Aldehyde Oxidase (AOX1) (NM_001159) Human Untagged Clone

CAT#: SC110827

AOX1 (untagged)-Human aldehyde oxidase 1 (AOX1)


  "NM_001159" in other vectors (6)

Reconstitution Protocol

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Size
    • 10 ug

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Specifications

Product Data
Type Human Untagged Clone
Tag Tag Free
Symbol AOX1
Synonyms AO; AOH1
Vector pCMV6-XL4
E. coli Selection Ampicillin (100 ug/mL)
Mammalian Cell Selection None
Sequence Data
>OriGene ORF within SC110827 sequence for NM_001159 edited (data generated by NextGen Sequencing)
ATGGACCGGGCGTCCGAGCTGCTCTTCTACGTGAACGGCCGCAAGGTGATAGAAAAAAAT
GTCGATCCTGAAACAATGCTGTTGCCTTATTTGAGGAAGAAGCTTCGACTCACAGGAACT
AAGTATGGCTGTGGAGGAGGAGGCTGTGGTGCTTGTACAGTGATGATATCACGATACAAC
CCCATCACCAAGAGGATAAGGCATCACCCAGCCAATGCCTGTCTGATTCCCATCTGTTCT
CTGTATGGTGCTGCCGTCACCACAGTAGAAGGCATAGGAAGCACCCACACCAGAATTCAT
CCTGTTCAGGAGAGGATTGCCAAGTGTCATGGCACCCAGTGTGGCTTCTGCACACCTGGG
ATGGTGATGTCCATCTACACGCTGCTCAGGAACCACCCAGAGCCCACTCTGGATCAGTTA
ACTGATGCCCTTGGTGGTAACCTGTGCCGTTGCACTGGATACAGGCCCATAATTGATGCA
TGCAAGACTTTCTGTAAAACTTCGGGCTGCTGTCAAAGTAAAGAAAATGGGGTTTGCTGT
TTGGATCAAGGAATCAATGGATTGCCAGAATTTGAGGAAGGAAGTAAGACAAGTCCAAAA
CTCTTCGCAGAAGAGGAGTTTCTGCCATTGGATCCAACCCAGGAACTGATATTTCCTCCT
GAGCTAATGATAATGGCTGAGAAACAGTCGCAAAGGACCAGGGTGTTTGGCAGTGAGAGA
ATGATGTGGTTTTCCCCCGTGACCCTGAAGGAACTGCTGGAATTTAAATTCAAGTATCCC
CAGGCTCCTGTTATCATGGGAAACACCTCTGTGGGGCCTGAAGTGAAATTTAAAGGCGTC
TTTCACCCAGTTATAATTTCTCCTGATAGAATTGAAGAACTGAGTGTTGTAAACCATGCA
TATAATGGACTCACCCTTGGTGCTGGTCTCAGCCTAGCCCAGGTGAAGGACATTTTGGCT
GATGTAGTCCAGAAGCTTCCAGAGGAGAAGACACAGATGTACCATGCTCTCCTGAAGCAT
TTGGGAACTCTGGCTGGGTCCCAGATCAGGAACATGGCTTCTTTAGGGGGACACATCATT
AGCAGGCATCCAGATTCAGATCTGAATCCCATCCTGGCTGTGGGTAACTGTACCCTCAAC
TTGCTATCAAAAGAAGGAAAACGACAGATTCCTTTAAATGAGCAATTCCTCAGCAAGTGC
CCTAATGCAGATCTTAAGCCTCAAGAAATCTTGGTCTCAGTGAACATCCCCTACTCAAGG
AAGTGGGAATTTGTGTCAGCCTTCCGACAAGCCCAGCGACAGGAGAATGCGCTAGCGATA
GTCAATTCAGGAATGAGAGTCTTTTTTGGAGAAGGGGATGGCATTATTAGAGAGTTATGC
ATCTCATATGGAGGCGTTGGTCCAGCCACCATCTGTGCCAAGAATTCCTGCCAGAAACTC
ATTGGAAGGCACTGGAACGAACAGATGCTGGATATAGCCTGCAGGCTTATTCTGAATGAA
GTCTCCCTTTTGGGCTCGGCGCCAGGTGGGAAAGTGGAGTTCAAGAGGACTCTCATCATC
AGCTTCCTCTTCAAGTTCTACCTGGAAGTGTCACAGATTTTGAAAAAGATGGATCCAGTT
CACTATCCTAGCCTTGCAGACAAGTATGAAAGTGCTTTAGAAGATCTTCATTCCAAACAT
CACTGCAGTACATTAAAGTACCAGAATATAGGCCCAAAGCAGCATCCTGAAGACCCAATT
GGCCACCCCATCATGCATCTGTCTGGTGTGAAGCATGCCACGGGGGAGGCCATCTACTGT
GATGACATGCCTCTGGTGGACCAGGAACTTTTCTTGACTTTTGTGACTAGTTCAAGAGCT
CATGCTAAGATTGTGTCTATTGATCTGTCAGAAGCTCTCAGCATGCCCGGTGTGGTGGAC
ATCATGACAGCAGAACATCTTAGTGACGTCAACTCCTTCTGCTTTTTTACTGAAGCTGAG
AAATTTCTGGCGACAGATAAGGTGTTCTGTGTGGGTCAGCTTGTCTGTGCTGTGCTTGCC
GATTCTGAGGTTCAGGCAAAGCGAGCTGCTAAGCGAGTGAAGATTGTCTATCAAGACTTG
GAGCCGCTGATACTAACAATTGAGGAAAGTATACAACACAACTCCTCCTTCAAGCCAGAA
AGGAAACTGGAATATGGAAATGTTGACGAAGCATTTAAAGTGGTTGATCAAATTCTTGAA
GGTGAAATACATATGGGAGGTCAAGAACATTTTTATATGGAAACCCAAAGCATGCTTGTC
GTTCCCAAGGGAGAGGATCAAGAAATGGATGTCTACGTGTCCACACAGTTTCCCAAATAT
ATACAGGACATTGTTGCCTCAACCTTGAAGCTCCCAGCTAACAAGGTCATGTGCCATGTA
AGGCGTGTTGGTGGAGCGTTTGGAGGGAAGGTGTTAAAAACCGGAATCATTGCAGCCGTC
ACTGCATTTGCCGCAAACAAACATGGCCGTGCAGTTCGCTGTGTTCTGGAACGAGGAGAA
GACATGTTAATAACTGGAGGCCGCCATCCTTACCTTGGAAAGTACAAAGCTGGATTCATG
AACGATGGCAGAATCTTGGCCCTGGACATGGAGCATTACAGCAATGCAGGCGCCTCCTTG
GATGAATCATTATTCGTGATAGAAATGGGACTTCTGAAAATGGACAATGCTTACAAGTTT
CCCAATCTCCGCTGCCGGGGTTGGGCATGCAGAACCAACCTTCCATCCAACACAGCTTTT
CGTGGGTTTGGCTTTCCTCAGGCAGCGCTGATCACCGAATCTTGTATCACGGAAGTTGCA
GCCAAATGTGGACTATCCCCTGAGAAGGTGCGAATCATAAACATGTACAAGGAAATTGAT
CAAACACCCTACAAACAAGAGATCAATGCCAAGAACCTAATCCAGTGTTGGAGAGAATGT
ATGGCCATGTCTTCCTACTCCTTGAGGAAAGTTGCTGTGGAAAAGTTCAATGCAGAGAAT
TATTGGAAGAAGAAAGGACTGGCCATGGTCCCCCTGAAGTTTCCTGTTGGCCTTGGCTCA
CGTGCTGCTGGTCAGGCTGCTGCCTTGGTTCACATTTATCTTGATGGCTCTGTGCTGGTC
ACTCACGGTGGAATTGAAATGGGGCAGGGGGTCCACACTAAAATGATTCAGGTGGTCAGC
CGTGAATTAAGAATGCCAATGTCGAATGTCCACCTGCGTGGAACAAGCACAGAAACTGTC
CCTAATGCAAATATCTCTGGAGGTTCTGTGGTGGCAGATCTCAACGGTTTGGCAGTAAAG
GATGCCTGTCAAACTCTTCTAAAACGCCTCGAACCCATCATCAGCAAGAATCCTAAAGGA
ACTTGGAAAGACTGGGCACAGACTGCTTTTGATGAAAGCATTAACCTTTCAGCTGTTGGA
TACTTCAGAGGTTATGAGTCAGACATGAACTGGGAGAAAGGCGAAGGCCAGCCCTTCGAA
TACTTTGTTTATGGAGCTGCCTGTTCCGAGGTTGAAATAGACTGCCTGACGGGGGATCAT
AAGAACATCAGAACAGACATTGTCATGGATGTTGGCTGCAGTATAAATCCAGCCATTGAC
ATAGGCCAGATTGAAGGTGCATTTATTCAAGGCATGGGACTTTATACAATAGAGGAACTG
AATTATTCTCCCCAGGGCATTCTGCACACTCGTGGTCCAGACCAATATAAAATCCCTGCC
ATCTGTGACATGCCCACGGAGTTGCACATTGCTTTGTTGCCTCCTTCTCAAAACTCAAAT
ACTCTTTATTCATCTAAGGGTCTGGGAGAGTCGGGGGTGTTCCTGGGGTGTTCCGTGTTT
TTCGCTATCCATGACGCAGTGAGTGCAGCACGACAGGAGAGAGGCCTGCATGGACCCTTG
ACCCTTAATAGTCCACTGACCCCGGAGAAGATTAGGATGGCCTGTGAAGACAAGTTCACA
AAAATGATTCCGAGAGATGAACCTGGATCCTACGTTCCTTGGAATGTACCCATCTGA

Clone variation with respect to NM_001159.3
>OriGene 5' read for NM_001159 unedited
GGGTTTGCGNATTTTGTAATACGACTCACTATAGGGCGGCCGCGAATTCGGCACGAGGTC
TTCATCTTCGCCGGATGATTTCCGCCCACATAGAGGGCGCCAGTGACGCCCACACACGTG
CTGGTGTCCCGGGAAGAGTTCCTGGCAAAGAGCTCAGGAACGTTGGATCTTAATCAAGGC
TTTCTCCGTCGGGGTGGATGGGTTGGACTTTAGGCTCCAGCAAGCCCCGCCCCACTCGGC
GGGTCGGTGCCGCCGGGTCCCAGGTGCCCGCTACTTCCCAGAACCTCCGCCTCCCGCTCC
GGGCCCTCGAACCAGCGCGGACACCACAATGGACCGGGCGTCCGAGCTGCTCTTCTACGT
GAACGGCCGCAAGGTGATAGAAAAAAATGTCGATCCTGAAACAATGCTGTTGCCTTATTT
GAGGAAGAAGCTTCGACTCACAGGAACTAAGTATGGCTGTGGAGGAGGAGGCTGTGGTGC
TTGTACAGTGATGATATCACGATACAACCCCATCACCAAGAGGATAAGGCATCACCCAGC
CAATGCCTGTCTGATTCCCATCTGTTCTCTGTATGGTGCTGCCGTCACCACAGTAGAAGG
CATAGGAAGCACCCACACCAGAATTCATCCTGTTCAGGAGAGGATTGCCAAGTGTCATGG
CACCCAGTGTGGCTTCTGCACACCTGGGATGGTGATGTCCATCTACACGCTGCTCAGGAA
CCACCCAGAGCCCACTCTGGATCAGTTAACTGATGCCCTTGGTGTAACCTGTGCCGTTGC
ACTGGATCAGGCCCATAATTGATGCATGCAAGACTTTCTGTNAAACTTCGGGCTGCTGTC
AAAGTAAAGAAAAGGGGCTTTGCTGTTTGGATCAAGGATCCAATGGATTGCCAGAATTTG
AGGAAGGAAGTAAGACAAGTCCATACTCT
>OriGene 3' read for NM_001159 unedited
CTTGGACGCGGCCGCAATCTAGNAGTCGAGTTTTTTTTTTTTTTTTTTTTTTTTCATATT
AGAAATGAAATTATTTAAAAAATTGCCTTTCACTATATGGTATAATTTCTGTTGGGGGAT
AGAAGCCAAGTAGGAGTCACATGCAAGTCATCACCTATTCCATTTAGCTGGATGGATTGA
AGAGACAGAGTAATGACGAATATCACCCTAGAGGAAACCAATTAGTGTTTATAACATTGA
AAATGATTTATAGATTGCTTAAGCATATCTATCAAATCTAAATGGAATACTTTAAATCAG
CTCCATAGAAAAGCAACACTGTGGGATGATTTCTGAACTGTGGAAACTCTGTCTTTCAAA
TCTAGCATCTTCCAGCACAGAGATAGGACAGATTGCCATCTGGGAAGAGGCACTCTGTTT
TCTCCAAAAGTTTGCATTTGATTCAGATGGGTACATTCCAAGGAACGTAGGATCCAGGTT
CATCTCTCGGAATAATTCTTGTGAACTTGTCTTCACAGGCCATCCTAATCTTCTCCGGGG
TCAGTGGACTATTAAGGGTCAAGGGTCCATGCAGGCCTTTTTCCCTGACCGGCTGCATTC
ACTGCGTCATGGATAGTCAAAAACACGGAACACTCTACGAACACCCTCGCCTTTCCCATA
CTCTCAAATTAACAAGAATTTTTCCGAGTTCTTCCACGCGTGTCTCATACTCAGTTCTCC
ACTCCCATGGTACCCCCCCTTCTGGTTCGCCATTTTCTTTTTGTTCTGGGCCCGTAAGCG
GTTCCCACTGCGTCATTCGTTCCCTTAATCCCATCCCCCCCGCCGGTTTTACCGCCCATC
TCCTTTCTTCACATTCCCATCTCTATTCGCTCTCTACTCCCCCCTCCTTTCTCACCCTCC
CCACCCACTGTATTATTATACTCTCCTTCTCCTCCCCCTCCTTCCACTCCCACTCACCTA
TTTTTACCCCATTCCACGCACACTCTATCCCTTATACCTACTCCCA
Restriction Sites NotI-NotI     
ACCN NM_001159
ORF Size 4017 bp
Insert Size 4640
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_001159.3, NP_001150.3
RefSeq Size 4949
RefSeq ORF 4017
Locus ID 316
Domains Ald_Xan_dh_C, fer2, FAD_binding_5, fer2_2, CO_deh_flav_C
Protein Families Druggable Genome
Protein Pathways Drug metabolism - cytochrome P450, Metabolic pathways, Nicotinate and nicotinamide metabolism, Tryptophan metabolism, Tyrosine metabolism, Valine, leucine and isoleucine degradation, Vitamin B6 metabolism
Gene Summary Aldehyde oxidase produces hydrogen peroxide and, under certain conditions, can catalyze the formation of superoxide. Aldehyde oxidase is a candidate gene for amyotrophic lateral sclerosis. [provided by RefSeq, Jul 2008]

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