生物
布鲁氏菌
炎症
免疫系统
先天免疫系统
细胞生物学
微生物学
分泌物
树突状细胞
细胞内寄生虫
细胞内
免疫学
生物化学
布鲁氏菌病
作者
Clara Degos,Lisiena Hysenaj,Gabriela González-Espinoza,Vilma Arce‐Gorvel,Aurélie Gagnaire,Alexia Papadopoulos,Karina A. Pasquevich,Stéphane Méresse,Juliana Cassataro,Sylvie Mémet,Jean‐Pierre Gorvel
摘要
The strategies by which intracellular pathogenic bacteria manipulate innate immunity to establish chronicity are poorly understood. Here, we show that Brucella abortus outer membrane protein Omp25 specifically binds the immune cell receptor SLAMF1 in vitro. The Omp25-dependent engagement of SLAMF1 by B. abortus limits NF-κB translocation in dendritic cells (DCs) with no impact on Brucella intracellular trafficking and replication. This in turn decreases pro-inflammatory cytokine secretion and impairs DC activation. The Omp25-SLAMF1 axis also dampens the immune response without affecting bacterial replication in vivo during the acute phase of Brucella infection in a mouse model. In contrast, at the chronic stage of infection, the Omp25/SLAMF1 engagement is essential for Brucella persistence. Interaction of a specific bacterial protein with an immune cell receptor expressed on the DC surface at the acute stage of infection is thus a powerful mechanism to support microbe settling in its replicative niche and progression to chronicity.
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