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人类吞噬作用分子机制的全基因组 CRISPR 功能调查。

A genome-wide CRISPR functional survey of the human phagocytosis molecular machinery.

机构信息

CeMM Research Center for Molecular Medicine of the Austrian Academy of Sciences, Vienna, Austria.

Institute of Clinical Microbiology, Immunology and Hygiene, Universitätsklinikum Erlangen and Friedrich-Alexander-Universität Erlangen-Nürnberg, Erlangen, Germany.

出版信息

Life Sci Alliance. 2023 Feb 1;6(4). doi: 10.26508/lsa.202201715. Print 2023 Apr.

Abstract

Phagocytosis, the process by which cells engulf large particles, plays a vital role in driving tissue clearance and host defense. Its dysregulation is connected to autoimmunity, toxic accumulation of proteins, and increased risks for infections. Despite its importance, we lack full understanding of all molecular components involved in the process. To create a functional map in human cells, we performed a genome-wide CRISPRko FACS screen that identified 716 genes. Mapping those hits to a comprehensive protein-protein interaction network annotated for functional cellular processes allowed retrieval of protein complexes identified multiple times and detection of missing phagocytosis regulators. In addition to known components, such as the Arp2/3 complex, the vacuolar-ATPase-Rag machinery, and the Wave-2 complex, we identified and validated new phagocytosis-relevant functions, including the oligosaccharyltransferase complex (MAGT1/SLC58A1, DDOST, STT3B, and RPN2) and the hypusine pathway (eIF5A, DHPS, and DOHH). Overall, our phagocytosis network comprises elements of cargo uptake, shuffling, and biotransformation through the cell, providing a resource for the identification of potential novel drivers for diseases of the endo-lysosomal system. Our approach of integrating protein-protein interaction offers a broadly applicable way to functionally interpret genome-wide screens.

摘要

吞噬作用,即细胞吞噬大颗粒的过程,在驱动组织清除和宿主防御方面起着至关重要的作用。其失调与自身免疫、蛋白质毒性积累以及感染风险增加有关。尽管吞噬作用很重要,但我们仍不完全了解该过程中涉及的所有分子组成部分。为了在人类细胞中创建一个功能性图谱,我们进行了全基因组 CRISPRkoFACS 筛选,该筛选确定了 716 个基因。将这些命中映射到一个全面的蛋白质-蛋白质相互作用网络,该网络注释了与功能细胞过程相关的蛋白质复合物,从而可以检索多次鉴定的蛋白质复合物,并检测到缺失的吞噬作用调节剂。除了已知的成分,如 Arp2/3 复合物、液泡-ATP 酶-Rag 机械、Wave-2 复合物外,我们还鉴定并验证了新的与吞噬作用相关的功能,包括寡糖转移酶复合物(MAGT1/SLC58A1、DDOST、STT3B 和 RPN2)和 hypusine 途径(eIF5A、DHPS 和 DOHH)。总的来说,我们的吞噬作用网络包括通过细胞摄取、转移和生物转化的货物的元素,为鉴定内溶酶体系统疾病的潜在新驱动因素提供了资源。我们整合蛋白质-蛋白质相互作用的方法为功能解释全基因组筛选提供了一种广泛适用的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ffe8/9892931/841bc7df1f94/LSA-2022-01715_Fig1.jpg

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