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线粒体膜电位的丧失触发了延长酵母复制寿命的逆行反应。

Loss of mitochondrial membrane potential triggers the retrograde response extending yeast replicative lifespan.

作者信息

Miceli Michael V, Jiang James C, Tiwari Anurag, Rodriguez-Quiñones Jose F, Jazwinski S Michal

机构信息

Tulane Center for Aging and Department of Medicine, Tulane University Health Sciences Center New Orleans, LA, USA.

出版信息

Front Genet. 2012 Jan 10;2:102. doi: 10.3389/fgene.2011.00102. eCollection 2011.

Abstract

In the budding yeast Saccharomyces cerevisiae, loss of mitochondrial DNA (rho(0)) can induce the retrograde response under appropriate conditions, resulting in increased replicative lifespan (RLS). Although the retrograde pathway has been extensively elaborated, the nature of the mitochondrial signal triggering this response has not been clear. Mitochondrial membrane potential (MMP) was severely reduced in rho(0) compared to rho(+) cells, and RLS was concomitantly extended. To examine the role of MMP in the retrograde response, MMP was increased in the rho(0) strain by introducing a mutation in the ATP1 gene, and it was decreased in rho(+) cells by deletion of COX4. The ATP1-111 mutation in rho(0) cells partially restored the MMP and reduced mean RLS to that of rho(+) cells. COX4 deletion decreased MMP in rho(+) cells to a value intermediate between rho(+) and rho(0) cells and similarly increased RLS. The increase in expression of CIT2, the diagnostic gene for the retrograde response, seen in rho(0) cells, was substantially suppressed in the presence of the ATP1-111 mutation. In contrast, CIT2 expression increased in rho(+) cells on deletion of COX4. Activation of the retrograde response results in the translocation of the transcription factor Rtg3 from the cytoplasm to the nucleus. Rtg3-GFP translocation to the nucleus was directly observed in rho(0) and rho(+)cox4Δ cells, but it was blunted in rho(0) cells with the ATP1-111 mutation. We conclude that a decrease in MMP is the signal that initiates the retrograde response and leads to increased RLS.

摘要

在出芽酵母酿酒酵母中,线粒体DNA缺失(rho(0))在适当条件下可诱导逆行反应,从而延长复制寿命(RLS)。尽管逆行途径已得到广泛阐述,但触发该反应的线粒体信号的本质尚不清楚。与rho(+)细胞相比,rho(0)细胞中的线粒体膜电位(MMP)严重降低,同时RLS延长。为了研究MMP在逆行反应中的作用,通过在ATP1基因中引入突变,使rho(0)菌株中的MMP增加,而通过缺失COX4使rho(+)细胞中的MMP降低。rho(0)细胞中的ATP1-111突变部分恢复了MMP,并将平均RLS降低至rho(+)细胞的水平。COX4缺失使rho(+)细胞中的MMP降低至介于rho(+)和rho(0)细胞之间的值,同样延长了RLS。在rho(0)细胞中观察到的逆行反应诊断基因CIT2表达的增加,在存在ATP1-111突变的情况下被显著抑制。相反,在缺失COX4的rho(+)细胞中,CIT2表达增加。逆行反应的激活导致转录因子Rtg3从细胞质转移到细胞核。在rho(0)和rho(+)cox4Δ细胞中直接观察到Rtg3-GFP转移到细胞核,但在具有ATP1-111突变的rho(0)细胞中这种转移减弱。我们得出结论,MMP的降低是启动逆行反应并导致RLS增加的信号。

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