Tnc (NM_011607) Mouse Untagged Clone

CAT#: MC225127

Tnc (untagged) - Mouse tenascin C (Tnc), (10ug)


  "NM_011607" in other vectors (2)

Reconstitution Protocol

USD 3,410.00

10 Weeks*

Size
    • 10 ug

Product Images

Specifications

Product Data
Type Mouse Untagged Clone
Tag Tag Free
Symbol Tnc
Synonyms AI528729; C130033P17Rik; cytotactin; Hxb; Ten; tenascin-C; TN; TN-C
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>MC225127 representing NM_011607
Red=Cloning site Blue=ORF Orange=Stop codon

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGGGGGCCGTGACCTGGCTACTGCCAGGCATCTTTCTAGCTTTGTTTGCCCTCACTCCCGAAGGTGGGG
TCCTCAAGAAAATCATCAGGCACAAGCGAGAGAGTGGGCTAAACATGACCCTGCCAGAAGAGAATCAGCC
AGTGGTGTTCAACCATATCTACAACATCAAGTTGCCCATGGGTTCCCAATGCTCAGTGGATCTGGAGTCA
GCGAGTGGGGAGAAAGACCTGACCCCCACGCCAGAGTCCAGTGGGAGCTTCCAGGAACATACAGTGGATG
GGGAAAACCAAATTGTATTCACACACCGCATCAACATCCCCCGCCGGGCCTGTGGCTGTGCTGCAGCTCC
AGATGTGAAGGAGCTCCTGAGCAGGCTGGAGGAGCTGGAGTTGCTGGTATCGTCTCTAAGGGAGCAGTGC
ACCATGGGTACAGGCTGTTGCCTCCAACCTGCAGAAGGTCGTCTGGACACCAGGCCCTTCTGCAGCGGAC
GGGGCAACTTCAGTGCAGAAGGCTGCGGCTGTGTCTGTGAACCAGGCTGGAAAGGCCCCAACTGCTCTGA
GCCTGACTGCCCTGGGAACTGTAATCTCAGAGGCCAGTGCCTTGACGGCCAGTGTATCTGTGACGAGGGT
TTCACTGGGGAAGACTGCAGCCAGCTGGCCTGTCCGAACGACTGCAATGACCAGGGCAGGTGTGTGAACG
GGGTCTGTGTGTGCTTCGAAGGCTATGCCGGCCCTGACTGTGGCCTGGAAGTCTGCCCAGTGCCCTGCAG
CGAGGAACACGGGATGTGTGTGGATGGCAGGTGTGTGTGCAAAGATGGCTTTGCGGGTGAGGACTGCAAC
GAGCCCCTTTGCCTCAACAACTGCTACAATCGTGGGCGGTGTGTGGAGAACGAGTGTGTCTGCGACGAGG
GCTTCACTGGCGAGGACTGCAGTGAGCTCATTTGCCCCAACGACTGCTTCGACCGCGGTCGCTGCATCAA
TGGCACCTGCTACTGTGAAGAAGGTTTCACGGGCGAAGACTGCGGTGAGCTCACCTGCCCCAACGACTGT
CAGGGCCGTGGCCAGTGTGAGGAGGGACAGTGTGTTTGCAACGAGGGCTTTGCAGGAGCAGACTGCAGTG
AAAAGCGGTGTCCCGCCGATTGTCACCACCGTGGCCGCTGCCTCAACGGGCAGTGTGAGTGTGACGATGG
GTTCACAGGGGCTGACTGTGGGGATCTCCAGTGTCCCAATGGCTGCAGTGGGCATGGCCGTTGTGTCAAC
GGGCAGTGCGTGTGTGACGAGGGCTATACCGGAGAAGACTGTAGCCAGCGGCGATGCCCCAATGACTGTC
ACAACCGGGGTCTCTGCGTACAGGGCAAGTGCATATGTGAACAAGGCTTCAAGGGCTTTGACTGTAGTGA
GATGAGCTGTCCCAATGACTGCCACCAACATGGCCGCTGTGTGAATGGCATGTGTATCTGTGATGACGAC
TACACTGGGGAAGACTGCAGAGACCGGCGCTGTCCCCGGGACTGTAGCCAGCGGGGGCGCTGTGTAGACG
GACAGTGCATCTGTGAGGATGGCTTCACTGGCCCTGACTGTGCTGAGCTTTCCTGCCCCAGTGACTGCCA
CGGCCATGGCCGCTGTGTGAATGGCCAATGCATCTGCCACGAGGGCTTCACTGGCAAAGACTGCAAAGAG
CAAAGGTGCCCCAGTGATTGCCATGGCCAAGGCCGCTGTGAGGACGGCCAGTGTATCTGCCATGAGGGCT
TTACGGGCCTGGACTGTGGGCAGCGCTCCTGTCCCAATGACTGCAGCAACCAAGGACAATGTGTGTCAGG
CCGCTGCATCTGCAATGAAGGTTACACAGGGATAGACTGCTCTGAGGTGTCCCCTCCCAAAGACCTTATT
GTGACAGAAGTAACAGAGGAGACTGTAAATCTGGCATGGGACAATGAGATGCGGGTCACTGAGTACCTCA
TTATGTACACACCCACCCATGCTGATGGCCTAGAGATGCAGTTCCGTGTGCCTGGGGACCAGACATCCAC
CACCATTCGGGAGCTGGAACCAGGGGTGGAGTACTTCATTCGTGTGTTCGCCATCTTGGAAAACAAGAGG
AGCATCCCTGTCAGTGCCAGGGTTGCCACCTATTTGCCTGCACCTGAAGGTCTAAAATTCAAGTCTATCA
AGGAGACATCTGTGGAAGTAGAGTGGGATCCTCTAGACATTGCTTTCGAAACATGGGAGATCATTTTCCG
AAATATGAACAAAGAAGATGAGGGAGAGATCACAAAAAGTCTGAGGAGACCAGAGACCTCCTACCGCCAA
ACTGGCCTTGCTCCTGGCCAAGAGTATGAAATATCTCTGCACATTGTGAAAAACAACACCCGAGGCCCCG
GCTTGAAGAAAGTAACCACAACCCGCCTGGATGCCCCCAGCCATATTGAGGTGAAAGATGTCACAGACAC
CACAGCACTGATCACCTGGTTCAAGCCCTTGGCTGAAATTGATAGCATTGAGCTCTCCTATGGCATCAAG
GATGTACCTGGAGACCGTACCACCATCGACCTCACACACGAAGACAACCAGTACTCCATCGGGAACCTGA
GACCTGACACGGAGTATGAGGTGTCCCTCATCTCCCGCAGAGTGGACATGGCAAGCAACCCTGCCAAAGA
GACCTTCATCACAGGCCTGGATGCTCCCAGGAATCTCCGCCGTGTCTCACAGACAGACAACAGCATCACC
TTGGAGTGGAGGAACGTCAAGGCAGACATCGACAGTTACAGAATTAAGTATGCCCCTATCTCTGGAGGTG
ACCATGCTGAGATAGATGTTCCAAAGAGCCAGCAAGCCACAACCAAAACCACACTCACAGGTCTAAGGCC
CGGAACTGAATATGGGATTGGTGTTTCTGCTGTCAAGGGAGACAAGGAGAGTGATCCAGCAACCATCAAT
GCGGCCACAGAAATTGATGCACCCAAGGACTTACGGGTGTCTGAAACCACACAAGACAGTCTGACGTTTT
TCTGGACGACACCCCTGGCCAAGTTTGATCGTTACCGCCTCAACTACAGCCTCCCCACAGGCCAGTCGAT
GGAAGTCCAGCTGCCAAAGGATGCCACCTCCCATGTCCTGACAGACCTGGAGCCAGGGCAAGAATACACT
GTTCTCCTCATTGCTGAGAAGGGCAGACACAAGAGCAAGCCTGCACGTGTGAAGGCATCCACGGAAGAAG
TGCCTTCCCTGGAAAATCTCACTGTGACTGAGGCCGGCTGGGATGGCCTCAGACTCAACTGGACTGCAGA
TGACCTGGCCTATGAGTACTTTGTCATTCAGGTACAGGAAGCCAACAATGTGGAGACTGCTCACAACTTC
ACAGTACCTGGTAACCTCCGGGCTGCAGACATCCCAGGCCTCAAGGTTGCCACTTCTTATAGAGTCTCCA
TCTATGGGGTAGCCCGGGGCTATAGAACACCAGTGCTCTCTGCCGAGACCTCCACAGGGACAACTCCCAA
TCTGGGAGAGGTCACTGTGGCCGAGGTGGGCTGGGATGCCCTCACGCTCAACTGGACTGCTCCAGAAGGA
GCCTATAAGAACTTTTTCATTCAGGTGCTAGAGGCTGACACGACCCAGACTGTCCAGAACCTCACAGTCC
CAGGAGGACTGAGGTCAGTGGACCTGCCTGGGCTCAAAGCAGCCACCCGCTACTACATCACCCTTCGAGG
GGTCACCCAGGACTTCGGCACGGCCCCTCTCTCTGTTGAGGTCTTGACAGAGGATCTCCCTCAGCTGGGA
GGCTTGTCTGTGACTGAGGTCAGCTGGGACGGCCTCACACTCAACTGGACCACAGATGACCTGGCCTATA
AGCACTTTGTCGTTCAGGTGCAGGAGGCCAACAATGTGGAGGCCGCTCAGAACCTCACGGTACCCGGCAG
CCTCAGAGCTGTGGACATCCCAGGCCTCAAGGCCGACACCCCTTATAGAGTCTCCATCTACGGGGTCATC
CAGGGCTATAGAACACCGATGCTCTCTACTGACGTCTCCACAGCCAGAGAACCTGAAATTGGAAACTTAA
ATGTTTCTGATGTAACTCCTAAGAGCTTCAATCTCTCCTGGACAGCTACCGACGGGATCTTCGACATGTT
TACTATTGAAATTATTGATTCTAATAGGTTGCTGCAAACAGCAGAACATAATATATCTGGTGCTGAACGG
ACTGCCCACATCTCAGGGCTTCCACCTAGTACTGATTTCATTGTCTACCTCTCTGGAATTGCTCCCAGCA
TCCGTACCAAAACCATCAGTACCACGGCTACCACAGAAGCTGAACCGGAAGTTGACAACCTTCTAGTTTC
AGATGCCACTCCAGACGGTTTCCGTCTGTCCTGGACTGCTGATGAAGGGATATTCGACAGTTTTGTTATC
AGGATCAGAGATACCAAAAAGCAATCTGAGCCACAAGAAATATCCCTCCCTTCCCCCGAACGTACCAGGG
ACATAACAGGTCTCAGAGAGGCCACTGAGTACGAAATTGAACTCTATGGAATAAGCCGCGGAAGGCGATC
CCAGCCAGTCAGTGCCATAGCAACAACAGCCATGGGTTCTCCGAAGGAAATCATGTTCTCAGACATCACT
GAAAATGCAGCCACAGTCAGCTGGAGGGCACCTACTGCTCAGGTGGAGAGTTTCCGGATCACTTATGTAC
CTATGACAGGAGGTGCCCCGTCCATGGTGACTGTGGATGGAACAGATACTGAGACCAGGCTGGTGAAGCT
TACCCCGGGTGTAGAGTACCGCGTCAGTGTGATTGCCATGAAGGGATTCGAAGAAAGCGATCCAGTCTCG
GGGACTCTAATCACAGCTCTGGATGGTCCATCTGGTCTTCTGATAGCCAACATCACAGACTCAGAAGCCT
TGGCCATGTGGCAGCCAGCCATTGCCACTGTGGACAGTTATGTCATCTCCTACACAGGGGAGAGAGTGCC
AGAAGTTACACGCACAGTGTCTGGAAATACAGTGGAGTACGAGCTGCATGACCTGGAGCCTGCCACAGAG
TACATCCTGAGTATCTTTGCAGAGAAAGGACAGCAGAAGAGCTCTACCATCGCCACCAAGTTTACCACAG
ACCTCGATTCCCCAAGAGAATTTACAGCTACAGAGGTTCAGTCAGAAACTGCCCTCCTTACCTGGAGACC
TCCCCGAGCATCGGTCACTGGATACCTCCTGGTCTATGAATCTGTGGATGGTACAGTCAAGGAAGTCATT
GTGGGGCCTGACACCACCTCCTACAGCCTGGCAGACCTGAGCCCATCCACCCACTACTCAGCAAGGATCC
AGGCATTGAGTGGGTCCCTGAGGAGCAAGCTGATCCAAACCATCTTCACAACAATTGGACTCCTGTACCC
ATTCCCCAGGGACTGCTCTCAAGCAATGTTGAATGGTGATACTACCTCTGGCCTCTACACCATCTATATA
AATGGTGACAAGACTCAAGCACTGGAAGTCTACTGTGATATGACCTCTGATGGAGGTGGATGGATTGTTT
TCCTGAGACGCAAAAATGGACGTGAGGACTTCTATCGCAACTGGAAGGCCTATGCTGCTGGGTTTGGAGA
CCGCAGAGAAGAATTTTGGCTTGGACTGGATAACCTGAGCAAAATCACAGCCCAAGGGCAGTATGAGCTC
CGGGTGGACCTACAAGACCATGGGGAGTCTGCCTATGCTGTGTACGACAGATTCAGTGTTGGAGATGCCA
AGAGTCGCTACAAGCTGAAGGTAGAAGGATACAGTGGAACAGCAGGTGACTCCATGAACTATCACAATGG
TAGATCCTTCTCCACCTATGACAAGGACACAGACTCAGCCATCACCAACTGTGCCCTGTCCTACAAAGGA
GCTTTCTGGTATAAGAACTGTCATCGTGTCAACCTGATGGGCAGATATGGGGACAATAACCACAGTCAGG
GCGTTAACTGGTTCCATTGGAAGGGCCATGAGTACTCAATCCAGTTTGCTGAGATGAAACTGAGACCCAG
CAACTTCCGAAATCTGGAAGGCAGGCGTAAGCGGGCATAA


ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT
ACAAGGATGACGACGATAAGGTTTAA
Restriction Sites SgfI-MluI     
ACCN NM_011607
ORF Size 6060 bp
Insert Size 6060
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_011607.3, NP_035737.2
RefSeq Size 7100
RefSeq ORF 6060
Locus ID 21923

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