SpRab11a-Regulated Exosomes Inhibit Bacterial Infection through the Activation of Antilipopolysaccharide Factors in Crustaceans.

副热带青蟹 拉布 微泡 细胞生物学 生物 先天免疫系统 副溶血性弧菌 免疫系统 GTP酶 抗菌肽 微生物学 外体 分泌物 小型GTPase 信号转导 细菌 抗菌剂 免疫学 小RNA 生物化学 基因 遗传学
作者
Qian Sun,Shanmeng Lin,Ming Zhang,Yi Gong,Hongyu Ma,Ngoc Tuan Tran,Yueling Zhang,Shengkang Li
出处
期刊:Journal of Immunology [American Association of Immunologists]
卷期号:209 (4): 710-722
标识
DOI:10.4049/jimmunol.2200094
摘要

Exosomes, secreted by most cells, are critical antimicrobial immune factors in animals. Recent studies of certain key regulators of vesicular transport, the Rab GTPases, have linked Rab dysfunction to regulation of innate immune signaling. However, the relationship between exosomes and Rab GTPases, resulting in antimicrobial activity in vertebrates and invertebrates during pathogenic infection, has not been addressed. In this study, SpRab11a was reported to have a protective effect on the survival rate of mud crabs Scylla paramamosain after Vibrio parahaemolyticus challenge through the stimulation of exosome secretion and modulation of anti-LPS factor (ALF) expression. Furthermore, Sp14-3-3 was confirmed to be densely packaged in exosomes after V. parahaemolyticus infection, which could recruit the MyD88 and TLR by binding the Toll/IL-1R domain to the plasma membrane, promoting the translocation of Dorsal from the cytoplasm into the nucleus, and thereby regulating ALFs expression in the hemocytes of mud crab in response to the bacterial infection. The findings therefore provide, to our knowledge, a novel mechanism that underlies the cross-talk between SpRab11a-regulated exosome formation and ALFs expression in innate immune response in invertebrates, with a crustacean species, mud crab S. paramamosain, as a model study.
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