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首页> 外文期刊>Journal of Molecular Biology >Contacts in Death: The Role of the ER-Mitochondria Axis in Acetic Acid-Induced Apoptosis in Yeast
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Contacts in Death: The Role of the ER-Mitochondria Axis in Acetic Acid-Induced Apoptosis in Yeast

机译:死亡中的联系:ER-Mitochondria轴在醋酸诱导的酵母中凋亡的作用

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摘要

Endoplasmic reticulum-mitochondria contact sites have been a subject of increasing scientific interest since the discovery that these structures are disrupted in several pathologies. Due to the emerging data that correlate endoplasmic reticulum-mitochondria contact sites function with known events of the apoptotic program, we aimed to dissect this interplay using our well-established model of acetic acid-induced apoptosis in Saccharomyces cerevisiae. Until recently, the only known tethering complex between ER and mitochondria in this organism was the ER-mitochondria encounter structure (ERMES). Following our results from a screening designed to identify genes whose deletion rendered cells with an altered sensitivity to acetic acid, we hypothesized that the ERMES complex could be involved in cell death mediated by this stressor. Herein we demonstrate that single ablation of the ERMES components Mdm10p, Mdm12p and Mdm34p increases the resistance of S. cerevisiae to acetic acid-induced apoptosis, which is associated with a prominent delay in the appearance of several apoptotic markers. Moreover, abrogation of Mdm10p or Mdm34p abolished cytochrome c release from mitochondria. Since these two proteins are embedded in the mitochondrial outer membrane, we propose that the ERMES complex plays a part in cytochrome c release, a key event of the apoptotic cascade. In all, these findings will aid in targeted therapies for diseases where apoptosis is disrupted, as well as assist in the development of acetic acid-resistant strains for industrial processes. (C) 2018 Elsevier Ltd. All rights reserved.
机译:由于发现这些结构在几种病理中破坏了这些结构以来,内质网 - 线粒体接触地点是增加科学兴趣的主题。由于具有与凋亡计划的已知事件相关的新出现的数据,这些数据与凋亡计划的已知事件相关,我们旨在利用我们熟悉的醋酸诱导的酿酒酵母凋亡模型来描述这种相互作用。直到最近,这种生物中唯一已知的唯一已知的彼得和线粒体之间的核心综合体是Er-Mitochondria遇到结构(ERMES)。遵循我们的结果,旨在识别缺失的基因,其缺失具有改变对乙酸的敏感性的细胞,我们假设ERMES复合物可以参与由该压力源介导的细胞死亡。在本文中,我们证明了ERMES组分MDM10P,MDM12P和MDM34P的单一消融增加了S.酿酒酵母对乙酸诱导的凋亡的抗性,这与几种凋亡标记的外观突出的延迟相关。此外,消除了MDM10P或MDM34P废除了细胞色素C从线粒体释放。由于这两种蛋白质嵌入线粒体外膜中,我们提出了ERMES复合物在细胞色素C释放中发挥作用,是凋亡级联的关键事件。总而言之,这些发现将有助于患有细胞凋亡的疾病的有针对性的疗法,以及有助于开发工业过程的乙酸抗性菌株。 (c)2018年elestvier有限公司保留所有权利。

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