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利用对pH敏感的绿色荧光蛋白衍生物在酿酒酵母中对胞质和线粒体pH进行体内测量,揭示了细胞内pH与生长之间的关系。

In vivo measurement of cytosolic and mitochondrial pH using a pH-sensitive GFP derivative in Saccharomyces cerevisiae reveals a relation between intracellular pH and growth.

作者信息

Orij Rick, Postmus Jarne, Ter Beek Alex, Brul Stanley, Smits Gertien J

机构信息

Department of Molecular Biology and Microbial Food Safety, Swammerdam Institute for Life Sciences (SILS), University of Amsterdam, The Netherlands.

出版信息

Microbiology (Reading). 2009 Jan;155(Pt 1):268-278. doi: 10.1099/mic.0.022038-0.

Abstract

The specific pH values of cellular compartments affect virtually all biochemical processes, including enzyme activity, protein folding and redox state. Accurate, sensitive and compartment-specific measurements of intracellular pH (pHi) dynamics in living cells are therefore crucial to the understanding of stress response and adaptation. We used the pH-sensitive GFP derivative 'ratiometric pHluorin' expressed in the cytosol and in the mitochondrial matrix of growing Saccharomyces cerevisiae to assess the variation in cytosolic pH (pHcyt) and mitochondrial pH (pHmit) in response to nutrient availability, respiratory chain activity, shifts in environmental pH and stress induced by addition of sorbic acid. The in vivo measurement allowed accurate determination of organelle-specific pH, determining a constant pHcyt of 7.2 and a constant pHmit of 7.5 in cells exponentially growing on glucose. We show that pHcyt and pHmit are differentially regulated by carbon source and respiratory chain inhibitors. Upon glucose starvation or sorbic acid stress, pHi decrease coincided with growth stasis. Additionally, pHi and growth coincided similarly in recovery after addition of glucose to glucose-starved cultures or after recovery from a sorbic acid pulse. We suggest a relation between pHi and cellular energy generation, and therefore a relation between pHi and growth.

摘要

细胞区室的特定pH值几乎影响所有生化过程,包括酶活性、蛋白质折叠和氧化还原状态。因此,准确、灵敏且针对特定区室测量活细胞内的pH值(pHi)动态变化对于理解应激反应和适应性至关重要。我们使用在生长的酿酒酵母的细胞质和线粒体基质中表达的pH敏感型GFP衍生物“比率型pH荧光蛋白”,来评估细胞质pH值(pHcyt)和线粒体pH值(pHmit)随营养物质可用性、呼吸链活性、环境pH值变化以及添加山梨酸诱导的应激反应而发生的变化。体内测量能够准确测定细胞器特异性pH值,确定在以葡萄糖为指数生长的细胞中,细胞质pH值恒定为7.2,线粒体pH值恒定为7.5。我们发现,pHcyt和pHmit受碳源和呼吸链抑制剂的不同调节。在葡萄糖饥饿或山梨酸应激时,pHi降低与生长停滞同时发生。此外,在向葡萄糖饥饿的培养物中添加葡萄糖后或从山梨酸脉冲恢复后,pHi与生长恢复情况类似。我们提出pHi与细胞能量产生之间存在关联,因此pHi与生长之间也存在关联。

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