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)
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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 |
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