4.8 Article

A Novel Lipopolysaccharide Recognition Mechanism Mediated by Internalization in Teleost Macrophages

期刊

FRONTIERS IN IMMUNOLOGY
卷 9, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fimmu.2018.02758

关键词

teleost; macrophages; lipopolysaccharide; scavenger receptor class B2; inflammation

资金

  1. Program for the National Natural Science Foundation of China [31772876, 41776151]
  2. Zhejiang Provincial Natural Science Foundation of China [LZ18C190001, LR18C040001]
  3. Scientific Innovation Team Project of Ningbo [2015C110018]
  4. Young Talent Cultivation Project of Zhejiang Association for Science and Technology [2016YCGC003]
  5. KC Wong Magna Fund of Ningbo University, Ningbo, China

向作者/读者索取更多资源

Macrophages in teleosts are less sensitive to lipopolysaccharide (LPS) compared to mammals. The functional equivalent of the mammalian LPS surface receptor in teleost macrophages for the pro-inflammatory response is either non-existent or replaced by negative regulation. LPS signaling in teleost macrophages remains unclear. Here, we found a scavenger receptor class B 2a (PaSRB2a) that played a crucial role in LPS signaling in teleost macrophages. The internalization of LPS and subsequent pro-inflammatory responses in macrophages were mediated by PaSRB2a, which is a novel isoform of the mammalian SRB2 gene. LPS internalization by PaSRB2a is dependent on its C-terminal intracellular domain. Following LPS internalization, it interacts with the ayu intracellular receptors nucleotide-binding oligomerization domain protein 1 (PaNOD1) and PaNOD2. Moreover, LPS pre-stimulation with sub-threshold concentrations reduced the effect of secondary LPS treatment on pro-inflammatory responses that were mediated by PaSRB2a. The pro-inflammatory responses in LPS-treated ayu were down-regulated upon PaSRB2a knockdown by lentivirus siRNA delivery. In grass carp and spotted green pufferfish, SRB2a also mediated LPS internalization and pro-inflammatory responses. Our work identifies a novel LPS signaling pathway in teleosts that differs from those in mammals, and contributes to our understanding of the evolution of pathogen recognition in vertebrates.

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