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Inorganic pyrophosphatase (human cytosolic isoform, PPA1) (PPase (for the general enzyme); In humans, the canonical gene symbol is PPA1)

Target
PPase (for the general enzyme); In humans, the canonical gene symbol is PPA1
Molecular classification
Enzyme (hydrolase superfamily, EC 3.6.1.1), Soluble pyrophosphatase (sPPase, e.g., PPA1), Sometimes classified as proton-pumping pyrophosphatase (membrane-bound, in plants and microbes)
01

Overview

Inorganic pyrophosphatase (PPase) is an enzyme found in all domains of life, catalyzing the hydrolysis of inorganic pyrophosphate (PPi) into two orthophosphate (Pi) ions, a reaction essential for driving many biosynthetic processes to completion. In humans, two major isoforms exist: PPA1 (cytosolic/housekeeping) and PPA2 (mitochondrial). PPA1 is essential for growth, metabolism, and development, and is upregulated in multiple cancer types, supporting cell proliferation, migration, and survival. Apart from its core metabolic function, PPA1 can dephosphorylate JNK1, linking it to cell signaling pathways relevant to oncogenesis. Inhibitors of PPase are being explored as anti-cancer and anti-parasitic agents. Safety concerns stem from the enzyme's universality and fundamental metabolic role, necessitating selective targeting for therapeutic purposes. No clinically approved drugs or treatments directly modulate human PPase yet, but experimental inhibitors are under study.

Other names
Inorganic diphosphatasePPasePyrophosphatase(human cytosolic isoform: PPA1)Sometimes distinguished as membrane pyrophosphatase, soluble pyrophosphatase or cytosolic pyrophosphatase, but these are subtypes/families
02

Mechanism of action

Direct enzymatic inhibition to reduce PPi hydrolysis, leading to accumulation and cellular metabolic disruption. In cancer, inhibition of PPA1 promotes apoptosis and reduces proliferation. In parasites, disruption of PPase impairs energy balance and survival.

03

Biological functions

Hydrolysis of inorganic pyrophosphate (PPi) to orthophosphate (Pi), ensuring metabolic reactions proceed irreversiblyRegulation of phosphate homeostasisDrives biosynthetic reactions by removing PPi (nucleotide, protein, lipid biosynthesis)Promotes cell growth, proliferation, and survivalIn humans, modulates signaling pathways (e.g., via JNK1 dephosphorylation)
04

Disease associations

Cancer (upregulation promotes proliferation, invasion, and metastasis)Metabolic disorders (e.g., excessive PPi accumulation causes disease)Potential target in parasitic infections (e.g., some parasites rely on PPase function)
05

Safety considerations

PPase is ubiquitous and essential; systemic inhibition risks global metabolic disruption, cytotoxicity, and off-target effectsPotential risk to normal cell growth if non-selective inhibitors used
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Interacting drugs

No approved drugs directly targeting human inorganic pyrophosphatase, but inhibitors include inorganic fluoride (NaF), which inhibits PPase activity

3 more in the full profile.

07

Biomarkers

PPA1 protein expression (biomarker for multiple human cancers; higher levels correlate with malignancy)PPi levels as potential metabolic biomarkers

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