The serine protease DPP9 and the redox sensor KEAP1 form a mutually inhibitory complex Journal Article


Authors: Tsamouri, L. P.; Hsiao, J. C.; Bachovchin, D. A.
Article Title: The serine protease DPP9 and the redox sensor KEAP1 form a mutually inhibitory complex
Abstract: Synthetic inhibitors of the serine protease DPP9 activate the related NLRP1 and CARD8 inflammasomes and stimulate powerful innate immune responses. Thus, it seems plausible that a biomolecule similarly inhibits DPP9 and triggers inflammasome activation during infection, but one has not yet been discovered. Here, we wanted to identify and characterize DPP9-binding proteins to potentially uncover physiologically relevant mechanisms that control DPP9’s activity. Notably, we found that the redox sensor protein KEAP1 binds to DPP9 in an inactive conformation and stabilizes this non-native fold. At the same time, this inactive form of DPP9 reciprocally inhibits the ability of KEAP1 to bind to and degrade the transcription factor NRF2, thereby inducing an antioxidant response. Although we discovered several experimental conditions, for example new protein expression and chemical denaturation, that force DPP9 out of its folded dimeric state and into a KEAP1-binding state, the key danger-related stimulus that causes this critical DPP9 conformational change is not yet known. Regardless, our data now reveal that an endogenous DPP9 inhibition mechanism does in fact exist, and moreover that DPP9, like the other NLRP1 regulator thioredoxin-1, is directly coupled to the intracellular redox potential. Overall, we expect this work will provide the foundation to discover additional biomolecules that regulate DPP9’s activity, the DPP9-KEAP1 interaction, the intracellular redox environment, and the NLRP1 and CARD8 inflammasomes. © 2024 The Authors
Keywords: clinical article; controlled study; protein expression; human cell; mass spectrometry; infection; carboxy terminal sequence; interleukin 1beta; protein interaction; immune response; serine proteinase; amino terminal sequence; immunoblotting; innate immunity; crystal structure; antioxidant; alkylation; biomolecules; interleukin 18; chemical activation; conformations; inhibition; protease; transcription factor nrf2; pyroptosis; inflammasome; redox; serine protease; redox reactions; kelch like ech associated protein 1; proteotoxic stress; human; article; nrf2; keap1; nlrp1; card8; dpp9; thioredoxin 1
Journal Title: Journal of Biological Chemistry
Volume: 301
Issue: 1
ISSN: 0021-9258
Publisher: American Society for Biochemistry and Molecular Biology  
Date Published: 2025-01-01
Start Page: 108034
Language: English
DOI: 10.1016/j.jbc.2024.108034
PUBMED: 39615677
PROVIDER: scopus
PMCID: PMC11773481
DOI/URL:
Notes: Article -- MSK Cancer Center Support Grant (P30 CA008748) acknowledged in PubMed and PDF -- MSK corresponding author is Daniel Bachovchin -- Source: Scopus
Altmetric
Citation Impact
BMJ Impact Analytics
MSK Authors