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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >8-Dehydrosterols induce membrane traffic and autophagy defects through V-ATPase dysfunction in Saccharomyces cerevisae
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8-Dehydrosterols induce membrane traffic and autophagy defects through V-ATPase dysfunction in Saccharomyces cerevisae

机译:8-脱氢甾醇通过酿酒酵母中的V-ATPase功能障碍诱导膜运输和自噬缺陷

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8-Dehydrosterols are present in a wide range of biologically relevant situations, from human rare diseases to amine fungicide-treated fungi and crops. However, the molecular bases of their toxicity are still obscure. We show here that 8-dehydrosterols, but not other sterols, affect yeast vacuole acidification through V-ATPases. Moreover, erg2 Delta cells display reductions in proton pumping rates consistent with ion-transport uncoupling in vitro. Concomitantly, subunit Vph1p shows conformational changes in the presence of 8-dehydrosterols. Expression of a plant vacuolar H+-pumping pyrophosphatase as an alternative H+-pump relieves Vma(-)-like phenotypes in erg2 Delta-derived mutant cells. As a consequence of these acidification defects, endo- and exo-cytic traffic deficiencies that can be alleviated with a H+-pumping pyrophosphatase are also observed. Despite their effect on membrane traffic, 8-dehydrosterols do not induce endoplasmic reticulum stress or assembly defects on the V-ATPase. Autophagy is a V-ATPase dependent process and erg2 Delta mutants accumulate autophagic bodies under nitrogen starvation similar to Vma(-) mutants. In contrast to classical Atg(-) mutants, this defect is not accompanied by impairment of traffic through the CVT pathway, processing of Pho860p, GFP-Atg8p localisation or difficulties to survive under nitrogen starvation conditions, but it is concomitant to reduced vacuolar protease activity. All in all, erg2 Delta cells are autophagy mutants albeit some of their phenotypic features differ from classical Atg(-) defective cells. These results may pave the way to understand the aetiology of sterol-related diseases, the cytotoxic effect of amine fungicides, and may explain the tolerance to these compounds observed in plants. (C) 2015 Elsevier B.V. All rights reserved.
机译:8-脱氢甾醇存在于广泛的生物学相关情况下,从人类罕见疾病到用胺类杀菌剂处理的真菌和农作物。但是,其毒性的分子基础仍然不清楚。我们在这里显示8-脱氢固醇,而不是其他固醇,通过V-ATPase影响酵母液泡酸化。此外,erg2 Delta细胞显示质子泵送速率的降低与体外离子传输解偶联相符。伴随地,在8-脱氢甾醇存在下,亚基Vph1p显示构象变化。植物液泡H +泵的焦磷酸酶作为一种替代H +泵的表达减轻了erg2 Delta衍生的突变细胞中的Vma(-)样表型。由于这些酸化缺陷,还观察到可以用H +泵浦的焦磷酸酶缓解的胞内和胞外运输不足。尽管它们对膜运输有影响,但是8-脱氢甾醇不会在V-ATPase上诱导内质网应激或组装缺陷。自噬是一个依赖V-ATPase的过程,erg2 Delta突变体在类似于Vma(-)突变体的氮饥饿下积累自噬体。与经典的Atg(-)突变体相比,此缺陷并不伴随通过CVT途径的交通受损,Pho860p的加工,GFP-Atg8p定位或在氮饥饿条件下难以生存,但伴随着液泡蛋白酶活性降低。总而言之,erg2 Delta细胞是自噬突变体,尽管它们的某些表型特征不同于经典的Atg(-)缺陷细胞。这些结果可能为了解固醇相关疾病的病因,胺类杀菌剂的细胞毒性作用铺平了道路,并可能解释了对植物中观察到的这些化合物的耐受性。 (C)2015 Elsevier B.V.保留所有权利。

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