTTGGATGATGGGATGGGCC
AGGCATCGGTGGAGAGGATCCTGGACACCTGGCAGGAGGAGGGCATTGAGAACAGCCAGGAGATCCTGAA
GGCTTTGGATTTCAGCCTGGATGGAAACATCAACCTGACAGAGCTGACGCTCGCTCTTGAGAATGAACTC
TTGGTTACCAAGAATGGCATTCACCAGGCAGCTCTAGCCAGCTTCAAGGCTGAGATCCGGCATTTGTTAG
AACGAGTTGACCAAGTAGTCAGAGAAAAAGAGAAACTACGGTCGGACTTGGACAAAGCAGAAAAGCTGAA
GTCGCTAATGGCTTCTGAGGTGGATGATCACCATGCGGCCATTGAACGGAGGAACGAGTACAACCTCAGG
AAACTGGATGAAGAATACAAGGAGCGCATAGCAGCCTTAAAGAATGAACTCCGCCAAGAGAGGGAACAGA
TCCTGCAGCAAGTGGGCAAGCAGCGGGTGGAGCTGGAACAGGAGATTGAAAAGGCCAAAACAGAAGAGAA
TTACATCCGGGACCGCCTTGCCCTCTCCCTCAAGGAAAACAATCGCCTGGAAAATGAGCTTCTGGAAAAC
GCAGAGAAGTTGGCAGAGTACGAGAACCTGACAAGCAAACTTCAGCGCAGTTTGGAAAATGTGTTAGCGG
AGAAGTTTGGTGACCTCGATCCCAGCAGTGCTGAATTCTTTCTTCAAGAGGAGAGGCTGGCACAGATGCG
AAATGAATATGAACAGCAGTGCAGGCTACTACAAGACCAAGTGGATGAGCTCCAGTCTGAACTAGAGGAG
TACCAGGCGCAGGGCAGAGTGCTCAGACTGCCCTGTCAGAACGCGCTGTCAGAAGAACTGGACGGTCACG
GGGATGGTATCGAGCAGGACCAAGAGCCTGGTTCTGGAGAATGCAACCCACTGAATATGAGCATTGAGGC
AGAGCTGGTCATCGAACAGCTGAAAGAGCAGCACCACAGGGACCTGTGTCACCTGAGACTGGAGCTGGAA
GACAAAGTGCGCCACTATGAAAAGCAGCTGGATCACACCAGGGTCGCCTGTGAAAAGGAGCAGGTGGCCA
TGAAGCAAAAGTATGAGCAGGGAATGCGCACCTTGGAGAAGCAAATCAGTGAGCTTCAGAGTGAGATTGC
AGACCTTCAGGGGCAGGCAGCGGTGCTGAAGGAGGCCCACCACAAGGCCAGCTGCAGGCACGAGGAGGAA
AAGAAACAGCTGCAAATGGTGTTTGATGAGGAAAAGACTCAGCTTCAGGAGGAGCTGCGGCTGGAGCATG
AGCAGGAGCTCAAGGCCAGGCTGCAGCAGGCAGAGGAAAGCTTTCGTCAGGAGAGAGAGGGACTCGCTCA
GGCTGCCGCCTGGACTGAAGAGAAGGCGAGGAGCTTGACTCGGGACCTGGAGCAGTCTCACCAGGAGCAG
CTACTGAGCCTGATGGAGAAGCATGCTCTAGAGAAAGAAGAGCTGAGAAAAGAGCTCTCGGAATATCACC
AACGGGAACTCCAGGAGGGACGGGAAGAAATGGAAACAGAGTGTAATAGAAGAGTCTCTCAGATAGAAGC
CCAGTTTCAGGCTGACTGTGAGAAAGTCACTGAGCGCTGTGAACAAACGCTGCAAAGCCTTGAGGGTCGC
TACCGCCAAGAGCTGAAGGACCTCCTGGACCAGCACCTGGAGGAGAGATCTCAGTGGGAGTTCGAAAAGG
ATGAGCTCACTCAAGAGTGCACGGAAGCCCAGGAACAGCTGGAGGAGGTGCTCCAAAGGGAGAAGGCGAC
CGCTCTGGCCAGGAGCCAGGAACAGGAGACGCTGGAGAAGACGCACAAGGAGCGTTTGGCTATCCTGAGC
ATGGAAAGAGAGCAGCTGTTGCAAGACCTGAAAGACCTACAGAACACATCTGAGCGCCAGCACAGCCTCC
TGTCTGACCAGATGCTTGAGTTGAAGAGAAGTCAGGAGAGAGAGCTGAGGGAGCCAGAGCACGTGCTGTG
CCAGACCGGGGTCTCTGAGCAGCTAGGCAGCCAGCAGCTGGCAAGACTACAGGTAGAGCATGAGCAAGAG
AGGCGAGAAATGGCAGGCAAGATTGCCGCCCTGGAGAGCGCCCACAGGGTGAGCTGTGAGAGAGCGGATC
AAGAGAAGGCAGAGATGAGCGCTGAAATCCGCAGGCTTCAGAGTACAGTTAAGGACCTACAGCAGGCAAC
ATCTCTCTTGGTGCTTCAGGGTGGCTGCCGGGCAACGGCGGGGGAGGAGGCAGAAGGAAACGGAGCCCTG
TCCCTGCTTCAGCAAGGGGAGCAGCTGTTGGAAGAAAATGGAGACGTCCTCATCAGCCTGCAGAAAGCTC
ACGAGCGCGCAGTGAAGGAAAATGCAAAAATGGCCACTGAAATTTCTAGATTGCAACAGAGGCTGAAAAA
GTTAGAGCCGGGGTCAGCGATCTCCTCTTGTTTGGAGGAGCGGATGACTGAGATTTCTGGAAGTTCCAGG
GAACATGCAGAACCCGTAATGAAACGAGGTACAGCCACTAAGCACTTCCTAAGTGACCCAGGAGACCACG
AGGCCCAGGGCCTGGGGAGTACAGGGACGAGCTCTGTTCAGAGGCAGGAGTGCAGAACGGAGGAGTCGGA
AGCTTCCCTGGAGTGCTTTTCTGAGCTTGAAAACAGTGAAGACACCAGGACAGAGTCCTGGGACCTGAAG
AGTCAGATCATCCAGCTTCAGGAGCAACTAACAGTCTTGCGTGCAGACTGCGATCGGGCTTCTGAGAGGA
AGCGGGACCTGCTTTTTGATATCTCTGTGCTGAAAAAGAAACTAAAGATGTTGGAGAGGCTCCCCGAGGC
GTCTTCCAAGTATAAGGTGTTGTATGAGGATGCGGCTAGAGAAAACGCCTGCCTCCAGGAGGAGTTGAGG
CTCATGGAGATGCGCTACGCGGACTCGCTGGACAGCAACAAAGAGCTCACCGCTGAGGTCTACAGGTTGC
AGGATGAGATGAAGAAAATGGAGGAGGTGACGGGGACATTCCTCAGCCTGGAGAACAGCTACGATGAGGT
CAAACTGGAGAATGAGAAGCTCAGTGCTCTGGTGTTGAGACTTCAAGGGAAGATGGAGGAGGTGCTGGAA
AGGGCTGCCCTGCAGGGTGACAGCTACTCCCTGTGGGAAGGTCCTTCAGAGAATCTGGAGGTCACCTCTG
ATGAAAAGATGCTTGAACTCCATCAGACCGAAGAAGAGTGTACACCCGAGGTCATGAGCAGGCACCATAT
CATAGAAGAGTGTAGACAGGAAACCCGGTGCTGTGAACAGGGAAGCACGCAGCTCCTGGCTGGCATAAAA
GCACACGAAATCGCCTGGTTCCGCAGAAAAATTGAGACGCATCAAGAAAAGCCTAGCGTGCAGAACCGAG
TTATCCTGGAGGAGAGTGCTGCTCTCCTGGGCCTTCAGGGCACACATCTTCAGCACGAGGCCACAATCGC
AGAGTTAGAACTGGAGAAGCAAAAGCTACAGGAGCTGACTAGAAATTTGAGGGAGCGAGTCACTACCTTA
GCTAAGCAAAAAGACGCACCTTCTCAAGGAGAGGAGGAGGAAGAGCTGAAGGCCGTGATGCACGACTTGC
AGATCACGTGCGGTGAGATGCAGAGGAAGGTTGAACTTCTGAGATATGAATCTGAAAAGCTTCAAGAGGA
AAATTCTATTTTGAGAAATGAAATTACTACTTTAAATGAGGAAGATAGCATCTCTAACCTGAAATTGGAG
GAGTTAAATGGGTCTCAGGAAGAATTGTGGCAGAAAATAGAAACCATAGAGCAGGAAAAGGCTTCCATTC
AGAAGATGGTTGAAAAACTAAAGAAACAGGTTTCAGATTTAAAACTCAAAAACCAACAGTTGGATTCAGA
AAATAAAGAACTCAGCCAAAAGAACTCCCAAAACAAGGAAGAACTGAAAACCCTTAATCAACGTCTGGCA
GAAATGCTGTGCCAGAAGGAGGACCCAGGAACTTGCACCTCTGAGAAATGGGAGCAAGAAAATGAGAGCC
TCAAAGAAGAACTGGATCGCTACAAAGTTCAGACGTCCACTTTGGTGTCTTCTCTGGAGGCCGAGCTTTC
TGAAGTTAAACTGCAGACTCACATTGTGGAGCAAGAAAACCTCCTCCTCAAGGATGAACTGGAGAGATTG
AAGCAACTGCACAGATGTCCTGACCTCTCTGACTTCCAGCAAAAAATGTGTAGCATTCTAAGCTACAACG
AAAACCTGCTGAAGGAGAAAGAAGTTCTCAGTGAAGAATTAAAGAGCTGTGCCGATAAGTTGGCAGAATC
AAGCCTTTTAGAGCACAGAATTGCTACAATAAAGGAGGAACGGGAGGCCTGGGAAGAGCAGAGCCAGGAC
CTGAAGTCCCAGCTGGCGCTTTCCCAGGAAAAGGTTCAGAATTTAGAAGATATCCTGAAGAATGTAAACC
TTCAAATGGCCCAGATAGAATCAGACCTCCAAGTGACTCGACAGGAAAAGGAGGCTCTAAAGCAGGAAGT
GATGTCATTACACCTACAGCTTCAGAATGCCATCGACAAGGACTGGGTCTCGGAAACAGCTACCCATCTC
TCAGGGCTCCAGGGCCAGCAGAAAAGGCTATCCTGGAACAAACTGGATCATCTGATGAGTGAGGAACCAG
AGCTGCTTTGTCAAGAAAGCAAGAGGCTCCAGACTGTAGTTCAGAACACCCAAGCAGACCTCACACACTC
CCGGGAGAAGATCCGTCAACTGGAATCCAACCTTCTGCCCACCAAGCACCAAAAGCAACTCAACCAATCG
TGTACTGTGAAGCCCATAGAACAAGAAAAATTGGCCTTAAAGAGAGAGTGTGAACAGTCTCGGAAGGAGC
GATCTCCTACCAGCAGGAAGGTCAGTCAGATGAGTTCCCTTGAGCGAGAATTAGAAACAATCCATTTGGA
AAATGAAGGTCTGAAGAAGAAACAGATGCAGCCCCTGAGGTCCGCTGGGACGCATAGCCCATCCTCTCAC
TGGGATCTGCAGTTGCTCCAGCAGCAAGCCTGTCCGATGGTGCCCAGGGAGCAGTTTCTGCAGCTTCAAC
AGCAGCTGCTGCAGGCAGAAAAGAGAAGCCAGCACCTGCAGGAGGAGCTTGACAACAGGACCTCCGAACC
CAACACAGTGCAGGCCTTGCTACCGGAGCAGCGAGCGGTGCACGCAGATTCCTGCAGGAGGATTGGGCAC
CTCTGA


ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT
ACAAGGATGACGACGATAAGGTTTAA
Restriction Sites SgfI-MluI     
ACCN NM_001106737
ORF Size 6096 bp
Insert Size 6096
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_001106737.1, NP_001100207.1
RefSeq Size 6718
RefSeq ORF 6096
Locus ID 299117

Other Versions

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