Protein / target
Serine protease HTRA2, mitochondrial
Protein at a glance
Biological role
Protein serine/threonine kinase inhibitor
Strongest disease association
Neutropenia
Research activity
Emerging research
Derived from structured UniProt, Open Targets and literature data on this page.
Protein profile
Canonical identity and biological annotation from UniProt.
Function overview
Serine protease that shows proteolytic activity against a non-specific substrate beta-casein.
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Serine protease that shows proteolytic activity against a non-specific substrate beta-casein (PubMed:10873535). Promotes apoptosis by either relieving the inhibition of BIRC proteins on caspases, leading to an increase in caspase activity; or by a BIRC inhibition-independent, caspase-independent and serine protease activity-dependent mechanism (PubMed:15200957). Cleaves BIRC6 and relieves its inhibition on CASP3, CASP7 and CASP9, but it is also prone to inhibition by BIRC6 (PubMed:36758104, PubMed:36758105). Cleaves THAP5 and promotes its degradation during apoptosis (PubMed:19502560)
Subcellular location
Domains and Gene Ontology detail (46)Hide
Domains & features
Gene Ontology
- CCD40 receptor complex
- Cchromatin
- Ccytoplasmic side of plasma membrane
- Ccytoskeleton
- Ccytosol
- Cendoplasmic reticulum
- Cendoplasmic reticulum membrane
- Cmembrane
- Cmitochondrial intermembrane space
- Cmitochondrial membrane
- Cmitochondrion
- Cnucleus
Biological roles
What this protein does, drawn together from its UniProt function, Gene Ontology terms and Reactome pathways.
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Proteolysis
- ·Serine protease that shows proteolytic activity against a non-specific substrate beta-ca…
- ·peptidase activity
- ·serine-type endopeptidase activity
- ·serine-type peptidase activity
Apoptosis & cell death
- ·Serine protease that shows proteolytic activity against a non-specific substrate beta-ca…
- ·negative regulation of neuron apoptotic process
- ·neuron apoptotic process
- ·positive regulation of apoptotic process
Concepts derived from UniProt GO Reactome — each badge above shows which sources supported that role.
Translational evidence
Why this target matters therapeutically, strongest evidence first. Disease associations are gene-level (via the gene that encodes this protein) and open into the full confidence synthesis; the development universe, tractability and safety annotations are target-level, from Open Targets.
Strongest disease associations · via encoding gene HTRA2
Gene-level evidence surfaced through the gene HTRA2 that encodes this protein — not a direct protein–disease relationship. Ranked by Forefront's causal-directness weighting, so genetically- and clinically-evidenced diseases lead over ones that merely share the literature.
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The evidence agreement range shows how closely the independent evidence families agree — it is not a statistical confidence interval, and nothing here is fitted to outcome data. Derived from Open Targets evidence types under Forefront weighting; the per-type scores above show the calculation.
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Tractability
Antibodies — Emerging
Protein degraders — Emerging
View underlying tractability evidence (5)Hide
Raw Open Targets tractability assessment buckets, by modality.
Research activity
Papers linked directly to this protein. This is the protein's own literature — descriptor-derived papers are kept separate below.
Most cited
Recent
Europe PMC papers linked directly to this protein.