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神经元信号调节蛋白α通过限制小胶质细胞与视网膜中CD47的相互作用来驱动小胶质细胞吞噬作用。

Neuronal signal-regulatory protein alpha drives microglial phagocytosis by limiting microglial interaction with CD47 in the retina.

作者信息

Jiang Danye, Burger Courtney A, Akhanov Viktor, Liang Justine H, Mackin Robert D, Albrecht Nicholas E, Andrade Pilar, Schafer Dorothy P, Samuel Melanie A

机构信息

Department of Neuroscience, Baylor College of Medicine, Houston, TX 77030, USA; Huffington Center on Aging, Baylor College of Medicine, Houston, TX 77030, USA.

Department of Neurobiology, Brudnick Neuropsychiatric Research Institute, University of Massachusetts Medical School, Worcester, MA 01605, USA.

出版信息

Immunity. 2022 Dec 13;55(12):2318-2335.e7. doi: 10.1016/j.immuni.2022.10.018. Epub 2022 Nov 14.


DOI:10.1016/j.immuni.2022.10.018
PMID:36379210
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9772037/
Abstract

Microglia utilize their phagocytic activity to prune redundant synapses and refine neural circuits during precise developmental periods. However, the neuronal signals that control this phagocytic clockwork remain largely undefined. Here, we show that neuronal signal-regulatory protein alpha (SIRPα) is a permissive cue for microglial phagocytosis in the developing murine retina. Removal of neuronal, but not microglial, SIRPα reduced microglial phagocytosis, increased synpase numbers, and impaired circuit function. Conversely, prolonging neuronal SIRPα expression extended developmental microglial phagocytosis. These outcomes depended on the interaction of presynaptic SIRPα with postsynaptic CD47. Global CD47 deficiency modestly increased microglial phagocytosis, while CD47 overexpression reduced it. This effect was rescued by coexpression of neuronal SIRPα or codeletion of neuronal SIRPα and CD47. These data indicate that neuronal SIRPα regulates microglial phagocytosis by limiting microglial SIRPα access to neuronal CD47. This discovery may aid our understanding of synapse loss in neurological diseases.

摘要

在精确的发育阶段,小胶质细胞利用其吞噬活性来修剪多余的突触并优化神经回路。然而,控制这种吞噬机制的神经元信号在很大程度上仍不明确。在此,我们表明神经元信号调节蛋白α(SIRPα)是发育中小鼠视网膜小胶质细胞吞噬作用的一个许可性信号。去除神经元而非小胶质细胞中的SIRPα会减少小胶质细胞的吞噬作用,增加突触数量,并损害回路功能。相反,延长神经元SIRPα的表达会延长发育过程中小胶质细胞的吞噬作用。这些结果取决于突触前SIRPα与突触后CD47的相互作用。全身性CD47缺陷适度增加小胶质细胞的吞噬作用,而CD47过表达则降低吞噬作用。通过共表达神经元SIRPα或同时缺失神经元SIRPα和CD47可挽救这种效应。这些数据表明,神经元SIRPα通过限制小胶质细胞SIRPα与神经元CD47的接触来调节小胶质细胞的吞噬作用。这一发现可能有助于我们理解神经疾病中的突触丧失。

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本文引用的文献

[1]
Rapid 3D-STORM imaging of diverse molecular targets in tissue.

Cell Rep Methods. 2022-7-18

[2]
CD47 antibody blockade suppresses microglia-dependent phagocytosis and monocyte transition to macrophages, impairing recovery in EAE.

JCI Insight. 2021-11-8

[3]
Augmentation of CD47/SIRPα signaling protects cones in genetic models of retinal degeneration.

JCI Insight. 2021-8-23

[4]
C9orf72 deficiency promotes microglial-mediated synaptic loss in aging and amyloid accumulation.

Neuron. 2021-7-21

[5]
Loss of microglial SIRPα promotes synaptic pruning in preclinical models of neurodegeneration.

Nat Commun. 2021-4-1

[6]
How microglia sense and regulate neuronal activity.

Glia. 2021-7

[7]
Microglia and Inflammatory Responses in Diabetic Retinopathy.

Front Immunol. 2020

[8]
C1q Regulates Horizontal Cell Neurite Confinement in the Outer Retina.

Front Neural Circuits. 2020

[9]
Macrophages show higher levels of engulfment after disruption of interactions between CD47 and the checkpoint receptor SIRPα.

J Cell Sci. 2020-3-6

[10]
Microglia in the developing retina.

Neural Dev. 2019-12-30

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