Tenm3 (NM_001145937) Mouse Untagged Clone

CAT#: MC225392

Tenm3 (untagged) - Mouse odd Oz/ten-m homolog 3 (Drosophila) (Odz3), transcript variant 2, (10ug)


  "NM_001145937" in other vectors (2)

Reconstitution Protocol

USD 4,550.00

11 Weeks*

Size
    • 10 ug

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Specifications

Product Data
Type Mouse Untagged Clone
Tag Tag Free
Symbol Tenm3
Synonyms 2610100B16Rik; mKIAA1455; Odz1; Odz3; Ten-m3
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>MC225392 representing NM_001145937
Red=Cloning site Blue=ORF Orange=Stop codon

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGGATGTGAAGGAACGCAGGCCTTACTGCTCCTTGACCAAGAGCAGACGGGAAAAGGAAAGGCGCTATA
CAAACTCGTCCGCGGACAATGAGGAGTGTAGGGTCCCCACGCAGAAGTCCTATAGTTCCAGTGAAACCTT
GAAAGCTTTCGATCATGATTCTTCACGGCTGCTTTATGGAAACAGAGTAAAGGATTTGGTCCACAGAGAA
GCCGACGAGTATACTAGACAAGGACAGAATTTTACCCTAAGGCAGTTAGGAGTGTGTGAATCCGCAACTC
GAAGAGGAGTGGCATTCTGTGCGGAAATGGGGCTCCCTCACAGAGGTTACTCCATCAGTGCAGGGTCAGA
TGCGGATACGGAAAACGAAGCAGTGATGTCCCCTGAGCATGCCATGAGACTTTGGGGCAGGGGGGTCAAA
TCGGGCCGCAGTTCCTGCCTGTCAAGCCGGTCCAACTCCGCCCTCACCCTGACAGACACGGAGCACGAGA
ACAGGTCGGACAGTGAGAGCGAGCAACCTTCAAACAACCCAGGGCAACCCACCCTGCAGCCTTTGCCGCC
ATCCCACAAGCAGCACCCGGCGCAGCATCACCCGTCCATCACTTCCCTCAATAGAAACTCCCTGACCAAT
AGAAGGAACCAGAGTCCGGCCCCGCCGGCTGCTTTGCCCGCCGAGCTGCAAACCACACCCGAGTCCGTCC
AGCTGCAGGACAGCTGGGTCCTTGGCAGTAATGTACCACTGGAAAGCAGGCATTTCCTATTCAAAACAGG
GACAGGGACGACGCCACTGTTCAGTACGGCAACCCCGGGATACACAATGGCATCTGGCTCTGTTTATTCT
CCGCCTACCCGGCCACTTCCTAGAAACACCCTATCAAGAAGTGCTTTTAAATTCAAGAAGTCTTCAAAGT
ACTGCAGCTGGAGGTGCACCGCACTGTGTGCTGTAGGGGTCTCAGTGCTCCTGGCCATTCTCCTCTCCTA
TTTTATAGCAATGCATCTATTTGGCCTCAACTGGCACTTACAGCAGACGGAAAATGACACATTCGAGAAT
GGAAAAGTGAATTCTGACACCGTGCCAACAAACACTGTATCGTTACCTTCTGGCGACAATGGAAAATTAG
GTGGATTTACACATGAAAATAACACCATAGATTCCGGAGAACTTGATATTGGCCGGAGAGCAATTCAAGA
GGTTCCCCCCGGGATCTTCTGGAGATCGCAGCTCTTTATTGATCAGCCACAGTTTCTTAAGTTCAACATC
TCTCTTCAGAAGGATGCATTGATCGGAGTGTACGGCCGGAAGGGCTTACCGCCTTCCCATACTCAGTACG
ACTTTGTGGAACTACTGGATGGTAGCAGGTTAATTGCGAGAGAGCAGCGGAACCTGGTGGAGTCCGAAAG
AGCCGGGCGGCAGGCGAGATCTGTCAGCCTGCACGAAGCTGGCTTCATCCAGTACTTGGATTCTGGAATC
TGGCATCTGGCTTTTTATAACGACGGGAAAAACCCAGAGCAGGTCTCCTTTAACACGATCGTTATAGAGT
CTGTGGTGGAATGCCCCCGAAATTGCCATGGAAATGGAGAGTGTGTTTCTGGAACTTGCCATTGTTTCCC
CGGGTTTCTAGGTCCGGATTGTTCAAGAGCAGCCTGTCCGGTGCTCTGTAGTGGCAACGGGCAATACTCC
AAGGGCCGCTGCCTGTGCTTCAGTGGCTGGAAGGGCACCGAGTGTGACGTGCCGACGACCCAGTGCATTG
ACCCGCAGTGCGGGGGTCGTGGGATTTGCATCATGGGCTCTTGCGCTTGTAACTCGGGATACAAAGGAGA
AAACTGTGAGGAAGCGGACTGTCTAGACCCTGGATGTTCTAATCACGGGGTGTGTATCCATGGGGAATGT
CACTGCAATCCAGGCTGGGGTGGCAGCAACTGTGAAATACTGAAGACTATGTGTGCAGACCAGTGCTCAG
GCCACGGGACTTACCTTCAAGAAAGCGGCTCCTGCACTTGCGACCCAAATTGGACTGGCCCCGACTGCTC
AAATGAAATATGTTCAGTGGACTGCGGCTCACACGGCGTCTGCATGGGGGGCTCCTGTCGCTGTGAAGAA
GGCTGGACCGGCCCGGCGTGTAATCAGAGAGCTTGCCACCCTCGCTGTGCTGAGCACGGGACGTGCAAGG
ACGGCAAGTGCGAGTGCAGCCAAGGATGGAACGGAGAGCACTGCACAATTGAGGGTTGCCCCGGCTTGTG
CAACAGCAATGGGAGATGCACACTGGACCAAAACGGCTGGCACTGCGTTTGCCAGCCAGGGTGGAGAGGA
GCAGGCTGTGACGTAGCCATGGAGACCCTCTGTACAGACAGCAAAGACAACGAAGGAGACGGACTCATTG
ACTGCATGGATCCTGATTGCTGCCTCCAGAGCTCCTGCCAAAACCAGCCCTACTGTCGTGGCTTGCCTGA
TCCTCAGGATATCATTAGCCAAAGCCTTCAGACACCATCTCAGCAAGCTGCCAAGTCCTTCTATGACCGA
ATCAGTTTCCTGATTGGATCGGATAGCACCCACGTGCTCCCTGGAGAAAGTCCGTTCAATAAGAGTCTTG
CGTCCGTCATCAGAGGCCAAGTACTAACAGCTGATGGAACCCCACTTATTGGCGTCAACGTGTCGTTTTT
ACACTACTCGGAATATGGATATACCATTACCCGCCAGGATGGAATGTTTGACTTGGTGGCAAATGGTGGC
GCTTCTCTGACTTTGGTATTTGAGCGTTCCCCATTCCTCACTCAGTACCACACTGTGTGGATTCCCTGGA
ATGTCTTTTATGTGATGGATACCCTTGTCATGAAGAAAGAGGAGAACGACATTCCCAGCTGTGACCTCAG
TGGCTTTGTGAGGCCAAGTCCCATCATTGTGTCTTCACCGTTATCCACCTTCTTCAGGTCTTCCCCTGAG
GACAGCCCCATCATCCCCGAGACACAGGTCCTGCATGAAGAAACCACAATTCCAGGAACAGATTTGAAAC
TTTCCTACCTGAGTTCCAGAGCGGCAGGGTACAAGTCAGTTCTTAAGATTACCATGACCCAGGCCGTCAT
ACCGTTTAACCTCATGAAGGTCCATCTGATGGTGGCCGTGGTTGGGAGACTCTTCCAGAAGTGGTTTCCT
GCCTCGCCAAACTTGGCCTACACGTTCATCTGGGATAAGACGGACGCATATAATCAGAAAGTCTACGGCT
TGTCAGAGGCAGTTGTGTCCGTCGGATACGAGTACGAGTCGTGCTTGGACCTGACTCTCTGGGAAAAGAG
GACTGCCGTTTTGCAAGGCTATGAGTTGGATGCTTCGAACATGGGCGGCTGGACGTTGGACAAGCACCAT
GTACTGGACGTTCAGAACGGTATACTATACAAAGGAAATGGAGAAAATCAGTTCATCTCTCAGCAGCCTC
CGGTGGTCAGCAGCATCATGGGTAATGGTCGGAGGCGTAGCATCTCATGCCCAAGTTGCAATGGTCAAGC
TGACGGGAACAAACTCCTGGCACCCGTGGCGCTTGCCTGTGGGATCGACGGCAGTCTATACGTAGGGGAT
TTCAATTACGTCCGGCGGATATTCCCGTCTGGGAATGTGACAAGTGTTTTAGAACTAAGTAGCAACCCAG
CTCACAGATACTACCTGGCTACGGACCCAGTCACCGGAGATTTGTACGTCTCTGATACTAACACCCGCAG
AATCTATCGGCCGAAATCACTCACGGGAGCCAAAGACCTGACTAAAAACGCTGAAGTGGTGGCAGGGACC
GGGGAACAGTGCCTTCCCTTTGACGAGGCCAGGTGTGGGGATGGAGGCAAGGCTGTGGAAGCAACGCTCA
TGAGTCCCAAAGGAATGGCAATCGATAAGAACGGACTGATCTACTTTGTTGATGGAACCATGATCAGAAA
GGTTGATCAAAATGGAATCATATCAACTCTCCTGGGCTCCAACGACCTCACGTCAGCTCGACCTTTAACC
TGTGATACTAGCATGCATATCAGCCAGGTGCGTCTGGAATGGCCCACTGACCTCGCGATCAACCCCATGG
ATAACTCCATCTACGTCCTGGATAATAACGTAGTTTTACAGATCACTGAAAACCGTCAGGTCCGCATCGC
TGCCGGGCGGCCCATGCACTGTCAGGTCCCTGGAGTGGAATACCCGGTGGGGAAGCACGCGGTTCAGACC
ACCCTGGAGTCAGCCACGGCCATTGCTGTGTCCTACAGCGGGGTCCTTTACATCACGGAAACTGATGAGA
AGAAGATCAACCGAATAAGGCAGGTCACGACAGACGGGGAGATCTCCTTAGTGGCTGGGATACCTTCGGA
ATGTGACTGCAAGAACGACGCCAACTGTGACTGCTACCAAAGCGGAGACGGCTACGCCAAAGATGCCAAA
CTCAATGCGCCGTCCTCCCTGGCCGCCTCGCCAGATGGCACTCTGTACATTGCAGATCTGGGAAATATCA
GGATCCGGGCCGTTTCGAAGAATAAACCTTTACTGAACTCAATGAACTTTTACGAAGTTGCCTCTCCAAC
TGATCAAGAGCTCTACATCTTTGACATCAACGGTACTCACCAGTACACCGTGAGCCTGGTCACGGGTGAC
TACCTATATAATTTTAGTTACAGCAATGACAATGACGTCACCGCTGTAACTGACAGCAATGGCAACACCC
TCCGAATCCGAAGGGATCCGAATCGGATGCCGGTGCGGGTGGTGTCTCCTGATAACCAGGTGATATGGTT
GACCATAGGCACCAACGGGTGTCTGAAAAGCATGACCGCTCAGGGCCTGGAACTGGTTTTGTTTACTTAC
CATGGCAACAGTGGGCTTTTAGCCACCAAAAGTGACGAAACTGGATGGACAACATTTTTTGACTATGACA
GTGAAGGTCGCCTGACGAATGTTACCTTCCCCACTGGGGTGGTTACAAACCTGCACGGGGACATGGACAA
GGCTATCACGGTGGACATCGAGTCATCCAGCAGAGAGGAAGATGTCAGCATCACTTCGAACTTGTCCTCC
ATCGATTCCTTCTACACCATGGTCCAAGACCAGTTAAGAAACAGTTACCAGATTGGGTATGATGGCTCCC
TTAGAATCTTCTATGCCAGTGGTCTGGACTCTCACTACCAGACAGAGCCCCACGTTCTGGCTGGCACGGC
GAATCCCACAGTAGCCAAAAGAAACATGACTCTTCCCGGTGAGAACGGGCAGAATCTGGTGGAGTGGAGA
TTCCGAAAAGAACAAGCCCAGGGCAAAGTCAACGTATTCGGCCGGAAGCTCAGGGTCAATGGGCGCAACC
TACTCTCAGTGGACTTTGATCGGACCACCAAGACGGAAAAGATCTATGATGACCACCGGAAATTTCTCCT
GAGGATCGCTTACGACACGTCGGGGCACCCGACTCTCTGGCTGCCGAGTAGCAAGCTAATGGCAGTGAAC
GTCACCTACTCATCCACCGGTCAAATTGCCAGCATCCAGAGAGGGACCACGAGCGAAAAGGTGGACTATG
ACAGCCAGGGGAGGATCGTATCTCGGGTCTTTGCCGATGGGAAAACATGGAGTTACACGTACTTGGAAAA
GTCCATGGTTCTTCTGCTCCATAGCCAGCGGCAGTACATCTTCGAATACGACATGTGGGACCGCCTGTCC
GCCATCACCATGCCCAGTGTGGCTCGCCACACCATGCAGACCATCCGGTCCATTGGCTACTACCGCAACA
TCTACAATCCCCCAGAAAGCAATGCCTCTATCATCACCGACTACAACGAGGAAGGGCTGCTTCTGCAAAC
AGCTTTCCTGGGAACGAGTCGGAGGGTCTTATTCAAGTATAGAAGGCAGACCAGGCTATCAGAAATTTTA
TACGACAGCACAAGAGTCAGTTTTACCTACGACGAAACAGCGGGAGTCCTGAAAACAGTAAACCTTCAGA
GTGATGGTTTTATTTGCACCATTAGATACAGGCAAATTGGTCCCCTGATTGACAGACAGATTTTCCGCTT
CAGCGAGGATGGAATGGTAAATGCGAGATTTGACTATAGCTACGACAACAGCTTTCGAGTGACCAGCATG
CAGGGTGTCATCAATGAAACACCACTGCCCATTGATCTATACCAGTTTGATGACATCTCTGGCAAAGTCG
AGCAGTTTGGAAAATTCGGAGTGATATACTACGACATCAACCAAATCATTTCCACGGCCGTGATGACTTA
TACAAAGCACTTTGATGCTCATGGGCGCATCAAGGAGATCCAATATGAGATATTTAGGTCACTCATGTAC
TGGATTACAATTCAATATGATAATATGGGCCGGGTAACCAAGAGAGAGATTAAAATTGGGCCTTTTGCCA
ACACTACCAAATACGCGTACGAGTACGACGTCGATGGACAGCTCCAAACAGTTTACCTAAACGAAAAGAT
CATGTGGCGGTACAACTACGACCTAAATGGAAACCTCCACTTGCTCAACCCCAGCAGCAGCGCCCGCCTG
ACCCCTCTGCGCTATGACCTGCGCGACAGAATCACCCGCCTGGGCGATGTTCAGTACCGGCTGGATGAAG
ATGGTTTCCTGCGTCAGAGGGGCACTGAAATTTTTGAATACAGCTCCAAAGGGCTTCTGACTCGAGTCTA
CAGTAAAGGCAGTGGCTGGACAGTGATCTATCGGTACGACGGCCTGGGAAGACGTGTTTCTAGCAAAACC
AGCCTGGGACAGCACCTTCAGTTTTTCTACGCCGACCTGACATACCCCACGAGAATTACTCACGTCTACA
ACCATTCCAGTTCAGAAATCACCTCCCTGTACTATGACCTCCAAGGACATCTCTTCGCCATGGAGATCAG
CAGTGGGGATGAGTTCTACATCGCCTCGGACAACACGGGGACACCGCTGGCTGTTTTCAGCAGCAACGGG
CTCATGCTGAAACAGATCCAGTACACTGCCTATGGTGAGATCTACTTTGACTCCAACGTCGACTTTCAGC
TGGTAATTGGATTCCACGGGGGCTTGTATGACCCGCTCACCAAACTAATCCACTTTGGAGAAAGAGATTA
TGACATTTTGGCGGGAAGATGGACCACACCGGACATTGAAATCTGGAAAAGGATCGGAAAGGACCCTGCT
CCTTTTAACCTGTATATGTTTCGGAATAACAACCCCGCGAGCAAAATCCATGATGTGAAAGATTACATCA
CGGATGTTAACAGCTGGCTGGTGACGTTTGGCTTCCATCTGCACAATGCTATTCCTGGATTCCCTGTTCC
CAAATTTGATTTAACTGAGCCTTCCTATGAGCTTGTGAAGAGTCAACAGTGGGAAGATGTGCCGCCCATC
TTTGGAGTTCAGCAGCAAGTGGCAAGGCAAGCCAAGGCCTTCTTGTCCCTGGGGAAGATGGCCGAGGTGC
AGGTGAGCCGACGCAAAGCTGGCGCCGAGCAGTCGTGGCTGTGGTTCGCCACGGTCAAGTCGCTCATCGG
CAAGGGCGTCATGCTGGCCGTGAGCCAAGGCCGCGTGCAGACCAACGTGCTCAACATCGCCAACGAGGAC
TGCATCAAGGTGGCGGCGGTGCTCAACAACGCCTTCTACCTGGAGAACCTGCACTTCACCATCGAGGGCA
AGGACACACACTACTTCATCAAGACCACCACACCCGAGAGCGACCTGGGCACACTGCGGCTGACGAGCGG
TCGCAAGGCCCTGGAGAACGGGATCAACGTGACCGTGTCTCAGTCCACCACGGTGGTGAACGGCAGGACT
CGCAGGTTCGCCGACGTGGAGATGCAGTTCGGTGCCCTGGCACTGCATGTGCGCTATGGCATGACGCTGG
ACGAGGAGAAGGCGCGCATTCTGGAGCAGGCGCGCCAGCGCGCGCTCGCCCGGGCGTGGGCACGGGAGCA
GCAGCGCGTGCGCGACGGCGAGGAGGGTGCGCGCCTCTGGACGGAGGGTGAGAAACGGCAGCTGCTGAGC
GCTGGCAAGGTGCAGGGCTACGATGGGTACTACGTACTGTCGGTGGAGCAGTACCCCGAGCTGGCTGACA
GTGCCAACAACATCCAGTTCTTGCGACAAAGTGAGATCGGCAAGAGGTAA


AGCGGACCGACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCC
TGGATTACAAGGATGACGACGATAAGGTTTAA
Restriction Sites SgfI-RsrII     
ACCN NM_001145937
ORF Size 8100 bp
Insert Size 8100
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_001145937.1, NP_001139409.1
RefSeq Size 10958
RefSeq ORF 8100
Locus ID 23965

Other Versions

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