Mus musculus Gene: Pnpo
Summary
InnateDB Gene IDBG-210075.6
Last Modified 2014-10-13 [Report errors or provide feedback]
Gene Symbol Pnpo
Gene Name pyridoxine 5'-phosphate oxidase
Synonyms AI415282
Species Mus musculus
Ensembl Gene ENSMUSG00000018659
Encoded Proteins
pyridoxine 5'-phosphate oxidase
pyridoxine 5'-phosphate oxidase
Protein Structure
Useful resources Stemformatics EHFPI ImmGen
Entrez Gene
Summary This gene does not have any Entrez summary - the following is the summary from its human ortholog ENSG00000108439:
The enzyme encoded by this gene catalyzes the terminal, rate-limiting step in the synthesis of pyridoxal 5'-phosphate, also known as vitamin B6. Vitamin B6 is a required co-factor for enzymes involved in both homocysteine metabolism and synthesis of neurotransmitters such as catecholamine. Mutations in this gene result in pyridoxamine 5'-phosphate oxidase (PNPO) deficiency, a form of neonatal epileptic encephalopathy. [provided by RefSeq, Oct 2008]
Gene Information
Type Protein coding
Genomic Location Chromosome 11:96937825-96943986
Strand Reverse strand
Band D
Transcripts
ENSMUST00000018803 ENSMUSP00000018803
ENSMUST00000107629 ENSMUSP00000103255
ENSMUST00000153896
Interactions
Number of Interactions This gene and/or its encoded proteins are associated with 0 experimentally validated interaction(s) in this database.
They are also associated with 4 interaction(s) predicted by orthology.
Predicted by orthology
Total 4 [view]
Gene Ontology

Molecular Function
Accession GO Term
GO:0004733 pyridoxamine-phosphate oxidase activity
GO:0010181 FMN binding
GO:0016491 oxidoreductase activity
GO:0016638 oxidoreductase activity, acting on the CH-NH2 group of donors
Biological Process
GO:0008615 pyridoxine biosynthetic process
GO:0042823 pyridoxal phosphate biosynthetic process
GO:0055114 oxidation-reduction process
Cellular Component
GO:0005575 cellular_component
GO:0070062 extracellular vesicular exosome
Orthologs
Species
Homo sapiens
Bos taurus
Gene ID
Gene Order
Not yet available
Pathways
NETPATH
REACTOME
Defective LMBRD1 causes methylmalonic aciduria and homocystinuria type cblF pathway
Disease pathway
Metabolism pathway
Defective AMN causes hereditary megaloblastic anemia 1 pathway
Defective GIF causes intrinsic factor deficiency pathway
Defective MMAA causes methylmalonic aciduria type cblA pathway
Defective MMACHC causes methylmalonic aciduria and homocystinuria type cblC pathway
Defective MMADHC causes methylmalonic aciduria and homocystinuria type cblD pathway
Defective CD320 causes methylmalonic aciduria pathway
Defective MUT causes methylmalonic aciduria mut type pathway
Defects in biotin (Btn) metabolism pathway
Defective BTD causes biotidinase deficiency pathway
Defective MMAB causes methylmalonic aciduria type cblB pathway
Defective MTR causes methylmalonic aciduria and homocystinuria type cblG pathway
Defective MTRR causes methylmalonic aciduria and homocystinuria type cblE pathway
Defective CUBN causes hereditary megaloblastic anemia 1 pathway
Metabolism of vitamins and cofactors pathway
Metabolism of water-soluble vitamins and cofactors pathway
Defects in vitamin and cofactor metabolism pathway
Defects in cobalamin (B12) metabolism pathway
Defective TCN2 causes hereditary megaloblastic anemia pathway
Vitamins B6 activation to pyridoxal phosphate pathway
Defective HLCS causes multiple carboxylase deficiency pathway
KEGG
Vitamin B6 metabolism pathway
INOH
PID NCI
Pathway Predictions based on Human Orthology Data
NETPATH
REACTOME
Vitamins B6 activation to pyridoxal phosphate pathway
Defective HLCS causes multiple carboxylase deficiency pathway
Defective MUT causes methylmalonic aciduria mut type pathway
Defective MMAA causes methylmalonic aciduria type cblA pathway
Defective TCN2 causes hereditary megaloblastic anemia pathway
Metabolism of water-soluble vitamins and cofactors pathway
Defective AMN causes hereditary megaloblastic anemia 1 pathway
Defective MTR causes methylmalonic aciduria and homocystinuria type cblG pathway
Defective LMBRD1 causes methylmalonic aciduria and homocystinuria type cblF pathway
Defective CD320 causes methylmalonic aciduria pathway
Defects in cobalamin (B12) metabolism pathway
Defective MMACHC causes methylmalonic aciduria and homocystinuria type cblC pathway
Defects in biotin (Btn) metabolism pathway
Defective BTD causes biotidinase deficiency pathway
Defective GIF causes intrinsic factor deficiency pathway
Defects in vitamin and cofactor metabolism pathway
Defective CUBN causes hereditary megaloblastic anemia 1 pathway
Defective MMADHC causes methylmalonic aciduria and homocystinuria type cblD pathway
Defective MTRR causes methylmalonic aciduria and homocystinuria type cblE pathway
Metabolism pathway
Defective MMAB causes methylmalonic aciduria type cblB pathway
Disease pathway
Metabolism of vitamins and cofactors pathway
Defective GIF causes intrinsic factor deficiency pathway
Defects in cobalamin (B12) metabolism pathway
Defective MUT causes methylmalonic aciduria mut type pathway
Defective MMAA causes methylmalonic aciduria type cblA pathway
Defects in vitamin and cofactor metabolism pathway
Defects in biotin (Btn) metabolism pathway
Defective MMADHC causes methylmalonic aciduria and homocystinuria type cblD pathway
Defective TCN2 causes hereditary megaloblastic anemia pathway
Defective HLCS causes multiple carboxylase deficiency pathway
Defective MMACHC causes methylmalonic aciduria and homocystinuria type cblC pathway
Defective BTD causes biotidinase deficiency pathway
Defective MTRR causes methylmalonic aciduria and homocystinuria type cblE pathway
Defective CD320 causes methylmalonic aciduria pathway
Metabolism of water-soluble vitamins and cofactors pathway
Metabolism of vitamins and cofactors pathway
Defective LMBRD1 causes methylmalonic aciduria and homocystinuria type cblF pathway
Metabolism pathway
Defective MMAB causes methylmalonic aciduria type cblB pathway
Vitamins B6 activation to pyridoxal phosphate pathway
Defective CUBN causes hereditary megaloblastic anemia 1 pathway
Disease pathway
Defective AMN causes hereditary megaloblastic anemia 1 pathway
Defective MTR causes methylmalonic aciduria and homocystinuria type cblG pathway
KEGG
Vitamin B6 metabolism pathway
INOH
Vitamin B6 metabolism pathway
PID NCI
Cross-References
SwissProt
TrEMBL
UniProt Splice Variant
Entrez Gene
UniGene Mm.254704 Mm.446659
RefSeq NM_134021
OMIM
CCDS CCDS25308
HPRD
IMGT
MGI ID
MGI Symbol
EMBL
GenPept
RNA Seq Atlas