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吞噬作用与吞噬体相关的足状伪足的形成以及人巨噬细胞中足状伪足的短暂破坏相关联。

Phagocytosis is coupled to the formation of phagosome-associated podosomes and a transient disruption of podosomes in human macrophages.

机构信息

Institut de Pharmacologie et Biologie Structurale, IPBS, Université de Toulouse, CNRS, UPS, Toulouse, France.

MCD, Centre de Biologie Intégrative (CBI), Université de Toulouse, CNRS, UPS, Toulouse, France.

出版信息

Eur J Cell Biol. 2021 May;100(4):151161. doi: 10.1016/j.ejcb.2021.151161. Epub 2021 Mar 31.

Abstract

Phagocytosis consists in ingestion and digestion of large particles, a process strictly dependent on actin re-organization. Using synchronized phagocytosis of IgG-coated latex beads (IgG-LB), zymosan or serum opsonized-zymosan, we report the formation of actin structures on both phagocytic cups and closed phagosomes in human macrophages. Their lifespan, size, protein composition and organization are similar to podosomes. Thus, we called these actin structures phagosome-associated podosomes (PAPs). Concomitantly to the formation of PAPs, a transient disruption of podosomes occurred at the ventral face of macrophages. Similarly to podosomes, which are targeted by vesicles containing proteases, the presence of PAPs correlated with the maturation of phagosomes into phagolysosomes. The ingestion of LB without IgG did not trigger PAPs formation, did not lead to podosome disruption and maturation to phagolysosomes, suggesting that these events are linked together. Although similar to podosomes, we found that PAPs differed by being resistant to the Arp2/3 inhibitor CK666. Thus, we describe a podosome subtype which forms on phagosomes where it probably serves several tasks of this multifunctional structure.

摘要

吞噬作用包括对大颗粒的摄入和消化,这一过程严格依赖于肌动蛋白的重新组织。我们通过同步吞噬 IgG 包被的乳胶珠(IgG-LB)、酵母聚糖或血清调理的酵母聚糖,报告了人巨噬细胞中吞噬杯和闭合吞噬体上肌动蛋白结构的形成。它们的寿命、大小、蛋白质组成和组织与足突相似。因此,我们将这些肌动蛋白结构称为吞噬体相关足突(PAPs)。与 PAPs 的形成同时,巨噬细胞腹侧的足突发生了短暂的破坏。与含有蛋白酶的囊泡靶向足突一样,PAPs 的存在与吞噬体成熟为吞噬溶酶体相关。没有 IgG 的 LB 的摄入不会触发 PAPs 的形成,不会导致足突破坏和成熟为吞噬溶酶体,这表明这些事件是相互关联的。虽然与足突相似,但我们发现 PAPs 不易受到 Arp2/3 抑制剂 CK666 的影响。因此,我们描述了一种足突亚型,它形成于吞噬体上,在那里它可能为这个多功能结构执行多个任务。

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