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Brain angiogenesis inhibitor 1 (BAI1) is a pattern recognition receptor that mediates macrophage binding and engulfment of Gram-negative bacteria

机译:脑血管生成抑制剂1(BAI1)是一种模式识别受体,可介导巨噬细胞结合和革兰氏阴性细菌的吞噬

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摘要

Bacterial recognition by host cells is essential for initiation of infection and the host response. Bacteria interact with host cells via multiple pattern recognition receptors that recognize microbial products or pathogen-associated molecular patterns. In response to this interaction, host cell signaling cascades are activated that lead to inflammatory responses and/or phagocytic clearance of attached bacteria. Brain angiogenesis inhibitor 1 (BAI1) is a receptor that recognizes apoptotic cells through its conserved type I thrombospondin repeats and triggers their engulfment through an ELMO1/Dock/Rac1 signaling module. Because thrombospondin repeats in other proteins have been shown to bind bacterial surface components, we hypothesized that BAI1 may also mediate the recognition and clearance of pathogenic bacteria. We found that preincubation of bacteria with recombinant soluble BAI1 ectodomain or knockdown of endogenous BAI1 in primary macrophages significantly reduced binding and internalization of the Gram-negative pathogen Salmonella typhimurium. Conversely, overexpression of BAI1 enhanced attachment and engulfment of Salmonella in macrophages and in heterologous nonphagocytic cells. Bacterial uptake is triggered by the BAI1-mediated activation of Rac through an ELMO/Dock-dependent mechanism, and inhibition of the BAI1/ELMO1 interaction prevents both Rac activation and bacterial uptake. Moreover, inhibition of ELMO1 or Rac function significantly impairs the proinflammatory response to infection. Finally, we show that BAI1 interacts with a variety of Gram-negative, but not Gram-positive, bacteria through recognition of their surface lipopolysaccharide. Together these findings identify BAI1 as a pattern recognition receptor that mediates nonopsonic phagocytosis of Gram-negative bacteria by macrophages and directly affects the host response to infection.
机译:宿主细胞对细菌的识别对于感染的起始和宿主反应至关重要。细菌通过多种识别微生物产物或病原体相关分子模式的模式识别受体与宿主细胞相互作用。响应于这种相互作用,激活宿主细胞信号级联反应,导致炎症反应和/或吞噬附着细菌的清除。脑血管生成抑制剂1(BAI1)是一种受体,该受体通过其保守的I型血小板反应蛋白重复序列​​识别凋亡细胞,并通过ELMO1 / Dock / Rac1信号传导模块触发其吞噬。由于其他蛋白中的血小板反应蛋白重复序列​​已显示与细菌表面成分结合,因此我们假设BAI1也可能介导病原细菌的识别和清除。我们发现,在原代巨噬细胞中与重组可溶性BAI1胞外域或内源性BAI1敲低的细菌预孵育显着降低了革兰氏阴性病原体鼠伤寒沙门氏菌的结合和内在化。相反,BAI1的过表达增强了巨噬细胞和异源非吞噬细胞中沙门氏菌的附着和吞噬。 BAI1介导的Rac通过ELMO / Dock依赖性机制激活细菌摄取,而BAI1 / ELMO1相互作用的抑制则阻止Rac活化和细菌摄取。此外,抑制ELMO1或Rac功能会大大损害对感染的促炎反应。最后,我们表明BAI1通过识别其表面脂多糖与各种革兰氏阴性细菌相互作用,但不与革兰氏阳性细菌相互作用。这些发现共同将BAI1识别为一种模式识别受体,可通过巨噬细胞介导革兰氏阴性细菌的非调理吞噬作用,并直接影响宿主对感染的反应。

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