Target intelligence / Profile preview

3'-phosphoadenosine 5'-phosphosulfate synthase 1 (PAPSS1)

Target
PAPSS1
Molecular classification
Enzyme, Nucleotidyltransferase (ATP sulfurylase domain), Kinase (APS kinase domain)
01

Overview

3'-phosphoadenosine 5'-phosphosulfate synthase 1 (PAPSS1) is a bifunctional enzyme critical for generating the universal sulfate donor, 3'-phosphoadenosine 5'-phosphosulfate (PAPS), in metazoans. It catalyzes two sequential reactions: first, the ATP sulfurylase domain combines ATP and inorganic sulfate to form adenosine 5'-phosphosulfate (APS); second, the APS kinase domain phosphorylates APS to yield PAPS. PAPS is then utilized by all cellular sulfotransferases for the modification of hormones, drugs, components of the extracellular matrix, and other biomolecules. PAPSS1 is expressed in multiple tissues, including testis, pancreas, kidney, liver, and endothelial cells, and is required for normal biosynthesis of sulfated L-selectin ligands. Genetic defects in related sulfate activation pathways are associated with skeletal and metabolic disorders, although PAPSS2 is more closely tied to known pathologies. No targeted therapies against PAPSS1 are currently available, but any pharmacologic intervention would carry risks related to impaired sulfation metabolism.

Other names
Bifunctional 3'-phosphoadenosine 5'-phosphosulfate synthase 1Sulfate adenylyltransferaseAdenylyl-sulfate kinasePAPS synthase 1SK1SATATP-sulfurylaseSulfate adenylate transferase3'-phosphoadenosine-5'-phosphosulfate synthaseAPS kinaseAdenosine-5'-phosphosulfate 3'-phosphotransferaseAdenylylsulfate 3'-phosphotransferaseSulfurylase kinase 1
02

Mechanism of action

Not applicable (as no approved drugs directly target PAPSS1). In principle, inhibitors would block PAPS synthesis and impair cellular sulfation capacity, affecting downstream sulfotransferases.

03

Biological functions

Sulfate activation (formation of PAPS)Sulfation of biomoleculesDrug and hormone metabolismBiosynthesis of sulfated L-selectin ligands
04

Disease associations

Congenital skeletal disorders (such as achondrogenesis type Ib, spondyloepiphyseal dysplasia)Potentially implicated in cancer and hormone disorders (evidence stronger for the paralog PAPSS2, but disruption of sulfation pathways links to multiple disease types)
05

Safety considerations

Broad inhibition or mutation could disrupt essential sulfate activation, potentially affecting extracellular matrix composition, hormone function, and xenobiotic metabolism; these may result in developmental defects or systemic metabolic issues.
06

Interacting drugs

None directly reported; no approved or investigational drugs specifically target PAPSS1 identified in curated resources. (Sulfation pathway modulators may influence related enzymes, but specific direct PAPSS1 modulators are not established.)
07

Biomarkers

No clinically established biomarkers for patient selection or efficacy monitoring are reported for PAPSS1.

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