Mpdz (NM_010820) Mouse Untagged Clone

CAT#: MC225149

Mpdz (untagged) - Mouse multiple PDZ domain protein (Mpdz), (10ug)


  "NM_010820" in other vectors (2)

Reconstitution Protocol

USD 3,460.00

10 Weeks*

Size
    • 10 ug

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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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