通过形成含有货物的吞噬泡,降解己糖基甘油三酯是及时清除尸体的必要条件

IF 4.5 3区 生物学 Q2 CELL BIOLOGY
Rebecca Holzapfel , Agata Prell , Fabian Schumacher , Veronika Perschin , José Pedro Friedmann Angeli , Burkhard Kleuser , Christian Stigloher , Gholamreza Fazeli
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引用次数: 0

摘要

溶酶体中吞噬货物的有效降解对于维持细胞平衡和抵御病原体至关重要。然而,人们对吞噬溶酶体内大分子货物的降解和再循环机制仍然知之甚少。我们以前曾报道过,在秀丽隐杆线虫中,含有极体尸体的吞噬溶酶体管化成小囊泡以促进尸体清除,这一过程需要货物蛋白降解和氨基酸输出。在这里,我们发现,要及时清除尸体,就必须通过前体蛋白直向同源物 SPP-10 和葡糖基甘酰胺酶降解己糖基甘酰胺。我们观察到,在缺乏 spp-10 的蠕虫的内溶酶体中积累了膜结构,这可能是由于己基甘油酰胺种类增加所致。缺乏 spp-10 还会导致其他鞘脂亚类的改变,如二氢甘油酰胺、2-OH-神经酰胺和二氢鞘氨醇。虽然在 spp-10 基因缺陷的蠕虫体内,尸体吞噬、吞噬溶酶体内尸体膜的初步分解和腔体酸化过程正常进行,但尸体吞噬溶酶体内含货囊泡的形成却减少了,导致货物降解和吞噬溶酶体分解延迟。因此,通过将超微结构研究和鞘脂组分析与观察单个吞噬溶酶体的时间相结合,我们确定了前列素/SPP-10在维持吞噬溶酶体结构中的作用,这种结构可促进吞噬货物的有效分解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Degradation of hexosylceramides is required for timely corpse clearance via formation of cargo-containing phagolysosomal vesicles

Efficient degradation of phagocytic cargo in lysosomes is crucial to maintain cellular homeostasis and defending cells against pathogens. However, the mechanisms underlying the degradation and recycling of macromolecular cargo within the phagolysosome remain incompletely understood. We previously reported that the phagolysosome containing the corpse of the polar body in C. elegans tubulates into small vesicles to facilitate corpse clearance, a process that requires cargo protein degradation and amino acid export. Here we show that degradation of hexosylceramides by the prosaposin ortholog SPP-10 and glucosylceramidases is required for timely corpse clearance. We observed accumulation of membranous structures inside endolysosomes of spp-10-deficient worms, which are likely caused by increased hexosylceramide species. spp-10 deficiency also caused alteration of additional sphingolipid subclasses, like dihydroceramides, 2-OH-ceramides, and dihydrosphingomyelins. While corpse engulfment, initial breakdown of corpse membrane inside the phagolysosome and lumen acidification proceeded normally in spp-10-deficient worms, formation of the cargo-containing vesicles from the corpse phagolysosome was reduced, resulting in delayed cargo degradation and phagolysosome resolution. Thus, by combining ultrastructural studies and sphingolipidomic analysis with observing single phagolysosomes over time, we identified a role of prosaposin/SPP-10 in maintaining phagolysosomal structure, which promotes efficient resolution of phagocytic cargos.

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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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