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自噬缺陷与表鬼臼毒素耐药癌细胞中的 LC3 斑点有关。

Defective autophagy associated with LC3 puncta in epothilone-resistant cancer cells.

机构信息

INSERM U848, Institut Gustave Roussy and Université Paris Sud-XI, Villejuif, France.

出版信息

Cell Cycle. 2010 Jan 15;9(2):377-83. doi: 10.4161/cc.9.2.10468. Epub 2010 Jan 29.

Abstract

Autophagy is commonly characterized by the redistribution of the microtubule-associated light chain 3 (LC3) protein into cytoplasmic puncta, coinciding with its lipidation, as well as by a decrease in the abundance of autophagic substrates including p62 and ubiquitinylated proteins. Here, we describe a cell line, A549-B480, which, in contrast to its parental A549 line, exhibits massive accumulation of LC3 (or a GFP-LC3 fusion protein) in cytoplasmic puncta. These puncta co-localize with accumulated p62 and ubiquitinylated proteins, yet are not enwrapped by membranes. Indeed, LC3 is not lipidated in A549-B480, even when these cells are cultured in conditions in which A549 cells would develop autophagy. A549-B480 cells have been selected for their resistance against the microtubule-stabilizing agent epothilone B and actually require the continuous presence of epothilone B for their survival. Parental A549 cells treated with epothilone B manifested all signs of bona fide autophagy. In contrast, the autophagic program of A549-B480 was defective, irrespective of the absence or presence of epothilone B, and correlated with the complete absence of Atg7, a protein that is reputed to be essential for autophagy. These results establish novel functional links between microtubules and autophagy, identify a new chemotherapy resistance-associated autophagic defect, and describe the existence of LC3 puncta outside from autophagosomes.

摘要

自噬通常的特征是微管相关轻链 3(LC3)蛋白重新分布到细胞质斑点中,同时伴随着其脂质化,以及自噬底物如 p62 和泛素化蛋白的丰度减少。在这里,我们描述了一个细胞系 A549-B480,与亲本 A549 系相比,其细胞质斑点中大量积累 LC3(或 GFP-LC3 融合蛋白)。这些斑点与积累的 p62 和泛素化蛋白共定位,但不被膜包裹。事实上,即使在 A549 细胞会发生自噬的条件下培养 A549-B480 细胞,LC3 也不会被脂质化。A549-B480 细胞是因其对微管稳定剂埃博霉素 B 的抗性而被选择的,实际上它们的存活需要持续存在埃博霉素 B。用埃博霉素 B 处理的亲本 A549 细胞表现出真正自噬的所有迹象。相比之下,A549-B480 的自噬程序有缺陷,无论是否存在埃博霉素 B,这与 Atg7 的完全缺失有关,Atg7 是一种被认为对自噬至关重要的蛋白质。这些结果确立了微管和自噬之间的新功能联系,确定了一种新的与化疗耐药相关的自噬缺陷,并描述了自噬体之外 LC3 斑点的存在。

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