Discovery of natural product derivative triptolidiol as a direct NLRP3 inhibitor by reducing K63‐specific ubiquitination

Author:

Ding Mo‐Yu1ORCID,Ning Chengqing2ORCID,Chen Shao‐Ru1ORCID,Yin Hao‐Ran1ORCID,Xu Jing2ORCID,Wang Ying134ORCID

Affiliation:

1. Institute of Chinese Medical Sciences and State Key Laboratory of Quality Research in Chinese Medicine University of Macau Macao SAR China

2. SUSTech Academy for Advanced Interdisciplinary Studies and Department of Chemistry, and Shenzhen Grubbs Institute Southern University of Science and Technology Shenzhen China

3. Department of Pharmaceutical Sciences, Faculty of Health Science University of Macau Macao SAR China

4. Minister of Education Science Center for Precision Oncology University of Macau Macao SAR China

Abstract

Background and PurposeNLRP3 is up‐regulated in inflammatory and autoimmune diseases. The development of NLRP3 inhibitors is challenged by the identification of compounds with distinct mechanisms of action avoiding side effects and toxicity. Triptolide is a natural product with multiple anti‐inflammatory activities, but a narrow therapeutic window.Experimental ApproachNatural product triptolide derivatives were screened for NLRP3 inhibitors in human THP‐1 and mouse bone marrow‐derived macrophages. The efficacy of potent NLRP3 inhibitors was evaluated in LPS‐induced acute lung injury and septic shock models.Key ResultsTriptolidiol was identified as a selective inhibitor of NLRP3 with high potency. Triptolidiol inactivated the NLRP3 inflammasome in human THP‐1 and mouse primary macrophages primed with LPS. Triptolidiol specifically inhibited pro‐caspase 1 cleavage downstream of NLRP3, but not AIM2 or NLRC4 inflammasomes. Based on the structure–activity relationship study, the C8‐β‐OH group was critical for its binding to NLRP3. Triptolidiol exhibited a submicromolar KD for NLRP3, binding to residue C280. This binding prevented the interaction of NLRP3 with NEK7, the key regulator of NLRP3 inflammasome oligomerization and assembly, but not with the inflammasome adaptor protein ASC. Triptolidiol decreased the K63‐specific ubiquitination of NLRP3, leading NLRP3 to a “closed” inactive conformation. Intraperitoneal administration of triptolidiol significantly attenuated LPS‐induced acute lung injury and lethal septic shock.Conclusion and ImplicationsTriptolidiol is a novel NLRP3 inhibitor that regulates inflammasome assembly and activation by decreasing K63‐linked ubiquitination. Triptolidiol has novel structural features that make it distinct from reported NLRP3 inhibitors and represents a viable therapeutic lead for inflammatory diseases.

Funder

Science, Technology and Innovation Commission of Shenzhen Municipality

Publisher

Wiley

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