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全基因组 CRISPR 筛选揭示 C3aR 信号对巨噬细胞快速捕获真菌至关重要。

Genome-scale CRISPR screening reveals that C3aR signaling is critical for rapid capture of fungi by macrophages.

机构信息

University of California San Francisco, Department of Microbiology and Immunology, San Francisco, California, United States of America.

Stanford University, Department of Genetics, Palo Alto, California, United States of America.

出版信息

PLoS Pathog. 2022 Sep 29;18(9):e1010237. doi: 10.1371/journal.ppat.1010237. eCollection 2022 Sep.

Abstract

The fungal pathogen Histoplasma capsulatum (Hc) invades, replicates within, and destroys macrophages. To interrogate the molecular mechanisms underlying this interaction, we conducted a host-directed CRISPR-Cas9 screen and identified 361 genes that modify macrophage susceptibility to Hc infection, greatly expanding our understanding of host gene networks targeted by Hc. We identified pathways that have not been previously implicated in Hc interaction with macrophages, including the ragulator complex (involved in nutrient stress sensing), glycosylation enzymes, protein degradation machinery, mitochondrial respiration genes, solute transporters, and the ER membrane complex (EMC). The highest scoring protective hits included the complement C3a receptor (C3aR), a G-protein coupled receptor (GPCR) that recognizes the complement fragment C3a. Although it is known that complement components react with the fungal surface, leading to opsonization and release of small peptide fragments such as C3a, a role for C3aR in macrophage interactions with fungi has not been elucidated. We demonstrated that whereas C3aR is dispensable for macrophage phagocytosis of bacteria and latex beads, it is critical for optimal macrophage capture of pathogenic fungi, including Hc, the ubiquitous fungal pathogen Candida albicans, and the causative agent of Valley Fever Coccidioides posadasii. We showed that C3aR localizes to the early phagosome during Hc infection where it coordinates the formation of actin-rich membrane protrusions that promote Hc capture. We also showed that the EMC promotes surface expression of C3aR, likely explaining its identification in our screen. Taken together, our results provide new insight into host processes that affect Hc-macrophage interactions and uncover a novel and specific role for C3aR in macrophage recognition of fungi.

摘要

真菌病原体荚膜组织胞浆菌(Histoplasma capsulatum,Hc)入侵、在巨噬细胞内复制并破坏巨噬细胞。为了研究这种相互作用的分子机制,我们进行了宿主定向的 CRISPR-Cas9 筛选,鉴定出 361 个基因,这些基因改变了巨噬细胞对 Hc 感染的易感性,极大地扩展了我们对 Hc 靶向宿主基因网络的理解。我们鉴定了以前未涉及 Hc 与巨噬细胞相互作用的途径,包括 ragulator 复合物(参与营养应激感应)、糖基化酶、蛋白降解机制、线粒体呼吸基因、溶质转运体和内质网膜复合物(EMC)。得分最高的保护性命中包括补体 C3a 受体(C3aR),这是一种识别补体片段 C3a 的 G 蛋白偶联受体(GPCR)。尽管已知补体成分与真菌表面反应,导致调理作用和释放小肽片段,如 C3a,但 C3aR 在巨噬细胞与真菌相互作用中的作用尚未阐明。我们证明,虽然 C3aR 对于巨噬细胞吞噬细菌和乳胶珠是可有可无的,但它对于最佳捕获致病性真菌,包括 Hc、无处不在的真菌病原体白色念珠菌和山谷热病原体球孢子菌至关重要。我们表明,C3aR 在 Hc 感染期间定位于早期吞噬体,在那里它协调形成富含肌动蛋白的膜突起,促进 Hc 捕获。我们还表明,EMC 促进 C3aR 的表面表达,这可能解释了它在我们的筛选中被鉴定出来。总之,我们的结果提供了宿主过程影响 Hc-巨噬细胞相互作用的新见解,并揭示了 C3aR 在巨噬细胞识别真菌中的新的特定作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4ba/9578593/d5d651ce11f5/ppat.1010237.g001.jpg

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