Microglial debris is cleared by astrocytes via C4b-facilitated phagocytosis and degraded via RUBICON-dependent noncanonical autophagy in mice

Author:

Zhou Tian,Li Yuxin,Li Xiaoyu,Zeng FanzhuoORCID,Rao Yanxia,He Yang,Wang Yafei,Liu Meizhen,Li DaliORCID,Xu ZhenORCID,Zhou Xin,Du Siling,Niu Fugui,Peng JiyunORCID,Mei Xifan,Ji Sheng-Jian,Shu Yousheng,Lu Wei,Guo Feifan,Wu TianzhunORCID,Yuan Ti-FeiORCID,Mao YingORCID,Peng BoORCID

Abstract

AbstractMicroglia are important immune cells in the central nervous system (CNS) that undergo turnover throughout the lifespan. If microglial debris is not removed in a timely manner, accumulated debris may influence CNS function. Clearance of microglial debris is crucial for CNS homeostasis. However, underlying mechanisms remain obscure. We here investigate how dead microglia are removed. We find that although microglia can phagocytose microglial debris in vitro, the territory-dependent competition hinders the microglia-to-microglial debris engulfment in vivo. In contrast, microglial debris is mainly phagocytosed by astrocytes in the brain, facilitated by C4b opsonization. The engulfed microglial fragments are then degraded in astrocytes via RUBICON-dependent LC3-associated phagocytosis (LAP), a form of noncanonical autophagy. Interference with C4b-mediated engulfment and subsequent LAP disrupt the removal and degradation of microglial debris, respectively. Together, we elucidate the cellular and molecular mechanisms of microglial debris removal in mice, extending the knowledge on the maintenance of CNS homeostasis.

Funder

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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