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Protein disulfide-isomerase A4–NADH:ubiquinone oxidoreductase core subunit S3 protein–protein interface (PDIA4–NDUFS3 interface)

Target
PDIA4–NDUFS3 interface
Molecular classification
Protein-protein interface, Enzyme, Chaperone, Mitochondrial complex I subunit
01

Overview

The Protein disulfide-isomerase A4 (PDIA4)–NADH:ubiquinone oxidoreductase core subunit S3 (NDUFS3) protein–protein interface is a critical regulatory junction that links endoplasmic reticulum (ER) stress to mitochondrial dysfunction (Kuo et al., 2020, Nature Communications). PDIA4 is an ER-resident chaperone that is significantly upregulated under metabolic stress, such as chronic hyperglycemia or obesity (UniProt P13667). In these pathological states, PDIA4 interacts with NDUFS3, a key subunit of mitochondrial Complex I, leading to its inhibition and subsequent degradation (Kuo et al., 2020). This interaction results in impaired mitochondrial respiration and excessive production of reactive oxygen species (ROS), which drives pancreatic beta-cell failure and contributes to the pathogenesis of type 2 diabetes (PubMed 32415110). Furthermore, this interface has been implicated in cancer cell survival, where PDIA4 helps modulate the redox environment to resist apoptosis (UniProt O75489). Small molecule inhibitors like CCF642 have been developed to target PDIA4, effectively disrupting this interaction and restoring mitochondrial function in preclinical models (PubChem CID 118705455). Consequently, the PDIA4–NDUFS3 interface is an emerging target for treating metabolic disorders and potentially certain types of cancer.

Other names
PDIA4-NDUFS3 interactionERP72-NDUFS3 interactionProtein disulfide-isomerase A4 and NADH:ubiquinone oxidoreductase core subunit S3 complex
02

Mechanism of action

Disruption of the PDIA4-NDUFS3 interaction to restore mitochondrial Complex I activity and reduce reactive oxygen species-mediated cellular damage.

03

Biological functions

Mitochondrial respirationReactive oxygen species regulationProtein foldingApoptosisGlucose homeostasis
04

Disease associations

Type 2 diabetes mellitusCancerObesityNonalcoholic fatty liver disease
05

Safety considerations

Potential for systemic mitochondrial toxicity due to Complex I modulationRisk of disrupting essential ER proteostasis and chaperone functions of PDIA4Off-target effects on other protein disulfide isomerase (PDI) family members
06

Interacting drugs

CCF642
07

Biomarkers

PDIA4 expression levelsNDUFS3 protein stabilityMitochondrial reactive oxygen species (ROS) levelsFasting blood glucose

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