Mpdz (NM_010820) Mouse Untagged Clone
CAT#: MC225149
Mpdz (untagged) - Mouse multiple PDZ domain protein (Mpdz), (10ug)
"NM_010820" in other vectors (2)
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Specifications
Product Data | |
Type | Mouse Untagged Clone |
Tag | Tag Free |
Symbol | Mpdz |
Synonyms | AI225843; B930003D11Rik; MUPP1 |
Vector | pCMV6-Entry |
E. coli Selection | Kanamycin (25 ug/mL) |
Mammalian Cell Selection | Neomycin |
Sequence Data |
>MC225149 representing NM_010820
Red=Cloning site Blue=ORF Orange=Stop codon TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC GCCGCGATCGCC ATGTTGGAAACCATAGACAAAAATCGGGCCCTGCAGGCAGCAGAGCGCTTGCAAAGCAAGCTGAAAGAAC GCGGGGATGTTGCAAATGAAGACAAACTGAGTCTCCTGAAGTCTGTCCTGCAGAGTCCACTCTTCAGTCA GATCTTGAACCTTCAGACTTCACTACAGCAGCTAAAAGACCAGGTAAACATTGCTACTTTGGCAACTGCA GCTGCTGACCATGCCCACACTCCTCAGTTCAGCTCTGCTGTCATTTCTAACCTGCAAAGTGAGTCACTTC TGCTGTCTCCAAATCATGGGAACCTGGAAGCCCTTCCTGGACCTGGTGCTCCAGCTGTCATGGATGGGAA GCCTACCTGTGACGAACTTGATCAGCTCATTAAAAATATGGCCCAGGGTCGCCATGTGGAAATATTTGAG CTCCTTAAACCTCCGTGTGGAGGCCTCGGCTTTAGTGTTGTTGGGCTCAGAAGTGAAAACAGGGGCGAGC TGGGGATATTTGTCCAGGAGATTCAGGAGGGCAGTGTGGCTCACAGAGATGGCAGACTTAAGGAAACCGA CCAGATCCTCGCCATCAATGGCCAGGTCCTAGACCAGACGATCACACACCAGCAGGCCATTAGCATCCTG CAGAAGGCCAAAGACACCGTGCAGCTTGTGATTGCCAGAGGATCTTTGCCGCCGGTCTCCAGCCCACGGA TTTCCCGCTCTCCATCAGCAGCCAGCACCATTTCAGCCCACTCGAATCCAATGCACTGGCAGCATGTGGA GACCATAGAGCTGGTAAACGATGGGTCCGGCCTGGGGTTTGGCATCATAGGAGGAAAGGCGACTGGTGTC ATAGTGAAGACAATCTTGCCTGGAGGAGTAGCCGACCAGCATGGGCGATTATGCAGTGGAGACCACATTC TAAAGATTGGTGACACTGACCTAGCAGGAATGAGCAGTGAGCAAGTAGCACAAGTCCTTAGGCAGTGTGG AAATAGAGTTAAGCTGATGATTGCCAGAGGTGCTGTAGAAGAAACGCCAGCATCCTCCTCTTTGGGCATC ACCCTCTCCTCTTCCACATCTTCTACTTCAGAGATGCGAGTTGATGCTTCTACTCAGAAAAATGATGAAA GTGAGACGTTTGATGTGGAACTCACTAAAAATGTCCAAGGACTAGGAATTACCATTGCTGGTTATATTGG AGATAAAAAATTAGAGCCTTCAGGAATCTTTGTAAAGAGCATTACAAAAAGCAGTGCTGTGGAGCATGAT GGAAGAATCCAAATTGGAGACCAAATTATAGCAGTCGATGGCACCAACCTTCAGGGTTTTACCAACCAAC AAGCAGTAGAGGTGTTACGTCACACAGGACAGACAGTGCGTCTGACACTGATGAGGAAGGGAGCAAGCCA GGAAGCAGAACTTACGTCAAGAGGAGACACTGCAAAAGATGTGGACCTCCCAGCTGAAAATTGTGAAAAG GATGAAGAATCTTTATCATTGAAGAGAAATACCAGCATATTACCGATTGAAGAAGAAGGGTTTCCACTGT TGTCAGCTGAGCTGGAAGAAGCTGAAGATGTGCAGCAAGAGGCTGCCCTGCTGACCAAGTGGCAGAGGAT TATGGGAATTAACTATGAAATAGTGGTGGCTCATGTGAGCAAGTTTAGTGAGAATAGTGGGCTGGGAATA AGTCTGGAGGCAACTGTGGGCCACCACTTCATCCGGTCTGTGCTACCAGAAGGCCCTGTGGGACACAGCG GGAAGCTCTTCAGTGGAGATGAGCTCTTGGAAGTGAATGGTATAAATTTGCTTGGGGAAAACCATCAAGA TGTGGTCAATATTTTAAAAGAGTTGCCTATAGATGTGACAATGGTATGCTGCCGTCGGACTGTGCCACCC ATTGCCCTATCAGAAATGGATAGCCTGGACATAAATGATCTTGAACTCACAGAAAAGCCTCATATAGATC TAGGAGAGTTCATTGGGTCCTCAGAGACAGAGGATCCCATGCTGGCGATGTCTGATGTGGATCAGAATGC AGAGGAGATTCAAACACCGCTGGCCATGTGGGAGGCAGGCGGTCAGTCCATAGAGCTGGAGAAAGGGAGC AGAGGCCTTGGCTTCAGTATTTTAGACTATCAGGACCCGATCGATCCAGCAAACACAGTAATTGTCATTC GTTCCCTGGTGCCTGGTGGCATAGCTGAAAAGGATGGACGGCTTTTTCCAGGAGACAGGCTCATGTTTGT CAATGACATTAATCTGGAAAACAGCACTCTTGAAGAGGCCGTGGAAGCCCTGAAGGGAGCGCCCTCAGGG ATGGTGCGGATAGGAGTGGCCAAGCCTTTGCCTCTGTCACCAGAAGAAGGGTATGTTTCAGCCAAGGAAG ACGCCTTTCTCTGCTCACCGCACGCCTGCAAGGAGTCAGGCCTGTCCGACAAAGCCCTCTTCAGGGCTGA CTTGGCTCTGATAGATACACCTGATGCTGAGTCCATAGCTGAATCACGATTTGAATCTCAGTTCTCTCCT GATAACGACAGTGTCTACTCTACACAAGCCTCCATCTTCTCTCTTCATGATGGTACTTGCAGTGATGGCA TGAACTACGGCCCCTCTCTTCCATCATCTCCTCCCAAGGATGTGACCAGCAGTTCTGAAGTAGTGCTTGG TCTGCATTTGTCCCTGGAAGAACTCTACACACAGAACCTCCTTCAGAGACAGCATGCTGGCTCTCCTCCC ACAGACATGAGGCCAGCACCCACCTCTGGTTTCCCCATCAGTGACTACACAACTACAAATGCTGTTGAAC AAAAATACGAATGTGCAAACCCAGTAGCGTGGCCTCACTCGCAGTTACCAAGTAGCCTAAGCACCTCCGA GCTTGCTCCTGCACTGCCTGCTGTGGCTCAGAAGTATTTAACTGACCAGAGCTCTCTGGCATCTGATGCT GAGTCTGTCAACTTGCAGAGTATGTCCCAGGAAGCTTTTGAGAGGACCGTTACTATAGCAAAAGGCAGCT CCAGCCTAGGTATGACAGTAAGTGCCAATAAAGATGGCCTGGGAGTGATTGTGCGGAGCATCATTCATGG GGGCGCCATTAGTCGTGATGGCCGGATTGCTGTGGGCGACTGCATTTTGTCCATTAATGAAGAATCCACC ATCAGTCTAACCAATGCCCAGGCACGGGCCATGCTCAGAAGACATTCTCTAATTGGACCTGATATCAAAA TTACTTACGTGCCTGCAGAACATTTGGAAGAGTTCAGAGTAAGTTTTGGTCAACAAGCTGGAGGAATAAT GGCACTGGATATTTTTTCTTCATACACTGGCAGAGACATTCCAGAACTCCCAGAGCGAGAAGAAGGAGAA GGGGAAGAAAGTGAACTGCAGAATGCTGCCTACAGCAGCTGGAGCCAGCCACGGAGGGTGGAACTTTGGA GAGAACCAAGCAAGTCCTTGGGCATCAGCATTGTTGGTGGTCGAGGAATGGGGAGCCGGCTGAGCAATGG TGAGGTGATGAGGGGCATTTTCATCAAACATGTTCTTGAAGACAGTCCAGCTGGCAAAAATGGAACTCTG AAGCCAGGAGACAGAATAATTGAGGTGGATGGGATGGACCTCAGAGATGCAAGCCATGAACAAGCTGTGG AAGCCATTCGGAAAGCAGGCAACCCTGTAGTGTTTATGGTACAGAGCATTATAAACAGACCAAGGAAATC CCCTTTGCCTTCCTTGCCGCACAGCCTTTACCCTAAGTACAGCTTCAGCAGCACTAACCCATTTGCAGAC TCTCTCCAGCTCACCACTGACCAGGCACCCAGCCAGTCAGAATCTGAGACAGAGAAGCCTGCATTGTGCA ATGTTCCTCCCTCCTCTCCTTCAGTGTTCTCAGAAATGGGTAGTGATTGTGCACAGCCATCTGCAACCGC AGTCTCAGAAGATGAGGACAAAGAGGATGAGTTTGGTTACAGCTGGAAAAATATCCAGGAGCGCTATGGA AGCCTGACAGGTCAGCTCCATGTGATTGAGCTGGAGAAAGGGCAGAGCGGGTTGGGTCTGAGTCTTGCTG GGAACAAAGACCGCACCAGAATGAGTGTGTTTATAGTGGGGATTGATCCCACTGGAGCAGCGGGGAGAGA TGGCCGACTACAGATTGCCGACGAGCTTTTAGAGATCAATGGCCAAATATTGTATGGCAGAAGTCATCAG AATGCTTCATCAATTATTAAATGTGCTCCATCTAAAGTAAAAATAATTTTTATCAGAAATGCAGATGCAG TGAACCAGATGGCCGTATGTCCTGGAATTGCAGCAGACTCTCCGTCTTCCACCTCAGACAGTCCTCAGAA CAAGGAGGTGGAACCATGCAGTACTACATCTGCTTCCGCTGCGGACCTCAGCTCACTTACAGATGTGTAC CAGCTGGAGCTTCCTAAGGATCAAGGAGGTTTAGGCATTGCTATCTGTGAGGAAGACACAATCAACGGAG TCATGATCGAAAGCCTAACTGAGCACGGGGGAGCAGCCAAGGATGGAAGGCTCAAACCTGGAGATCACAT CTTGGCTGTAGATGATGAAGTTGTTGCTGGGTGTCCTGTTGAAAAGTTCATCAGCCTTCTGAAGACGGCA AAGGCAACTGTAAAACTGACTGTTCGAGCTGAGAATCCAGCTTGTCCAGCTGTTCCTTCTTCAGCTGTAA CAGTCAGTGGAGAAAGGAAAGACAACTCCCAGACTCCTGCAGTCCCAGCTCCAGACCTGGAACCCATCCC AAGTACAAGCAGGTCCTCCACACCAGCAGTCTTTGCTTCTGACCCTGCCACCTGCCCCATCATCCCAGGC TGTGAGACAACAATTGAGATTTCCAAAGGCCAAACAGGCCTGGGACTGAGTATTGTTGGGGGCTCAGACA CACTGCTGGGTGCTATTATTATCCATGAAGTTTATGAAGAGGGAGCAGCGTGTAAAGATGGAAGACTATG GGCTGGAGACCAGATTTTAGAGGTAAATGGGATTGACTTGCGAAAGGCTACACATGATGAAGCAATCAAT GTCCTGAGGCAGACGCCTCAAAGAGTACGGCTGACGCTCTACCGAGATGAGGCCCCATACAAAGAGGAGG ATGTCTGTGATACCTTCACCATCGAGCTGCAGAAGAGGCCAGGCAAAGGCCTTGGGTTGAGTATTGTTGG CAAAAGAAATGACACTGGAGTATTTGTATCAGACATTGTCAAGGGAGGCATTGCAGACGCCGATGGGAGA CTGATGCAAGGGGACCAGATTTTAATGGTGAATGGAGAAGATGTCCGTCATGCCACCCAGGAGGCAGTCG CTGCCCTGCTAAAGTGTTCCCTAGGTGCAGTAACCCTGGAGGTTGGAAGAGTCAAAGCTGCCCCATTCCA CTCAGAACGGAGGCCTTCTCAAAGCAGCCAGGTGAGTGAGAGCAGCCTGTCATCTTTCACTCCCCCACTT TCTGGAATAAATACATCAGAGTCATTGGAAAGTAACTCGAAGAAAAATGCATTAGCATCTGAAATTCAGG GACTAAGAACAGTCGAAATAAAAAAGGGGCCTGCTGACTCGCTGGGACTCAGCATTGCTGGAGGAGTGGG CAGCCCGCTCGGAGATGTCCCTATATTTATTGCGATGATGCACCCAAATGGTGTTGCAGCTCAAACACAA AAACTCAGAGTTGGGGATAGGATTGTCACCATCTGTGGCACATCCACGGATGGGATGACTCACACACAGG CGGTTAACTTGATGAAAAATGCCTCAGGCTCCATTGAAGTACAGGTGGTTGCTGGAGGAGATGTGAGTGT GGTCACGGGTCATCAGCAAGAACTTGCCAATCCTTGTCTTGCTTTCACTGGGCTGACATCAAGCAGTATA TTTCCGGATGATTTAGGCCCTCCACAGTCTAAGACCATTACGCTAGACCGAGGACCAGATGGCTTAGGCT TCAGCATTGTAGGCGGCTATGGCAGCCCTCATGGAGACTTACCAATTTATGTGAAAACAGTGTTTGCAAA GGGAGCAGCAGCAGAAGATGGGCGTCTAAAAAGGGGCGATCAGATCATTGCTGTCAATGGGCAAAGTCTA GAAGGAGTGACCCATGAAGAAGCTGTTGCCATCCTCAAGAGGACAAAGGGCACCGTCACCCTCATGGTTC TCTCTTGA ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT ACAAGGATGACGACGATAAGGTTTAA |
Restriction Sites | SgfI-MluI |
ACCN | NM_010820 |
ORF Size | 6168 bp |
Insert Size | 6168 |
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_010820.3, NP_034950.2 |
RefSeq Size | 7526 |
RefSeq ORF | 6168 |
Locus ID | 17475 |
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