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CCL2 regulation of MST1-mTOR-STAT1 signaling axis controls BCR signaling and B-cell differentiation

Authors :
Zhenzhen Li
Yukai Jing
Yingzi Zhu
Yu Hu
Jianlong Tang
Chaohong Liu
Qiuyue Chen
Di Yang
Quan Gong
Danqing Kang
Yanmei Huang
Ju Liu
Qianglin Chen
Xin Dai
Liru Qiu
Yan Chen
Na Li
Lu Yang
Heng Gu
Anwei Chen
Panpan Jiang
Li Luo
Heather Miller
Heng Mei
Jiang Chang
Source :
Cell Death Differ
Publication Year :
2021
Publisher :
Springer Science and Business Media LLC, 2021.

Abstract

Chemokines are important regulators of the immune system, inducing specific cellular responses by binding to receptors on immune cells. In SLE patients, decreased expression of CCL2 on mesenchymal stem cells (MSC) prevents inhibition of B-cell proliferation, causing the characteristic autoimmune phenotype. Nevertheless, the intrinsic role of CCL2 on B-cell autoimmunity is unknown. In this study using Ccl2 KO mice, we found that CCL2 deficiency enhanced BCR signaling by upregulating the phosphorylation of the MST1-mTORC1-STAT1 axis, which led to reduced marginal zone (MZ) B cells and increased germinal center (GC) B cells. The abnormal differentiation of MZ and GC B cells were rescued by in vivo inhibition of mTORC1. Additionally, the inhibition of MST1-mTORC1-STAT1 with specific inhibitors in vitro also rescued the BCR signaling upon antigenic stimulation. The deficiency of CCL2 also enhanced the early activation of B cells including B-cell spreading, clustering and signalosome recruitment by upregulating the DOCK8-WASP-actin axis. Our study has revealed the intrinsic role and underlying molecular mechanism of CCL2 in BCR signaling, B-cell differentiation, and humoral response.

Details

ISSN :
14765403 and 13509047
Volume :
28
Database :
OpenAIRE
Journal :
Cell Death & Differentiation
Accession number :
edsair.doi.dedup.....d32df0755a9193e91a6fbd7089bd56b6
Full Text :
https://doi.org/10.1038/s41418-021-00775-2