Myo18a (NM_011586) Mouse Untagged Clone

CAT#: MC225142

Myo18a (untagged) - Mouse myosin XVIIIA (Myo18a), (10ug)


  "NM_011586" in other vectors (2)

Reconstitution Protocol

USD 3,430.00

10 Weeks*

Size
    • 10 ug

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Specifications

Product Data
Type Mouse Untagged Clone
Tag Tag Free
Symbol Myo18a
Synonyms MAJN; MyoPDZ; MysPDZ; SP-R210
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>MC225142 representing NM_011586
Red=Cloning site Blue=ORF Orange=Stop codon

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGTTTAACCTCATGAAGAAAGATAAGGACAAAGATGGCGGGCGGAAGGAGAAGAAGGAAAAAAAGGAGA
AGAAGGAGAGGATGTCTGCGGCAGAACTGCGGAGCCTGGAAGAGATGAGCATGCGCCGTGGCTTTTTCAA
CTTGAACCGGTCCTCCAAGCGGGAATCTAAGACGCGCCTGGAAATCTCCAACCCCATCCCTATCAAGGTG
GCCAGTGGCTCTGACCTGCACCTGACGGACATTGACTCTGACAGCAATCGGGGTAGCATCATCCTGGACT
CAGGACACCTAAGCACAGCCAGCTCCAGTGATGACCTCAAGGGTGAAGAAGGCAGCTTCCGGGGCTCTGT
GCTGCAGCGGGCAGCCAAGTTCGGTTCACTGGCCAAGCAGAACTCTCAGATGATTGTCAAACGTTTTTCC
TTCTCTCAACGGAGCCGGGATGAGAGTGCCTCGGAGACCTCAACCCCCTCAGAGCACTCTGCAGCCCCAT
CACCTCAGGTAGAGGTGCGGACGCTTGAGGGACAGCTAATGCAGCATCCTGGGCTAGGCATTCCTCGACC
AGGACCACGGTCTCGAGTCCCTGAGCTGGTGACTAAAAGATTCCCAGCTGATCTACGTCTTCCCGCTCTG
GTGCCACCACCACCTCCTGCTCTCCGGGAGCTGGAGTTACAACGAAGACCCACAGGAGACTTTGGCTTCT
CACTGCGGCGCACAACCATGCTGGATCGGGCCCCTGAGGGTCAGGCTTATCGACGGGTGGTTCACTTTGC
TGAGCCAGGGGCAGGCACCAAGGACCTGGCCTTGGGGCTGGTACCAGGAGATCGACTGGTGGAGATTAAT
GGACAGAATGTGGAGAATAAATCCAGGGATGAAATTGTGGAGATGATCCGGCAGTCTGGGGACAGTGTGC
GGCTCAAGGTACAGCCCATCCCAGAGCTTAGCGAGCTGAGCCGGAGCTGGCTTCGGACTGGCGAGGGACA
CCGCAGGGAGCCGGCTGATGCCAAGACGGAAGAGCAGATTGCCGCTGAAGAGGCCTGGTATGAGACGGAG
AAGGTGTGGCTGGTCCATAGAGATGGATTCTCCTTAGCCAGCCAGCTCAAGTCTGAGGAGCTCAGCCTAC
CCGAGGGGAAGGCGCGTGTGAAGCTGGACCATGACGGAGCCATCCTGGATGTGGATGAAGATGATATAGA
GAAGGCTAATGCTCCTTCATGTGACCGTCTAGAAGATCTGGCCTCACTGGTATACCTCAACGAGTCTAGC
GTCCTGCATACACTGCGCCAGCGCTATGGGGCTAGCCTGCTACACACCTATGCTGGCCCCAGCCTGCTTG
TCCTTAGCACCCGAGGGGCTCCTGCTGTGTATTCAGAGAAGGTGATGCACATGTTCAAGGGGTGTCGGCG
GGAGGACATGGCACCCCACATCTACGCTGTAGCCCAGACTGCATATAGGGCGATGTTGATGAGTCGTCAG
GACCAGTCCATTGTCCTTCTGGGTAGTAGTGGCAGTGGCAAGACTACCAGCTTTCAGCATCTGGTGCAGT
ATCTGGCTACCATCGCGGGTACCAGTGGGACCAAGGTGTTCTCAGTGGAGAAGTGGCAGGCTCTGTCCAC
CCTCCTGGAAGCCTTTGGGAACAGCCCCACCATCATGAATGGCAGTGCCACCCGCTTCTCCCAGATCCTC
TCCCTGGACTTTGACCAAGCTGGCCAGGTGGCTTCGGCCTCCATCCAGACAATGCTCCTGGAGAAGCTGC
GTGTGGCCCGGCGCCCAGCCAGTGAGGCTACTTTCAATGTCTTCTACTACTTGCTGGCCTGTGGGGATGC
CACCCTCAGGACAGAGCTCCACCTGAACCACTTGGCAGAGAACAATGTGTTTGGAATTGTGCCACTGTCC
AAGCCTGAGGAGAAGCAGAAGGCTGCACAGCAGTTCAGTAAGCTCCAGGCTGCCATGAAGGTGCTGGCCA
TCTCCCCCGAGGAACAGAAGACCTGCTGGCTCATCCTGGCTTCCATCTACCACCTGGGGGCTGCTGGAGC
TACCAAAGAAGCTGCTGAAGCTGGACGAAAGCAGTTTGCCCGCCACGAATGGGCCCAGAAGGCAGCATAC
CTGCTGGGCTGCAGCTTGGAAGAGCTGTCCTCGGCTATCTTCAAACACCAGCTAAAAGGAGGCACCCTGC
AACGGTCCACCTCCTTCCGTCAGGGCCCTGAGGAGAGCGGCCTGGGAGAGGGCACCAAACTGAGTGCTCT
GGAGTGCTTAGAGGGTATGGCGTCTGGCCTCTACAGTGAGCTCTTTACTCTCCTCATCTCCCTGGTAAAC
AGGGCTCTCAAGTCCAGCCAGCACTCACTCTGTTCCATGATGATCGTGGACACACCAGGCTTCCAGAACC
CTGAATGGGGCGGCTCGGCCCGTGGAGCCTCCTTCGAGGAGCTGTGCCACAACTATGCCCAGGACAGGCT
GCAGAGGCTGTTCCACGAGCGCACCTTCCTCCAGGAGTTGGAGAGATACAAGGAGGATAACATAGAACTG
GCGTTTGATGACTTGGAGCCAGTTGCAGATGACTCCGTGGCTGCTGTGGACCAGGCTTCCCACCTGGTTC
GCTCACTGGCCCATGCCGATGAGGCAAGAGGGCTACTGTGGCTCCTGGAAGAGGAGGCACTGGTGCCTGG
TGCGACAGAGGATGCCCTCCTTGATCGTCTTTTCTCCTATTATGGCCCCCAGGAGGGTGACAAAAAAGGC
CAGAGTCCTCTTCTGCGAAGTAGCAAACCTCGGCACTTTCTCCTGGGCCACAGCCACGGTACCAACTGGG
TGGAGTACAACGTGGCTGGCTGGCTGAATTACACCAAGCAGAACCCAGCCACCCAGAATGCACCCCGGCT
TCTGCAGGACTCCCAGAAAAAGATCATCAGTAACCTGTTTCTGGGCCGGGCGGGCAGTGCCACGGTGCTC
TCAGGCTCGATTGCAGGCCTGGAAGGTGGCTCCCAGCTGGCCTTGCGCCGGGCAACCAGCATGAGGAAAA
CCTTCACCACCGGCATGGCCGCTGTCAAGAAGAAGTCGCTGTGCATACAGATTAAGCTGCAAGTAGATGC
CCTCATTGATACCATCAAGAGGTCCAAGATGCATTTCGTGCACTGCTTCCTTCCTGTGGCCGAGGGCTGG
CCTGGGGAGCCCCGGTCTGCCTCTTCCCGCAGAGTCAGCAGCAGCAGTGAGCTGGACCTGCCCCCGGGAG
ACCCCTGTGAGGCTGGGCTGCTACAACTGGATGTGTCCCTGCTCCGAGCCCAGCTCCGGGGATCCCGCCT
GCTTGATGCGATGCGCATGTACCGCCAAGGTTACCCAGACCACATGGTGTTTTCTGAGTTCCGCCGGCGC
TTTGATGTCCTGGCTCCACACCTGACCAAGAAACATGGTCGTAACTACATCGTGGTGGATGAGAAGCGGG
CTGTGGAAGAGCTGCTGGAGTCCCTGGACCTGGAAAAGAGCAGCTGCTGTCTGGGCCTAAGCCGGGTGTT
CTTCCGGGCAGGCACGTTGGCACGGTTGGAAGAACAACGAGACGAGCAAACCAGCAGGCACCTGACCCTG
TTCCAGGCAGCCTGCCGGGGCTACCTTGCCCGCCAGCACTTCAAGAAGAGAAAGATCCAGGACCTGGCCA
TTCGCTGTGTGCAGAAGAACATCAAGAAGAACAAGGGGGTGAAGGACTGGCCCTGGTGGAAGCTCTTCAC
CACCGTGCGGCCCCTCATCCAAGTTCAGCTGTCAGAGGAGCAGATCCGAAACAAAGACGAGGAGATCCAG
CAGCTGCGCAGCAAGCTTGAGAAGGTGGAGAAGGAGAGGAACGAGCTCCGACTCAGCAGTGACCGGCTAG
AGACCCGGATCTCAGAACTGACATCGGAGCTGACTGATGAACGCAACACGGGAGAGTCCGCCTCCCAGCT
GCTGGACGCGGAGACAGCCGAGAGGCTCCGGACCGAGAAGGAGATGAAAGAGCTACAGACCCAGTATGAC
GCACTGAAGAAGCAGATGGAGGTGATGGAGATGGAAGTGATGGAAGCCCGGCTCATTCGGGCAGCCGAGA
TCAACGGGGAGGTGGATGATGATGATGCAGGGGGAGAGTGGAGGCTGAAGTACGAGCGAGCTGTTCGGGA
GGTGGACTTCACCAAGAAGCGGCTCCAGCAGGAGCTGGAAGACAAGATGGAGGTGGAACAGCAGAGCAGG
AGGCAGCTGGAGAGGCGGCTTGGGGACCTGCAAGCAGATAGTGATGAGAGTCAACGGGCACTGCAGCAGC
TCAAGAAGAAGTGCCAAAGGCTCACAGCTGAGCTGCAGGACACCAAGCTGCACCTGGAGGGCCAGCAGGT
CCGAAACCACGAGCTGGAGAAGAAGCAGAGGAGGTTCGACAGTGAGCTTTCCCAGGCCCACGAGGAGACG
CAGCGGGAGAAGCTGCAGAGGGAGAAACTCCAGCGGGAGAAGGACATGCTCCTGGCTGAGGCTTTCAGCT
TGAAGCAGCAAATGGAGGAAAAAGACTTGGACATTGCGGGGTTTACCCAGAAGGTGGTTTCCTTGGAGGC
TGAGCTTCAGGACATTTCTTCTCAAGAGTCTAAGGATGAGGCTTCTCTGGCCAAGGTCAAGAAGCAGCTC
CGGGACTTGGAGGCCAAGGTCAAGGACCAGGAAGAGGAGCTGGATGAGCAGGCTGGGAGTATACAGATGC
TGGAGCAGGCCAAGCTGCGTCTGGAGATGGAGATGGAGAGAATGAGACAGACCCATTCCAAGGAGATGGA
GAGTCGGGATGAGGAGGTGGAAGAGGCCCGGCAGTCATGTCAGAAGAAGTTAAAACAGATGGAAGTGCAG
CTCGAGGAGGAGTATGAAGACAAGCAGAAGGCGCTGCGGGAGAAACGGGAGCTGGAGAGCAAGCTCTCCA
CGCTCAGTGACCAGGTGAACCAGCGGGACTTTGAATCAGAGAAGCGGCTACGGAAAGACCTGAAGCGCAC
CAAAGCGCTGCTGGCAGATGCCCAGATCATGCTGGACCACTTAAAGAACAATGCCCCGAGCAAGAGGGAG
ATTGCCCAGCTGAAGAACCAGCTGGAAGAGTCGGAATTCACCTGTGCAGCAGCTGTAAAGGCACGGAAAG
CGATGGAGGTGGAGATGGAAGACCTGCACCTGCAGATTGATGACATCGCCAAAGCCAAGACAGCGCTGGA
GGAGCAACTGAGTCGACTTCAGCGTGAGAAAAACGAGATTCAAAACCGGCTGGAAGAGGATCAGGAGGAC
ATGAATGAGCTGATGAAGAAGCACAAGGCAGCTGTGGCCCAGGCCTCCCGGGACATGGCACAGATGAACG
ATCTCCAGGCTCAGATTGAAGAGTCCAACAAGGAGAAGCAAGAGCTACAGGAGAAGCTACAAGCTCTGCA
GAGCCAGGTGGAGTTCCTGGAGCAGTCCATGGTGGACAAGTCCCTCGTCAGCAGGCAGGAAGCGAAGATC
AGGGAGCTGGAGACACGCCTGGAGTTCGAAAAGACCCAAGTGAAGCGCCTGGAGAACCTGGCCAGTCGGC
TCAAAGAAACCATGGAGAAGCTGACTGAGGAACGGGACCAGCGCGCCGCAGCTGAGAACCGTGAGAAGGA
GCAGAACAAGAGGCTCCAGCGACAGCTTCGTGACACCAAGGAGGAGATGAGCGAGCTTGCCAGGAAGGAA
GCCGAGGCTAGCCGCAAGAAGCATGAACTGGAGATGGACCTGGAGAGCCTGGAAGCTGCTAACCAAAGCC
TGCAAGCCGACCTAAAGCTGGCGTTCAAACGCATTGGGGACTTGCAAGCTGCCATTGAGGATGAGATGGA
AAGTGACGAGAACGAGGACCTCATCAACAGTGAGGGGGACTCAGATGTGGACTCAGAGCTGGAGGACCGG
GTCGACGGGGTCAAGTCCTGGTTGTCAAAGAACAAGGGACCTTCTAAGGCACCTTCTGACGATGGCAGCT
TGAAGAGTTCCAGCCCAACCAGCCACTGGAAGCCACTCGCCCCTGACCCATCGGATGATGAGCATGATCC
TGTGGACAGCATCTCCAGACCCCGGTTCTCCCACAGCTATCTGAGTGACAGCGACACAGAGGCCAAGCTG
ACAGAGACCAGTGCATAG


ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT
ACAAGGATGACGACGATAAGGTTTAA
Restriction Sites SgfI-MluI     
ACCN NM_011586
ORF Size 6108 bp
Insert Size 6108
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_011586.3, NP_035716.1
RefSeq Size 7360
RefSeq ORF 6108
Locus ID 360013

Other Versions

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