Nsd1 (NM_008739) Mouse Untagged Clone
CAT#: MC225389
Nsd1 (untagged) - Mouse nuclear receptor-binding SET-domain protein 1 (Nsd1), (10ug)
"NM_008739" in other vectors (2)
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Specifications
Product Data | |
Type | Mouse Untagged Clone |
Tag | Tag Free |
Symbol | Nsd1 |
Synonyms | AI528500; KMT3B |
Vector | pCMV6-Entry |
E. coli Selection | Kanamycin (25 ug/mL) |
Mammalian Cell Selection | Neomycin |
Sequence Data |
>MC225389 representing NM_008739
Red=Cloning site Blue=ORF Orange=Stop codon TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC GCCGCGATCGCC ATGGATCGGACTTGTGAATTATCTAGAAGAAATTGTCTGCTGTCCTTTTCTAATCCGGTGAATTTAGATG CCTCCGAAGACAAGGACAGCCCTTTCGGTAATGGTCAATCCAATTTTTCTGAGCCACTTAATGGGTGTAC TATGCAGTTACCGACTGCTGCCAGTGGAACATCCCAAAATGCTTATGGACAAGATTCTCCATCTTGTTAC ATTCCACTGCGGAGACTACAGGATTTGGCCTCCATGATCAATGTAGAATATTTAAGTGGGTCTGCTGATG GATCAGAATCCTTTCAAGACCCTGCAAAAAGTGATTCAAGAGCTCAGTCGCCAATTGTTTGCACTTCCTT GAGTCCTGGTGGTCCAACAGCACTTGCTATGAAACAGGAGCCCACTTGTAATAACTCCCCCGAACTCCAG TTAAGAGTAACAAAGACGACCAAGAATGGCTTTCTGCACTTTGAGAATTTTACTGGTGTGGACGATGCAG ATGTAGATTCTGAAATGGACCCAGAACAGCCAGTCACAGAGGATGAGAGTATAGAGGAGATCTTTGAGGA GACTCAGACCAATGCCACCTGCAATTATGAGCCTAAATCAGAGAATGGTGTAGAAGTGGCCATGGGAAGT GAACAAGACAGCATGCCAGAGAGTAGACATGGTGCAGTGGAACGGCCATTCTTGCCGTTAGCTCCTCAAA CTGAAAAACAGAAAAATAAACAAAGAAGTGAAGTGGACGGAAGCAATGAAAAGACAGCCCTCCTCCCAGC CCCCACCTCACTAGGAGACACGAACGTTACCGTAGAAGAGCAATTTAACTCAATAAATTTATCTTTTCAG GATGATCCAGACTCCAGTCCCAGTCCATTAGGAAACATGCTAGAAATACCTGGAACTTCATCACCATCCA CTTCACAGGAATTGCCATTTTGTCAACCGAAGAAAAAGTCTACACCACTGAAATATGAAGTTGGAGATCT TATTTGGGCAAAATTCAAGAGACGCCCTTGGTGGCCCTGCAGGATCTGTTCTGATCCATTGATTAATACA CACTCAAAAATGAAAGTTGCCAATAGGAGGCCATATCGCGAATACTACGTAGAGGCTTTTGGAGACCCTT CTGAAAAAGCCTGGGTGGCTGGAAAAGCAATCGTCATGTTTGAAGGCAGACATCAATTTGAAGAACTACC TGTCCTTAGGAAAAGAGGGAAACAGAAAGAAAAAGGATATAGGCATAAGGTTCCTCAGAAGATTTTGAGT AAATGGGAAGCCAGCGTTGGTCTTGCCGAGCAATATGATGTTCCCAAAGGCTCTAAGAACCAAAAGTGTG TCAGTAGCTCAGTCAAGTTGGACAGTGAGGAAGATATGCCATTTGAGGACTGTACAAACGATCCTGATTC AGAACACCTGTTGCTTAATGGCTGCTTGAAGTCTCTGGCTTTTGATTCTGAGCATTCTGCAGATGAAAAG GAAAAGCCCTGTGCCAAGTCTCGAGTTAGAAAAAGCTCTGATAATATAAAAAGGACTAGTGTGAAAAAGG ATCTGGTGCCATTTGAATCACGTAAAGAAGAACGGAGGGGGAAAATTCCAGACAACCTTGGCCTAGACTT TATCTCTGGGGGTGTATCTGATAAACAGGCTTCTAATGAACTTTCCAGGATAGCAAACAGCCTCACAGGG TCTAGCACTGCACCAGGAAGTTTCCTCTTTTCTTCCAGTGTACAGAACACTGCTAAGACAGACTTTGAGA CTCCAGATTGCGATTCCTTATCAGGTTTGTCTGAGAGTGCTTTAATCTCTAAACATTCTGGAGAGAAAAA GAAACTCCAACCAGGCCAGGTCTGCAGCTCAAAAGTACAGCTCTGCTACGTTGGAGCTGGTGATGAGGAA AAGCGAAGCAATTCTGTCAGTGTGAGTACCACTTCTGATGATGGCTGCAGTGACCTGGATCCTACAGAGC ACAACTCAGGATTCCAGAACAGTGTCCTTGGAATTACAGATGCTTTTGATAAAACAGAGAATGCTTTATC GGTGCACAAAAATGAAACACAGTATTCTAGATATCCTGTCACAAACAGGATAAAAGAGAAACAGAAATCC CTCATTACTAATTCCCATGCAGACCATTTAATGGGTTCTACCAAGACAATGGAGCCTGAAACTGCTGAGT TGTCTCAGGTCAATCTTTCTGATCTTAAAATTAGTAGTCCTATTCCCAAACCCCAACCAGAATTTAGGAA TGATGGTCTCACTACAAAATTCAGCGCGCCACCAGGCATTCGTAATGAAAATCCACTGACAAAGGGTGGG CTTGCAAATCAAACTCTATTACCTCTGAAATGCAGACAGCCCAAGTTTCGTAGTATAAAATGCAAGCATA AAGAAAGCCCAGCTGTTGCAGAAACCTCAGCTACAAGTGAGGACCTCAGTTTGAAATGCTGTTCTTCTGA TACCAATGGCTCTCCTTTGGCCAATATATCCAAAAGTGGGAAAGGAGAGGGGCTAAAACTACTGAACAAT ATGCATGAGAAAACCAGAGATTCTAGTGACATAGAAACAGCAGTGGTGAAGCACGTTCTTTCGGAACTGA AGGAGCTCTCGTACAGATCATTAAGTGAAGACGTAAGTGATTCTGGAACGGCAAAGGCATCAAAGCCATT ACTGTTTTCTTCTGCTTCTAGTCAGAATCATATACCAATTGAACCAGATTACAAGTTTAGCACATTGCTG ATGATGCTGAAGGATATGCATGACAGTAAGACAAAGGAGCAGCGGTTAATGACTGCTCAAAATCTGGCTT CCTACAGGACTCCAGATCGTGGGGACTGTTCTTCTGGTAGCCCTGTAGGGACATCAAAAGTTTTGGTGTT AGGAAGCTCCACACCCAATTCTGAAAAGCCTGGAGATAGCACTCAGGACTCAGTTCACCAGAGTCCTGGT GGGGGTGACTCTGCCTTGTCTGGAGAGTTGTCTTCTTCCCTGTCCAGCTTAGCTTCTGACAAAAGAGAGC TCCCTGCTTGTGGTAAAATTCGCTCTAACTGTATCCCAAGGCGCAACTGTGGCCGAGCAAAGCCATCATC CAAGTTGAGAGAAACCATTTCAGCCCAGATGGTAAAACCTTCAGTAAACCCAAAAGCCTTAAAGACTGAG CGGAAGAGAAAGTTCAGCCGACTTCCAGCTGTGACACTTGCTGCTAACAGACTGGGAAACAAAGAAAGTG GATCAGTGAATGGCCCATCCAGGGGTGGGGCTGAAGATCCTGGTAAAGAAGAGCCTCTGCAACAAATGGA CCTTTTAAGAAATGAAGACACACATTTTTCAGATGTACATTTTGATAGCAAGGCTAAACAATCGGACCCT GATAAAAATCTTGAAAAAGAACCTTCTTTTGAGAACAGAAAAGGCCCAGAGTTGGGCTCTGAAATGAACA CTGAGAATGATGAACTCCATGGTGTTAATCAGGTGGTGCCTAAAAAGCGGTGGCAGCGATTAAACCAAAG GCGCCCTAAGCCCGGAAAGCGTGCTAACAGATTTAGGGAGAAAGAAAACTCGGAGGGTGCTTTTGGAGTC TTACTTCCTGCTGACGCTGTGCAGAAGGCCCGGGAAGACTACTTAGAACAAAGAGCTCCTCCTACAAGTA AACCTGAGGACTCAGCAGCAGATCCCAATCATGGCAGCCACTCTGAATCGGTTGCGCCTCGGCTGAATGT TTGTGAGAAGTCCAGTGTTGGCATGGGTGATGTAGAAAAGGAGACAGGAATTCCCAGTTTGATGCCACAG ACCAAGCTCCCTGAGCCAGCTATTCGGTCAGAGAAGAAACGCCTCAGGAAGCCGAGCAAGTGGCTTCTGG AATATACAGAAGAATATGATCAGATATTTGCTCCTAAGAAAAAACAAAAGAAGGTACAGGAACAAGTGCA TAAGGTAAGTTCGCGCTGTGAAGACGAAAGCCTTCTTGCCCGATGTCAACCTAGTGCTCAGAACAAGCAG GTGGATGAGAATTCTTTGATTTCAACTAAAGAAGAGCCTCCAGTTCTTGAACGAGAGGCTCCATTTTTGG AAGGGCCATTGGCTCAGTCAGATCTTGGAGTTACACATGCTGAGTTGCCACAGCTGACCTTGTCTGTTCC TGTGGCTCCAGAAGCCTCTCCGCGGCCTGCCCTTGAGTCTGAGGAATTGCTCGTTAAGACACCAGGAAAT TATGAAAGTAAGCGTCAAAGAAAACCAACTAAGAAACTTCTTGAATCTAATGATTTAGACCCTGGATTTA TGCCCAAGAAGGGTGACCTTGGCCTTTCTAGAAAGTGCTTTGAAGCCAGTCGCTCGGGAAATGGTATTGT TGAATCACGGGCTACATCTCATTTGAAAGAGTTCAGTGGAGGCACTACCAAGATCTTTGATAAACCAAGG AAACGGAAACGGCAGAGGCTTGTCACAGCCAGAGTGCACTATAAAAAAGTGAAGAAGGAGGACTTAACAA AAGACACACCCAGCTCGGAGGGAGAACTGCTGATTCACAGGACTGCTGCCAGCCCCAAGGAGATTCTTGA AGAGGGTGTAGAACATGATCCTGGGATGTCTGCATCCAAGAAACTGCAGGTTGAAAGAGGCGGAGGAGCG GCACTCAAGGAGAATGTGTGTCAGAACTGTGAGAAGCTGGGTGAGCTGCTGTTGTGTGAGGCTCAGTGCT GCGGGGCTTTCCACTTGGAGTGCCTTGGCCTCCCCGAGATGCCTCGAGGGAAATTTATCTGCAACGAGTG TCACACAGGAATCCATACCTGTTTTGTATGTAAGCAGAGTGGAGAAGATGTGAAAAGGTGCCTTCTACCC TTATGTGGGAAATTTTACCATGAAGAGTGTGTCCAGAAGTACCCACCGACTGTCACACAGAACAAGGGCT TCAGGTGCCCCCTCCACATTTGTATAACCTGCCATGCTGCTAATCCAGCCAATGTATCTGCTTCTAAAGG TCGTCTGATGCGCTGTGTCCGCTGTCCTGTGGCATACCATGCTAATGACTTTTGTCTTGCTGCTGGTTCA AAAATCCTTGCATCTAATAGTATCATCTGCCCTAATCACTTCACCCCTAGGCGGGGCTGCCGAAATCATG AGCATGTTAATGTCAGCTGGTGTTTTGTGTGTTCAGAAGGAGGCAGCCTTCTGTGCTGTGATTCTTGCCC TGCTGCTTTTCATCGAGAATGCCTAAATATCGATATCCCTGAAGGAAATTGGTACTGCAATGACTGTAAG GCAGGCAAAAAGCCACACTACAGGGAGATTGTCTGGGTAAAAGTTGGTCGCTACAGGTGGTGGCCAGCTG AGATCTGCCATCCTCGAGCTGTTCCCTCTAACATTGATAAAATGAGGCACGATGTGGGAGAATTCCCTGT TCTCTTCTTTGGGTCCAATGACTATCTGTGGACTCATCAGGCTCGAGTCTTCCCTTACATGGAAGGGGAT GTAAGCAGCAAGGATAAGATGGGAAAAGGAGTTGATGGAACATATAAAAAAGCTCTTCAGGAAGCTGCAG CAAGATTTGAAGAGTTAAAAGCTCAAAAAGAATTAAGACAGCTGCAGGAAGATCGGAAGAATGACAAGAA GCCGCCACCTTACAAACATATAAAGGTGAACCGGCCTATTGGCAGGGTACAGATCTTCACTGCAGATTTG TCAGAAATTCCCCGTTGCAATTGTAAAGCTACTGATGAGAACCCCTGCGGGATAGACTCAGAGTGTATCA ACCGGATGCTGCTCTATGAGTGCCACCCAACAGTGTGTCCTGCAGGAGTTCGCTGTCAGAACCAGTGCTT CAGCAAGCGCCAGTATCCAGATGTTGAAATTTTCCGCACATTACAAAGGGGCTGGGGTCTCCGAACAAAA ACGGATATTAAAAAGGGAGAATTTGTGAATGAATATGTGGGTGAGCTAATAGATGAAGAAGAGTGCAGAG CTCGGATCCGTTACGCACAAGAGCACGACATCACTAATTTCTATATGCTCACGCTAGATAAAGATCGAAT CATTGATGCTGGTCCTAAAGGGAACTACGCACGCTTCATGAATCACTGCTGCCAGCCTAATTGTGAGACA CAGAAGTGGTCGGTGAATGGAGATACCCGTGTTGGTCTTTTTGCTTTGAGTGACATTAAAGCAGGCACTG AACTTACCTTCAATTACAACCTAGAGTGTCTTGGGAATGGAAAAACCGTCTGTAAATGTGGAGCACCCAA CTGCAGTGGCTTCTTGGGTGTGAGGCCAAAGAATCAACCCATTGTCACAGAAGAAAAGTCAAGGAAATTC AAAAGGAAGCCACATGGGAAGCGCAGGAGCCAGGGCGAAGTCACCAAGGAAAGAGAGGATGAATGTTTCA GCTGTGGGGATGCTGGTCAGCTCGTCTCCTGCAAGAAGCCAGGCTGCCCTAAAGTCTACCATGCAGACTG TCTGAATCTGACAAAGCGACCAGCAGGGAAGTGGGAATGTCCTTGGCACCAGTGTGACGTGTGTGGGAAG GAAGCAGCCTCCTTCTGTGAGATGTGCCCCAGCTCCTTTTGCAAGCAACATCGAGAAGGGATGCTTTTCA TTTCCAAGCTCGATGGGCGTCTGTCTTGTACTGAACATGATCCCTGTGGGCCCAACCCTCTGGAACCTGG GGAGATCCGTGAGTATGTGCCTCCCACAGCGACGAGTCCTCCAAGCCCCGGCACTCAGCCAAAAGAGCAG TCATCAGAGATGGCTACTCAGGGGCCCAAGAAGTCTGATCAGCCACCTACTGATGCCACCCAGTTGCTGC CACTCTCCAAAAAAGCCCTAACAGGGTCTTGTCAGAGGCCACTGCTCCCTGAAAGGCCTCCTGAGAGAAC TGACTCTAGTTCCCACCTTTTAGATAGGATCAGAGACCTTGCTGGGTCAGGGACCAAATCCCAGTCCTTG GTATCCAGCCAGAGACCACAGGACAGGCCACCTGCTAAAGAAGGACCAAGACCTCAGCCACCTGACAGAG CCTCTCCAATGACCAGGCCAAGCTCATCACCTTCAGTCAGCTCCCTGCCACTGGAAAGACCTCTAAGAAT GACTGACTCCAGGCTGGATAAATCCATAGGTGCTGCCAGCCCAAAGTCCCAGGCAGTGGAGAAAACTCCA GCCTCCACTGGCCTGAGACTTTCATCACCAGACAGGCTGCTAACCACTAACAGTCCCAAACCCCAGATTT CTGACAGGCCCCCAGAGAAGTCCCATGCCTCTTTGACCCAGAGACTTCCACCTCCTGAGAAAGTGCTATC AGCTGTGGTCCAGTCTCTGGTAGCTAAAGAGAAAGCCCTGAGGCCTGTGGACCAGAACACCCAATCAAAG CACAGACCTGCTGTGGTGATGGATCTCATAGACCTAACGCCTCGCCAGAAGGAGCGGGCTGCTTCTCCTC AGGAAGTCACCCCACAGGCTGATGAGAAGACAGCAATGCTGGAGTCAAGCTCATGGCCGTCCAGCAAAGG TCTGGGGCATATCCCACGAGCTACGGAGAAGATCAGCGTGTCAGAGTCCCTCCAGCCCTCGGGAAAAGTA GCAGCTCCTTCAGAACACCCTTGGCAAGCTGTTAAATCGCTCACCCATGCCAGATTTCTTTCTCCGCCTT CGGCCAAGGCTTTTTTATATGAATCAGCAACTCAAGCCTCAGGAAGAACCCCTGTGGGAGCTGAGCAGAC CCCAGGACCTCCTAGCCCAGCACCAGGCCTGGTTAAACAGGTGAAACAGCTATCTAGAGGACTCACTGCC AAGAGTGGGCAGTCCTTCAGGTCTCTTGGGAAGATCTCAGCTTCCCTCCCCAATGAAGAAAAGAAGTTGA CAACCACAGAACAGAGTCCCTGGGGCCTGGGAAAAGCCTCACCAGGGGCAGGGCTTTGGCCTATAGTTGC TGGACAAACACTAGCCCAGGCTTGCTGGTCTGCTGGGGGCACACAAACTTTGGCACAAACTTGCTGGTCT CTTGGAAGAGGGCAAGACCCCAAACCAGAAAATGCAATTCAAGCTCTTAACCAGGCTCCTTCTAGTCGCA AATGTGCAGATTCAGAAAAGAAATAA ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT ACAAGGATGACGACGATAAGGTTTAA |
Restriction Sites | SgfI-MluI |
ACCN | NM_008739 |
ORF Size | 8076 bp |
Insert Size | 8076 |
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_008739.3, NP_032765.3 |
RefSeq Size | 12784 |
RefSeq ORF | 8076 |
Locus ID | 18193 |
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