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Ste20 和 Cla4 通过一种新型的 MAPK 非依赖途径调节甘油生物合成酶 Gpd1 的表达。

Ste20 and Cla4 modulate the expression of the glycerol biosynthesis enzyme Gpd1 by a novel MAPK-independent pathway.

机构信息

Division of Biosciences, Brunel University London, UK.

Division of Biosciences, Brunel University London, UK.

出版信息

Biochem Biophys Res Commun. 2019 Oct 1;517(4):611-616. doi: 10.1016/j.bbrc.2019.07.072. Epub 2019 Aug 5.

Abstract

p21-activated kinases (PAKs) are important signalling molecules with a wide range of functions. In budding yeast, the main PAKs Ste20 and Cla4 regulate the response to hyperosmotic stress, which is an excellent model for the adaptation to changing environmental conditions. In this pathway, the only known function of Ste20 and Cla4 is the activation of a mitogen-activated protein kinase (MAPK) cascade through Ste11. This eventually leads to increased transcription of glycerol biosynthesis genes, the most important response to hyperosmotic shock. Here, we show that Ste20 and Cla4 not only stimulate transcription, they also bind to the glycerol biosynthesis enzymes Gpd1, Gpp1 and Gpp2. Protein levels of Gpd1, the enzyme that catalyzes the rate limiting step in glycerol synthesis, positively correlate with glucose availability. Using a chemical genetics approach, we find that simultaneous inactivation of STE20 and CLA4 reduces the glucose-induced increase of Gpd1 levels, whereas the deletion of either STE20 or CLA4 alone has no effect. This is also observed for the hyperosmotic stress-induced increase of Gpd1 levels. Importantly, under both conditions the deletion of STE11 has no effect on Gpd1 induction. These observations suggest that Ste20 and Cla4 not only have a role in the transcriptional regulation of GPD1 through Ste11. They also seem to modulate GPD1 expression at another level such as translation or protein degradation.

摘要

p21 激活激酶(PAKs)是一类具有广泛功能的重要信号分子。在 budding yeast 中,主要的 PAKs Ste20 和 Cla4 调节对高渗胁迫的反应,这是适应环境条件变化的一个很好的模型。在这个途径中,Ste20 和 Cla4 的唯一已知功能是通过 Ste11 激活丝裂原活化蛋白激酶(MAPK)级联。这最终导致甘油生物合成基因的转录增加,这是对高渗休克的最重要反应。在这里,我们表明 Ste20 和 Cla4 不仅刺激转录,它们还与甘油生物合成酶 Gpd1、Gpp1 和 Gpp2 结合。催化甘油合成限速步骤的酶 Gpd1 的蛋白水平与葡萄糖的可用性呈正相关。我们使用化学遗传学方法发现,同时失活 STE20 和 CLA4 会降低葡萄糖诱导的 Gpd1 水平增加,而单独缺失 STE20 或 CLA4 则没有影响。这也观察到高渗胁迫诱导的 Gpd1 水平增加。重要的是,在这两种情况下,STE11 的缺失对 Gpd1 的诱导都没有影响。这些观察结果表明,Ste20 和 Cla4 不仅通过 Ste11 在 GPD1 的转录调控中发挥作用。它们似乎还在另一个水平(如翻译或蛋白降解)调节 GPD1 的表达。

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