Endogenous pore-forming protein complex targets acidic glycosphingolipids in lipid rafts to initiate endolysosome regulation

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作者
Xiao-Long Guo
Ling-Zhen Liu
Qi-Quan Wang
Jin-Yang Liang
Wen-Hui Lee
Yang Xiang
Sheng-An Li
Yun Zhang
机构
[1] Key Laboratory of Animal Models and Human Disease Mechanisms of The Chinese Academy of Sciences/Key Laboratory of Bioactive Peptides of Yunnan Province,
[2] Kunming Institute of Zoology,undefined
[3] the Chinese Academy of Sciences,undefined
[4] Kunming College of Life Science,undefined
[5] University of Chinese Academy of Sciences,undefined
[6] Center for Excellence in Animal Evolution and Genetics,undefined
[7] Chinese Academy of Sciences,undefined
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Communications Biology | / 2卷
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摘要
Bacterial pore-forming toxin aerolysin-like proteins (ALPs) are widely distributed in animals and plants. However, functional studies on these ALPs remain in their infancy. βγ-CAT is the first example of a secreted pore-forming protein that functions to modulate the endolysosome pathway via endocytosis and pore formation on endolysosomes. However, the specific cell surface molecules mediating the action of βγ-CAT remain elusive. Here, the actions of βγ-CAT were largely attenuated by either addition or elimination of acidic glycosphingolipids (AGSLs). Further study revealed that the ALP and trefoil factor (TFF) subunits of βγ-CAT bind to gangliosides and sulfatides, respectively. Additionally, disruption of lipid rafts largely impaired the actions of βγ-CAT. Finally, the ability of βγ-CAT to clear pathogens was attenuated in AGSL-eliminated frogs. These findings revealed a previously unknown double binding pattern of an animal-secreted ALP in complex with TFF that initiates ALP-induced endolysosomal pathway regulation, ultimately leading to effective antimicrobial responses.
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