SpSR-B2 functions as a potential pattern recognition receptor involved in antiviral and antibacterial immune responses of mud crab Scylla paramamosain
Jian Zhou, Jun-Fang Zhou, Yue Wang, Guang-Peng Feng, Wen-Hong Fang, Wei Kang, Ling-Bo Ma, Xin-Cang Li
Journal:INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES
IF:6.95
DOI:10.1016/j.ijbiomac.2021.11.048
PMID:34780895
Published:2021-11-13
research field:感官生物学风味化学食品科学受体药理学分子营养学
Abstract
Although class B scavenger receptors (SR-Bs) in mammals are multifunctional molecules, the functions of SR-Bs in invertebrates remain largely unknown. In this study, we characterized an SR-B homolog, namely Sp SR-B2, from Scylla paramamosain . Sp SR-B2 shared high similarity with mammalian SR-Bs, and exhibited specific binding activity to ac-LDL, indicating that it may be a new member of SR-B class in invertebrates. SpSR-B2 was upregulated after challenge with white spot syndrome virus (WSSV) or bacteria. Binding assays showed that Sp SR-B2 specifically interacted with WSSV envelope protein VP24. Besides, Sp SR-B2 could bind to all tested bacterial cells and agglutinate these bacteria. Sp SR-B2 also exhibited a strong binding activity to LPS but weak binding activities to other tested polysaccharides. These findings indicated that Sp SR-B2 was a potential recognition molecule for viral protein VP24 and bacterial LPS. Knockdown of SpSR-B2 resulted in dramatically decreased expressions of certain antimicrobial peptides (AMPs), and overexpression of Sp SR-B2 led to the increased expression of the AMP of Sp ALF2, suggesting that Sp SR-B2 could regulate the expression of AMPs. Taken together, this study revealed that Sp SR-B2 functioned as a potential pattern recognition receptor participating in antiviral and antibacterial immunity, and provided new insights into the immune functions of invertebrate SR-Bs.
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