Myh10 (NM_175260) Mouse Untagged Clone
CAT#: MC225095
Myh10 (untagged) - Mouse myosin, heavy polypeptide 10, non-muscle (Myh10), (10ug)
"NM_175260" in other vectors (2)
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Specifications
Product Data | |
Type | Mouse Untagged Clone |
Tag | Tag Free |
Symbol | Myh10 |
Synonyms | 5730504C04Rik; 9330167F11Rik; Fltn; mKIAA3005; Myhn-2; Myhn2; NMHC-B; NMHC II-B; NMHCII-B; NMMHC-B; NMMHC-IIB; NMMHC II-b; SMemb |
Vector | pCMV6-Entry |
E. coli Selection | Kanamycin (25 ug/mL) |
Mammalian Cell Selection | Neomycin |
Sequence Data |
>MC225095 representing NM_175260
Red=Cloning site Blue=ORF Orange=Stop codon TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC GCCGCGATCGCC ATGGCCCAGAGAACTGGACTGGAGGATCCCGAGAGGTATCTCTTTGTGGACAGGGCTGTCATCTACAACC CTGCCACTCAAGCTGACTGGACAGCTAAAAAGCTGGTGTGGATTCCATCGGAACGCCATGGTTTTGAGGC AGCTAGTATTAAAGAAGAGCGGGGCGATGAGGTTATGGTGGAGCTGGCAGAGAATGGGAAGAAAGCAATG GTCAACAAAGATGACATTCAGAAGATGAACCCACCAAAGTTCTCCAAGGTGGAGGATATGGCAGAGCTGA CATGCTTGAACGAAGCCTCTGTCTTACATAATTTGAAGGACCGCTACTATTCAGGACTTATCTATACTTA CTCTGGACTCTTCTGTGTGGTGATAAATCCTTACAAGAACCTTCCAATTTACTCTGAGAATATTATTGAA ATGTATAGAGGGAAGAAACGCCATGAGATGCCACCACACATCTACGCCATATCAGAGTCTGCTTACAGAT GCATGCTTCAAGATCGTGAGGACCAGTCAATTCTATGCACGGGTGAATCGGGTGCCGGGAAGACAGAAAA TACCAAGAAAGTCATTCAGTACCTTGCCCACGTTGCTTCTTCTCACAAAGGAAGAAAGGACCATAATATT CCTGGGGAACTTGAACGGCAGCTTTTACAAGCAAATCCAATTCTGGAATCCTTTGGAAATGCGAAGACTG TGAAAAATGATAACTCATCTCGCTTTGGCAAGTTTATCCGGATCAACTTTGATGTAACTGGCTATATTGT TGGGGCCAACATTGAAACATACCTTCTGGAAAAGTCTCGTGCTGTTCGTCAAGCTAAAGATGAGCGTACA TTTCATATCTTTTATCAGTTGCTCTCTGGAGCAGGGGAACACCTGAAATCCGACTTACTCCTGGAAGGTT TCAACAACTACAGATTCCTCTCCAATGGCTATATTCCTATTCCTGGACAGCAAGACAAGGATAACTTCCA GGAGACCATGGAAGCCATGCACATCATGGGCTTCTCTCACGAAGAGATCCTCTCAATGCTTAAAGTCGTA TCTTCAGTGCTGCAGTTTGGAAACATCTCTTTCAAAAAGGAGAGAAACACTGACCAAGCCTCCATGCCGG AGAACACAGTCGCACAGAAGCTCTGCCACCTGCTCGGGATGAATGTGATGGAGTTCACTCGGGCTATCCT CACGCCCAGGATCAAGGTTGGCCGGGATTACGTACAGAAAGCCCAGACCAAAGAGCAGGCTGATTTTGCA GTGGAAGCATTGGCAAAAGCTACCTATGAGCGGTTGTTTCGCTGGCTCGTTCACCGCATCAATAAAGCGC TGGATAGGACCAAACGCCAGGGAGCTTCCTTCATTGGGATCCTGGATATTGCTGGTTTTGAAATTTTTGA GCTGAACTCCTTCGAGCAGCTGTGCATCAACTACACCAACGAGAAGCTGCAGCAGCTGTTCAACCACACC ATGTTCATCCTGGAGCAGGAGGAGTACCAGCGAGAGGGCATCGAGTGGAACTTTATCGACTTCGGCCTGG ACCTGCAGCCCTGCATCGACCTGATAGAGAGACCTGCCAATCCCCCTGGCGTGCTGGCCCTCCTGGATGA AGAATGCTGGTTCCCCAAAGCTACAGATAAAACATTTGTTGAAAAGCTGGTTCAGGAGCAAGGTTCCCAC TCCAAGTTTCAGAAGCCGCGCCAACTGAAAGACAAAGCCGACTTCTGCATCATCCACTACGCGGGGAAGG TGGACTATAAGGCAGATGAGTGGCTGATGAAGAACATGGACCCGCTGAATGACAACGTGGCCACCCTCCT GCACCAGTCCTCGGACAGATTTGTGGCTGAGCTTTGGAAGGACGTGGACCGAATTGTAGGTCTGGATCAA GTCACTGGGATGACTGAGACCGCGTTTGGCTCTGCATACAAAACCAAGAAGGGCATGTTCCGAACCGTCG GGCAGCTCTACAAGGAGTCTCTCACCAAGCTGATGGCAACTCTCCGCAACACCAACCCCAACTTCGTCCG CTGCATCATTCCAAATCACGAGAAGCGGGCTGGGAAACTGGACCCGCACCTCGTGCTCGATCAGCTTCGC TGTAACGGCGTCCTGGAAGGGATCCGGATCTGTCGCCAGGGGTTCCCCAACCGGATAGTTTTCCAGGAAT TCAGACAGAGATATGAGATCCTAACTCCCAATGCTATTCCTAAAGGCTTCATGGATGGCAAACAGGCGTG TGAGCGAATGATCCGAGCTTTAGAACTGGACCCAAACCTGTATAGAATTGGACAGAGCAAGATATTTTTC CGAGCTGGAGTTTTGGCGCACTTAGAAGAAGAAAGAGATTTAAAAATCACTGATATCATCATCTTTTTCC AAGCTGTATGCAGAGGCTACCTCGCCCGAAAGGCCTTTGCCAAGAAACAGCAACAACTAAGTGCCTTAAA GGTCTTGCAGCGGAACTGTGCGGCGTACCTGAAGCTGCGACACTGGCAGTGGTGGCGTGTCTTCACGAAG GTGAAGCCTCTCCTCCAAGTGACCCGCCAGGAGGAAGAACTCCAGGCAAAAGATGAGGAGCTGCTGAAGG TGAAAGAGAAGCAGACAAAAGTGGAAGGGGAGCTTGAGGAGATGGAGCGGAAGCACCAGCAGCTGCTGGA AGAGAAGAATATCCTGGCAGAACAACTGCAAGCCGAGACCGAGCTCTTCGCTGAAGCAGAAGAGATGAGA GCAAGGCTTGCTGCCAAAAAGCAGGAACTGGAGGAGATTCTCCATGACCTCGAGTCCAGGGTGGAGGAGG AGGAAGAGCGGAACCAGATCCTACAGAATGAGAAGAAGAAGATGCAGGCGCACATTCAGGACCTAGAAGA ACAACTGGATGAGGAGGAGGGGGCCCGGCAAAAGCTGCAGCTGGAGAAGGTGACAGCAGAGGCTAAAATC AAGAAGATGGAAGAGGAGGTTCTGCTTCTCGAAGACCAGAATTCCAAATTTATCAAAGAAAAGAAACTCA TGGAAGACCGAATTGCTGAGTGTTCCTCTCAGCTGGCTGAAGAGGAAGAAAAGGCAAAAAACTTGGCCAA AATCAGGAATAAGCAAGAAGTGATGATCTCGGACTTAGAAGAACGCTTGAAGAAGGAGGAGAAAACTCGA CAGGAACTGGAAAAGGCCAAACGGAAGCTGGATGGGGAAACAACCGATCTGCAGGACCAGATCGCTGAGC TGCAGGCACAGGTCGATGAGCTCAAAGTCCAGTTGACCAAGAAGGAGGAGGAGCTTCAGGGGGCGCTGGC CAGAGGAGATGATGAGACACTGCACAAGAATAATGCACTTAAAGTTGCACGGGAGCTGCAGGCCCAAATC GCAGAGCTCCAGGAAGACTTTGAGTCTGAAAAGGCTTCAAGGAACAAGGCTGAGAAACAAAAACGGGACT TGAGTGAGGAGCTGGAAGCTCTGAAGACAGAGCTGGAGGACACCCTAGACACCACAGCAGCTCAGCAGGA ACTCCGCACAAAACGTGAGCAGGAAGTGGCAGAGCTGAAGAAGGCTCTTGAGGATGAAACTAAGAACCAC GAAGCTCAGATCCAGGACATGAGACAGAGGCATGCCACAGCGCTGGAGGAGCTTTCCGAGCAGCTGGAGC AAGCGAAAAGGTTCAAAGCCAACCTGGAGAAGAACAAACAGGGCCTGGAGACAGACAACAAGGAGCTGGC GTGTGAGGTGAAGGTGCTGCAGCAGGTGAAGGCGGAGTCAGAGCACAAGAGGAAGAAGCTGGATGCCCAG GTCCAGGAGCTCCATGCCAAGGTGTCAGAGGGTGACAGGCTCAGGGTAGAGCTGGCCGAGAAAGCAAACA AGCTACAGAATGAGCTGGATAATGTGTCAACCCTGCTGGAAGAAGCTGAGAAGAAAGGTATTAAGTTTGC GAAGGATGCAGCTGGTCTCGAGTCTCAACTACAGGACACACAGGAGCTCCTTCAGGAAGAGACACGGCAG AAACTGAACCTGAGCAGTCGGATCCGGCAGCTGGAGGAGGAGAAGAACAGCCTTCAGGAGCAGCAGGAGG AGGAGGAGGAGGCCAGGAAGAACCTGGAGAAGCAGGTGTTGGCTCTGCAGTCCCAGCTGGCTGACACCAA GAAGAAAGTGGACGATGACCTGGGGACAATCGAGAGTTTGGAGGAAGCCAAAAAGAAACTGCTCAAGGAT GTGGAGGCGCTGAGCCAGCGGCTGGAGGAGAAGGTCCTGGCGTATGACAAGCTGGAGAAGACCAAGAACC GGCTGCAACAAGAACTGGATGACCTGACGGTGGACCTGGACCACCAGCGCCAGATCGTCTCCAACTTGGA GAAGAAACAGAAGAAGTTCGACCAGCTGTTGGCAGAAGAAAAGGGCATCTCTGCTCGCTATGCAGAAGAG CGGGACCGGGCTGAAGCTGAGGCCAGAGAGAAAGAAACCAAAGCGCTCTCCCTGGCGCGGGCCCTTGAGG AGGCCTTGGAGGCGAAGGAGGAATTCGAGAGGCAGAACAAGCAGCTTCGAGCAGACATGGAAGACCTGAT GAGCTCTAAAGACGATGTGGGGAAGAACGTCCACGAGCTTGAGAAATCCAAGCGAGCCTTGGAGCAGCAG GTGGAGGAGATGCGGACCCAGCTGGAGGAGCTGGAGGACGAGCTGCAGGCCACTGAGGATGCCAAGCTCC GCCTGGAAGTCAACATGCAGGCCATGAAGGCCCAGTTTGAGAGGGACCTGCAAACCCGAGATGAGCAGAA TGAAGAAAAGAAGCGGCTGCTGCTTAAGCAGGTGCGGGAGCTCGAGGCAGAGCTGGAGGATGAGCGGAAA CAGCGGGCACTGGCTGTGGCGTCAAAGAAGAAGATGGAGATAGACCTGAAGGACCTGGAGGCTCAGATCG AGGCTGCGAACAAAGCCCGGGATGAAGTGATCAAGCAGCTTCGCAAACTTCAGGCACAGATGAAGGATTA CCAGCGTGAACTAGAAGAGGCTCGAGCATCTAGAGATGAGATTTTTGCTCAATCCAAAGAAAGTGAAAAG AAACTGAAGAGTCTAGAAGCAGAAATTCTTCAGCTGCAAGAGGAGCTGGCCTCATCCGAGCGAGCCCGCC GACACGCAGAGCAGGAGCGAGACGAGCTGGCTGATGAGATCGCCAACAGCGCCTCTGGAAAGTCTGCGCT GTTGGATGAGAAGCGGCGCCTGGAAGCGCGGATCGCACAGCTGGAAGAGGAGCTGGAGGAGGAGCAGAGC AACATGGAGCTGCTCAATGACCGCTTCCGCAAGACCACGCTGCAGGTGGACACACTGAACACAGAGCTGG CAGCAGAGCGCAGCGCTGCCCAGAAGAGTGACAATGCCCGCCAGCAGCTGGAGCGACAAAACAAGGAGCT GAAGGCCAAGCTGCAGGAGCTGGAGGGGGCAGTCAAGTCCAAGTTCAAGGCTACCATCTCAGCCCTGGAA GCCAAGATTGGGCAGCTGGAGGAGCAGCTTGAGCAGGAAGCCAAGGAGCGAGCAGCTGCCAACAAACTAG TCCGTCGAACAGAGAAGAAACTGAAAGAAATCTTCATGCAGGTTGAAGACGAGCGTCGGCATGCGGATCA GTATAAGGAGCAGATGGAGAAGGCTAATGCCAGGATGAAGCAGCTTAAACGACAGTTGGAAGAGGCTGAG GAAGAGGCCACACGTGCCAACGCATCTCGGCGTAAACTCCAAAGGGAGCTGGACGACGCCACTGAGGCCA ATGAAGGCCTGAGCCGCGAGGTCAGCACTCTCAAGAACCGGCTCAGGCGGGGCGGTCCAATCAGCTTTTC TTCAAGCCGATCTGGCCGGCGCCAGCTGCACATTGAGGGGGCATCGCTAGAGCTGTCAGATGACGACACA GAAAGTAAGACCAGTGATGTCAATGACACACAGCCACCCCAATCAGAATAG ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT ACAAGGATGACGACGATAAGGTTTAA |
Restriction Sites | SgfI-MluI |
ACCN | NM_175260 |
ORF Size | 5931 bp |
Insert Size | 5931 |
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_175260.2, NP_780469.1 |
RefSeq Size | 7783 |
RefSeq ORF | 5931 |
Locus ID | 77579 |
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