胆固醇提取导致的目标裂解是吞噬溶酶体分解过程中的限速步骤

IF 4.5 3区 生物学 Q2 CELL BIOLOGY European journal of cell biology Pub Date : 2023-12-27 DOI:10.1016/j.ejcb.2023.151382
Dante Barreda , Sergio Grinstein , Spencer A. Freeman
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引用次数: 0

摘要

巨噬细胞的持续吞噬活动要求其具有消化和分解进入体内物质的超强能力。虽然对形成末端吞噬溶酶体的初始步骤研究得很透彻,但对这一过程的后期阶段,即吞噬溶酶体内容物的降解和分解却知之甚少。我们报告说,吞噬溶酶体对脾脏细胞和红细胞等目标的降解是逐步进行的,需要裂解它们的质膜双分子层,这是必不可少的第一步。这是由 C2 型 Niemann-Pick 蛋白(NPC2)直接提取胆固醇实现的,而 NPC2 又将胆固醇交给 NPC1,以便从吞噬溶酶体中排出。胆固醇的移除最终会破坏吞噬目标膜的稳定性和通透性,使水解酶能够进入其内部。与此相反,我们发现皂苷能激活鞘脂的水解,是溶酶体管化所必需的,但在巨噬细胞分解目标物时,皂苷则是可有可无的。因此,NPC2 对胆固醇的提取被认为是清除膜结合目标(如凋亡细胞)的速率限制。选择性去除胆固醇似乎是专业吞噬细胞区分目标膜与吞噬溶酶体膜的主要机制,可能在自溶体的分解过程中得到保留。
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Target lysis by cholesterol extraction is a rate limiting step in the resolution of phagolysosomes

The ongoing phagocytic activity of macrophages necessitates an extraordinary capacity to digest and resolve incoming material. While the initial steps leading to the formation of a terminal phagolysosome are well studied, much less is known about the later stages of this process, namely the degradation and resolution of the phagolysosomal contents. We report that the degradation of targets such as splenocytes and erythrocytes by phagolysosomes occurs in a stepwise fashion, requiring lysis of their plasmalemmal bilayer as an essential initial step. This is achieved by the direct extraction of cholesterol facilitated by Niemann-Pick protein type C2 (NPC2), which in turn hands off cholesterol to NPC1 for export from the phagolysosome. The removal of cholesterol ulimately destabilizes and permeabilizes the membrane of the phagocytic target, allowing access of hydrolases to its internal compartments. In contrast, we found that saposins, which activate the hydrolysis of sphingolipids, are required for lysosomal tubulation, yet are dispensable for the resolution of targets by macrophages. The extraction of cholesterol by NPC2 is therefore envisaged as rate-limiting in the clearance of membrane-bound targets such as apoptotic cells. Selective cholesterol removal appears to be a primary mechanism that enables professional phagocytes to distinguish the target membrane from the phagolysosomal membrane and may be conserved in the resolution of autolysosomes.

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来源期刊
European journal of cell biology
European journal of cell biology 生物-细胞生物学
CiteScore
7.30
自引率
1.50%
发文量
80
审稿时长
38 days
期刊介绍: The European Journal of Cell Biology, a journal of experimental cell investigation, publishes reviews, original articles and short communications on the structure, function and macromolecular organization of cells and cell components. Contributions focusing on cellular dynamics, motility and differentiation, particularly if related to cellular biochemistry, molecular biology, immunology, neurobiology, and developmental biology are encouraged. Manuscripts describing significant technical advances are also welcome. In addition, papers dealing with biomedical issues of general interest to cell biologists will be published. Contributions addressing cell biological problems in prokaryotes and plants are also welcome.
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