Deficiency in TLR4 impairs regulatory B cells production induced by Schistosome soluble egg antigen

IF 1.4 4区 医学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecular and biochemical parasitology Pub Date : 2023-02-01 DOI:10.1016/j.molbiopara.2022.111532
Fang Tian , Kangwen Xian , Bin Yang , Qiufang Duan , Li Qian , Chanhong Shi
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Abstract

Regulatory B cells (Bregs) producing IL-10 have negative regulatory function. Several studies have shown the important roles for Toll-like receptor 2 (TLR2), TLR4, and TLR9 ligation in the development of Bregs. We have reported that Schistosome soluble egg antigen (SEA) induced the production of Bregs. However, it remains unclear whether such activation is via the TLR pathway. The present study showed that IL-10 and TLR4 mRNA expression in spleen B cells of significantly increased in C57BL/10 J mice spleen B cells following SEA stimulation. The level of secreted IL-10 and IL-10+ B cell proportion decreased in spleen B cells derived from TLR4-deficient C57BL/10ScNJ (TLR4-/-) mice following SEA or LPS stimulation compared with C57BL/10 J mice. The CD1dhiCD5+ B cells proportion decreased in spleen B cells of TLR4-/- mice following SEA stimulation compared with control mice. NF-κB, ERK, p38MAPK and JNK signal transduction inhibitors significantly suppressed IL-10 secretion in CD1dhiCD5+ B cells induced by SEA or LPS. The phosphorylation levels of IκBα, p65, ERK, JNK and p38 were increased in CD1dhiCD5+ B cell of C57BL/10 J mice treated with LPS or SEA. In conclusion, this study suggests that TLR4 plays a critical role in Bregs activation induced by SEA. And the TLR4-triggered NF-κB and MAPK pathways activation in CD1dhiCD5+ B cells stimulated with SEA. The findings elucidated the mechanism of SEA induction of CD1dhiCD5+ B cells and helped us to understand the immune regulation during Schistosoma japonicum infection.

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TLR4缺乏损害血吸虫可溶性卵抗原诱导的调节性B细胞产生
产生IL-10的调节性B细胞(Bregs)具有负调控功能。几项研究表明,Toll样受体2(TLR2)、TLR4和TLR9连接在Bregs的发展中起着重要作用。我们已经报道了血吸虫可溶性卵抗原(SEA)诱导Bregs的产生。然而,目前尚不清楚这种激活是否通过TLR途径。本研究表明,SEA刺激后C57BL/10J小鼠脾脏B细胞中IL-10和TLR4 mRNA的表达显著增加。与C57BL/10J小鼠相比,SEA或LPS刺激后来源于TLR4缺陷的C57BL/10CNJ(TLR4-/-)小鼠的脾脏B细胞中分泌的IL-10和IL-10+B细胞比例的水平降低。与对照小鼠相比,SEA刺激后TLR4-/-小鼠的脾脏B细胞中CD1dhiCD5+B细胞比例降低。NF-κB、ERK、p38MAPK和JNK信号转导抑制剂显著抑制SEA或LPS诱导的CD1dhiCD5+B细胞分泌IL-10。LPS或SEA处理的C57BL/10J小鼠CD1dhiCD5+B细胞中IκBα、p65、ERK、JNK和p38的磷酸化水平升高。总之,本研究表明TLR4在SEA诱导的Bregs激活中起着关键作用。在SEA刺激的CD1dhiCD5+B细胞中,TLR4触发NF-κB和MAPK通路的激活。这些发现阐明了SEA诱导CD1dhiCD5+B细胞的机制,有助于我们理解日本血吸虫感染过程中的免疫调节。
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来源期刊
CiteScore
2.90
自引率
0.00%
发文量
51
审稿时长
63 days
期刊介绍: The journal provides a medium for rapid publication of investigations of the molecular biology and biochemistry of parasitic protozoa and helminths and their interactions with both the definitive and intermediate host. The main subject areas covered are: • the structure, biosynthesis, degradation, properties and function of DNA, RNA, proteins, lipids, carbohydrates and small molecular-weight substances • intermediary metabolism and bioenergetics • drug target characterization and the mode of action of antiparasitic drugs • molecular and biochemical aspects of membrane structure and function • host-parasite relationships that focus on the parasite, particularly as related to specific parasite molecules. • analysis of genes and genome structure, function and expression • analysis of variation in parasite populations relevant to genetic exchange, pathogenesis, drug and vaccine target characterization, and drug resistance. • parasite protein trafficking, organelle biogenesis, and cellular structure especially with reference to the roles of specific molecules • parasite programmed cell death, development, and cell division at the molecular level.
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AUK3 is required for faithful nuclear segregation in the bloodstream form of Trypanosoma brucei. Glucantime and quercetin electrospun nanofiber membranes: Fabrication and their evaluation as dressing for cutaneous leishmaniasis. Editorial Board Designing a multi-epitope subunit vaccine against Toxoplasma gondii through reverse vaccinology approach Characterization of two phosphatase 2 C domain-containing proteins PPM2A and PPM2B in Toxoplasma gondii
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