Aox1 (NM_009676) Mouse Untagged Clone

CAT#: MC224256

Aox1 (untagged) - Mouse aldehyde oxidase 1 (Aox1), (10ug)


  "NM_009676" in other vectors (4)

Reconstitution Protocol

USD 1,800.00

6 Weeks*

Size
    • 10 ug

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Specifications

Product Data
Type Mouse Untagged Clone
Tag Tag Free
Symbol Aox1
Synonyms AI196512; AI255253; Ao; Aox-1; Aox-2; Aox2; Moro; Ro
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>MC224256 representing NM_009676
Red=Cloning site Blue=ORF Orange=Stop codon

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGGACCCCATTCAGCTGCTCTTCTACGTGAATGGCCAGAAGGTGGTAGAAAAAAATGTCGATCCTGAAA
TGATGCTTTTACCATACCTGAGGAAGAATCTCCGACTCACAGGAACTAAGTATGGCTGTGGAGGCGGGGG
CTGTGGGGCCTGCACAGTGATGATCTCGCGGTACAACCCCAGCACCAAGGCGATCAGGCATCATCCTGTC
AATGCCTGTCTGACCCCCATCTGCTCTCTACATGGTACAGCAGTCACCACGGTAGAAGGCTTAGGCAACA
CCAGGACCAGGCTTCATCCTATTCAGGAGAGAATTGCCAAGTGTCACGGCACCCAGTGTGGATTCTGTAC
TCCTGGGATGGTGATGTCCATGTACGCACTGCTCAGGAACCATCCAGAGCCCACTCTAGATCAGTTAACT
GATGCCCTTGGTGGGAATCTGTGCCGCTGCACTGGATATAGGCCCATAATTGATGCCTGCAAGACTTTCT
GTAAAGCCTCTGGCTGCTGTCAAAGTAAAGAAAATGGGGTGTGCTGTTTGGATCAAGAAATAAATGGATT
GGCAGAATCCCAGGAAGAAGATAAGACAAGTCCAGAACTGTTCTCAGAAGAGGAATTTCTGCCACTGGAC
CCGACCCAAGAGCTGATATTTCCTCCCGAGCTAATGAGAATAGCTGAGAAACAGCCACCAAAGACCAGAG
TGTTTTATGGTGAGAGGGTGACATGGATTTCCCCCGTGACTCTGAAGGAACTTGTGGAAGCTAAATTCAA
GTATCCCCAGGCCCCTATTGTCATGGGGTACACTTCTGTGGGACCTGAAGTAAAGTTTAAAGGTGTCTTC
CACCCCATCATAATTTCTCCTGACAGAATTGAAGAGCTGGGTGTCATAAGCCAGGCCAGGGATGGGCTGA
CCCTGGGTGCTGGCCTCAGCCTGGATCAGGTGAAGGACATTCTGGCTGATATAGTCCAGAAGCTTCCAGA
AGAGAAGACACAGACATACCGTGCTCTCCTGAAGCACCTGAGAACTCTGGCTGGCTCCCAGATCAGGAAC
ATGGCTTCTCTAGGGGGCCACATTGTGAGCAGACATCTGGACTCAGATCTGAATCCCCTTCTGGCTGTGG
GTAACTGTACCCTCAACTTACTGTCCAAAGATGGAGAACGGCGGATCCCTTTAAGTGAAGAGTTTCTCCG
AAAGTGTCCTGAAGCAGATCTTAAGCCTCAGGAAGTCTTGGTCTCAGTGAACATCCCCTGGTCCAGGAAG
TGGGAGTTTGTGTCAGCCTTCCGTCAAGCGCAAAGACAACAGAATGCACTAGCAATAGTCAACTCCGGAA
TGAGAGTCCTTTTTAGAGAAGGAGGTGGCGTCATTGAAGAGTTATCCATTTTGTATGGAGGTGTCGGTTC
AACTATCATCAGTGCCAAGAACTCCTGTCAGAGACTCATTGGGAGGCCCTGGAATGAAGGGATGCTGGAC
ACAGCCTGTAGGCTGGTTTTGGATGAAGTCACCCTTGCAGCCTCAGCTCCTGGTGGGAAGGTGGAGTTCA
AGAGGACCCTCATCATCAGCTTCCTTTTCAAGTTCTACCTGGAGGTGTCACAGGGTTTGAAGAGGGAGGA
CCCAGGTCACTCTCCTAGCCTGGCAGGCAACCATGAGAGTGCTTTAGATGATCTTCATTCAAAACATCCC
TGGAGAACATTAACCCACCAGAATGTAGATCCAGCACAGCTGCCTCAGGACCCCATTGGACGTCCCATCA
TGCACCTTTCTGGGATTAAACATGCCACGGGCGAGGCCATCTACTGTGACGACATGCCTGCAGTAGACCG
GGAGCTTTTCCTCACTTTTGTAACAAGTTCAAGAGCACACGCTAAGATTGTGTCCATTGATCTGTCGGAA
GCTCTCAGCCTGCCTGGTGTGGTGGACATCATTACTGCAGATCATCTTCAGGAAGCAAACACCTTCGGCA
CAGAGACATTTCTGGCCACAGATGAGGTACACTGCGTGGGCCATCTTGTCTGTGCTGTGATTGCAGATTC
TGAGACACGGGCAAAGCAAGCGGCGAAGCAAGTGAAGGTGGTCTACCAAGACTTGGCGCCTCTGATCCTA
ACGATTGAGGAAGCTATACAACACAAGTCCTTCTTCAAGTCAGAACGGAAGCTGGAGTGTGGGAATGTTG
ACGAAGCATTTAAAATCGTTGATCAAATTCTTGAAGGTGAAATACACATAGGCGGCCAGGAACATTTTTA
TATGGAAACCCAAAGCATGCTTGTTGTTCCCAAAGGAGAGGATGGAGAGATTGACATCTATGTGTCTACA
CAGTTTCCCAAATATATACAGGATATAGTCGCTGCAACCTTGAAGCTCTCAGCCAACAAGGTCATGTGTC
ATGTAAGGCGTGTTGGCGGGGCATTTGGAGGGAAGGTGGGCAAGACCAGCATCTTGGCAGCCATCACTGC
ATTTGCTGCTAGCAAACACGGTCGCGCAGTCCGCTGCATTCTGGAACGAGGAGAAGACATGTTAATAACT
GGAGGCCGCCATCCTTACCTTGGAAAGTATAAAGCTGGATTCATGAATGACGGCAGAATCTTGGCCCTGG
ACGTGGAGCACTACTGCAATGGAGGGTGCTCCCTGGATGAGTCACTATGGGTGATAGAAATGGGGCTTCT
GAAGCTGGACAACGCTTACAAGTTTCCCAACCTACGCTGCCGGGGCTGGGCCTGCAGAACCAACCTTCCA
TCCAACACTGCTCTGCGTGGGTTTGGCTTTCCTCAGGCAGGGCTGGTCACCGAAGCCTGTATCACAGAAG
TGGCAATCAAATGTGGCCTGTCCCCTGAGCAGGTTCGAACCATAAATATGTACAAGCACGTTGATACTAC
CCATTACAAGCAAGAGTTCAGCGCCAAGGCCCTCTCTGAGTGCTGGAGAGAGTGCATGGCCAAGTGTTCC
TACTTTGAGAGGAAAGCAGCCATAGGAAAATTCAACGCAGAGAATTCCTGGAAGAAGAGAGGAATGGCTG
TGATTCCCCTGAAGTTTCCTGTGGGTATTGGATCAGTAGCCATGGGACAGGCAGCTGCCTTGGTTCATAT
TTATTTGGATGGCTCTGCACTGGTCTCTCATGGTGGAATTGAGATGGGGCAGGGTGTGCACACTAAAATG
ATTCAGGTGGTCAGCCGGGAACTAAGGATGCCGATGTCCAGTGTCCACCTGCGTGGGACAAGCACAGAAA
CCGTCCCCAACACAAATGCCTCTGGAGGCTCTGTGGTGGCAGATCTCAATGGACTGGCAGTAAAGGATGC
CTGTCAGACCCTTCTAAAACGCCTTGAACCCATCATCAGCAAGAATCCTCAGGGAACTTGGAAGGATTGG
GCCCAGACTGCTTTTGACCAAAGCATCAGTCTCTCGGCTGTTGGATATTTCAGGGGTTATGAGTCGAATA
TAGACTGGGAGAAAGGGGAAGGTCATCCCTTCGAATACTTTGTGTTTGGAGCTGCCTGCTCAGAGGTTGA
AATAGACTGCCTGACTGGGGACCATAAGAATATCAGAACAAACATCGTGATGGATGTTGGCCACAGCATA
AACCCAGCCCTTGACATAGGTCAGGTTGAAGGTGCATTTATTCAAGGAATGGGACTTTACACAATAGAGG
AGCTGAGTTACTCTCCTCAGGGCACTCTATACAGTCGTGGTCCAAACCAATACAAGATTCCTGCCATCTG
TGACATCCCCACGGAAATGCACATTTCTTTTTTGCCCCCATCTGAACACTCAAACACCCTGTATTCATCT
AAGGGCCTGGGAGAGTCTGGGGTGTTTCTGGGATGTTCGGTATTTTTTGCCATCCATGATGCAGTGAAGG
CAGCGCGGCAGGAGAGAGGCATCTCTGGACCATGGAAACTCAACAGTCCTCTGACTCCAGAGAAAATCAG
AATGGCCTGTGAAGATAAGTTCACCAAAATGATCCCAAGAGATGAGCCTGGATCCTATGTTCCCTGGAAC
ATACCTGTGTGA


ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT
ACAAGGATGACGACGATAAGGTTTAA
Restriction Sites SgfI-MluI     
ACCN NM_009676
ORF Size 4002 bp
Insert Size 4002
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_009676.2, NP_033806.2
RefSeq Size 4382
RefSeq ORF 4002
Locus ID 11761

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