Skip Navigation Links Home » Resources » Gene Detail

ACMSD, aminocarboxymuconate semialdehyde decarboxylase

Matching ORF Clones

    No catalog ORF clones available (link to the custom ORF request form)

Request a Custom Clone

Don't see what you need?

Request My Custom Clone »
  • Gene Overview
  • Interaction Network
  • Sequence Verification

ACMSD, aminocarboxymuconate semialdehyde decarboxylase

  • The neuronal excitotoxin quinolinate is an intermediate in the de novo synthesis pathway of NAD from tryptophan, and has been implicated in the pathogenesis of several neurodegenerative disorders. Quinolinate is derived from alpha-amino-beta-carboxy-muconate-epsilon-semialdehyde (ACMS). ACMSD (ACMS decarboxylase; EC 4.1.1.45) can divert ACMS to a benign catabolite and thus prevent the accumulation of quinolinate from ACMS.[supplied by OMIM, Oct 2004]

  • Gene Synonyms (2-amino-3-carboxymuconate-6-semialdehyde decarboxylase, picolinate carboxylase,)
  • NCBI Gene ID: 130013
  • Species: Homo sapiens (Human)
  • UNIPROT ID#>>A0A0S2Z681
    UNIPROT ID#>>Q8TDX5
    UNIPROT ID#>>Q6ZV40
  • View the NCBI Database for this Gene »

The information on this page was collected from publicly accessible databases, and is periodically updated. Promega makes no claims to accuracy, or ownership of these genes.

Gene products are often involved in multiple pathways and networks within a living cell. Learn more about other interacting partners.

aminocarboxymuconate semialdehyde decarboxylase interacts with:

The information on this page was collected from publicly accessible databases, and is periodically updated. Promega makes no claims to accuracy, or ownership of these genes.

Paste a protein or nucleic acid sequence in the box below to confirm that it matches this gene’s reference sequence(s). Click on a link under RELATED ORF CLONES to see how a sequence matches to an experimentally-validated ORF clone.

The information on this page was collected from publicly accessible databases, and is periodically updated. Promega makes no claims to accuracy, or ownership of these genes.

It appears that you have Javascript disabled. Our website requires Javascript to function correctly. For the best browsing experience, please enable Javascript.