Basic information
- Full name
- molybdenum cofactor sulfurase
- Ensembl
- ENSG00000075643.6
- Summary
- This gene encodes an enzyme that sulfurates the molybdenum cofactor which is required for activation of the xanthine dehydrogenase (XDH) and aldehyde oxidase (AO) enzymes. XDH catalyzes the conversion of hypoxanthine to uric acid via xanthine, as well as the conversion of allopurinol to oxypurinol, and pyrazinamide to 5-hydroxy pyrazinamide. Mutations in this gene cause the metabolic disorder classical xanthinuria type II which is characterized by the loss of XDH/XO and AO enzyme activity, decreased levels of uric acid in the urine, increased levels of xanthine and hypoxanthine in the serum and urine, formation of xanthine stones in the urinary tract, and myositis due to tissue deposition of xanthine. [provided by RefSeq, Apr 2017]
Protein product
- ENST00000261326.6 Primary ENSP00000261326.4 (3 phosphosites)
Phosphosites on the primary protein product
Tumor and normal comparison
Signed p-values | |||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|
Data type | Meta P | BRCA | CCRCC | COAD | GBM | HNSCC | LSCC | LUAD | OV | PDAC | UCEC |
mRNA expression at gene level
Protein expression
Phenotype and mutation association
Manhattan plot summarizing associations of phenotypes and mutations across all cohorts and omics data types
Associations of the protein abundance of MOCOS with phenotypes and mutations
Signed p-values | |||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|
Phenotype | Meta P | BRCA | CCRCC | COAD | GBM | HNSCC | LSCC | LUAD | OV | PDAC | UCEC |
Cis-association
Associations between omics data of MOCOS
Trans-association
Associations of the protein abundance of MOCOS and the protein abundance of other genes
Signed p-values | |||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|
Gene | Meta P | BRCA | CCRCC | COAD | GBM | HNSCC | LSCC | LUAD | OV | PDAC | UCEC |
Gene set enrichment analysis
Submit genes and the common logarithm of the p-values of their association with to WebGestalt.