Characterization of GSDME in amphioxus provides insights into the functional evolution of GSDM-mediated pyroptosis

Author:

Wang Xinli,Wei Xuxia,Lu Yan,Wang Qinghuan,Fu Rong,Wang Yin,Wang Qin,Wang Xiangyan,Chen Shangwu,Xu AnlongORCID,Yuan Shaochun

Abstract

Members of the gasdermin (GSDM) family are pore-forming effectors that cause membrane permeabilization and pyroptosis, a lytic proinflammatory type of cell death. To reveal the functional evolution of GSDM-mediated pyroptosis at the transition from invertebrates to vertebrates, we conducted functional characterization of amphioxus GSDME (BbGSDME) and found that it can be cleaved by distinct caspase homologs, yielding the N253 and N304 termini with distinct functions. The N253 fragment binds to cell membrane, triggers pyroptosis, and inhibits bacterial growth, while the N304 performs negative regulation of N253-mediated cell death. Moreover, BbGSDME is associated with bacteria-induced tissue necrosis and transcriptionally regulated by BbIRF1/8 in amphioxus. Interestingly, several amino acids that are evolutionarily conserved were found to be important for the function of both BbGSDME and HsGSDME, shedding new lights on the functional regulation of GSDM-mediated inflammation.

Funder

Ministry of Science and Technology of the People's Republic of China

National Natural Science Foundation of China

Guangdong Science and Technology Department

Innovation Group Project of Southern Marine Science and 699 Engineering Guangdong Laboratory

Publisher

Public Library of Science (PLoS)

Subject

General Agricultural and Biological Sciences,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Neuroscience

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