Hemolymph exosomes inhibit Spiroplasma eriocheiris infection by promoting Tetraspanin‐mediated hemocyte phagocytosis in crab

Author:

Ma Yubo1,Yao Yu1,Meng Xiang1,Fu Hui1,Li Jiaying1,Luan Xiaoqi1,Liu Min1,Liu Hongli1,Gu Wei123,Hou Libo12ORCID,Meng Qingguo123ORCID

Affiliation:

1. Jiangsu Key Laboratory for Aquatic Crustacean Diseases, College of Marine Science and Engineering Nanjing Normal University Nanjing China

2. Engineering Lab of Henan Province for Aquatic Animal Disease Control, College of Fisheries Henan Normal University Xinxiang China

3. Co‐Innovation Center for Marine Bio‐Industry Technology of Jiangsu Province Lianyungang Jiangsu PR China

Abstract

AbstractExosomes released from infected cells are thought to play an important role in the dissemination of pathogens, as well as in host‐derived immune molecules during infection. As an intracellular pathogen, Spiroplasma eriocheiris is harmful to multiple crustaceans. However, the immune mechanism of exosomes during Spiroplasma infection has not been investigated. Here, we found exosomes derived from S. eriocheiris‐infected crabs could facilitate phagocytosis and apoptosis of hemocytes, resulting in increased crab survival and suppression of Spiroplasma intracellular replication. Proteomic analysis revealed the altered abundance of EsTetraspanin may confer resistance to S. eriocheiris, possibly by mediating hemocyte phagocytosis in Eriocheir sinensis. Specifically, knockdown of EsTetraspanin in E. sinensis increased susceptibility to S. eriocheiris infection and displayed compromised phagocytic ability, whereas overexpression of EsTetraspanin in Drosophila S2 cells inhibited S. eriocheiris infection. Further, it was confirmed that intramuscular injection of recombinant LEL domain of EsTetraspanin reduced the mortality of S. eriocheiris‐infected crabs. Blockade with anti‐EsTetraspanin serum could exacerbate S. eriocheiris invasion of hemocytes and impair hemocyte phagocytic activity. Taken together, our findings prove for the first time that exosomes modulate phagocytosis to resist pathogenic infection in invertebrates, which is proposed to be mediated by exosomal Tetraspanin, supporting the development of preventative strategies against Spiroplasma infection.

Funder

National Natural Science Foundation of China

Jiangsu Agricultural Science and Technology Innovation Fund

Publisher

Wiley

Subject

Genetics,Molecular Biology,Biochemistry,Biotechnology

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