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细胞质 pH 通过独特的 GTPases(Arf1 和 Gtr1)调节细胞生长,以促进 Ras/PKA 和 TORC1 活性。

Cytosolic pH regulates cell growth through distinct GTPases, Arf1 and Gtr1, to promote Ras/PKA and TORC1 activity.

机构信息

Institute of Biochemistry, ETH Zurich, 8093 Zurich, Switzerland; Competence Center for Systems Physiology and Metabolic Diseases, 8093 Zurich, Switzerland.

Institute of Biochemistry, ETH Zurich, 8093 Zurich, Switzerland; Life Science Zurich, PhD Program Systems Biology of Complex Diseases, 8093 Zurich, Switzerland.

出版信息

Mol Cell. 2014 Aug 7;55(3):409-21. doi: 10.1016/j.molcel.2014.06.002. Epub 2014 Jul 4.

Abstract

Regulation of cell growth by nutrients is governed by highly conserved signaling pathways, yet mechanisms of nutrient sensing are still poorly understood. In yeast, glucose activates both the Ras/PKA pathway and TORC1, which coordinately regulate growth through enhancing translation and ribosome biogenesis and suppressing autophagy. Here, we show that cytosolic pH acts as a cellular signal to activate Ras and TORC1 in response to glucose availability. We demonstrate that cytosolic pH is sensitive to the quality and quantity of the available carbon source (C-source). Interestingly, Ras/PKA and TORC1 are both activated through the vacuolar ATPase (V-ATPase), which was previously identified as a sensor for cytosolic pH in vivo. V-ATPase interacts with two distinct GTPases, Arf1 and Gtr1, which are required for Ras and TORC1 activation, respectively. Together, these data provide a molecular mechanism for how cytosolic pH links C-source availability to the activity of signaling networks promoting cell growth.

摘要

细胞生长受营养物质的调控是由高度保守的信号通路控制的,但营养物质感应的机制仍知之甚少。在酵母中,葡萄糖激活 Ras/PKA 途径和 TORC1,它们通过增强翻译和核糖体生物发生以及抑制自噬来协同调节生长。在这里,我们表明细胞质 pH 作为一种细胞信号,可响应葡萄糖的可用性激活 Ras 和 TORC1。我们证明细胞质 pH 对可用碳源 (C 源) 的质量和数量敏感。有趣的是,Ras/PKA 和 TORC1 都通过液泡型 ATP 酶 (V-ATPase) 激活,V-ATPase 先前被鉴定为体内细胞质 pH 的传感器。V-ATPase 与两种不同的 GTP 酶(Arf1 和 Gtr1)相互作用,它们分别是 Ras 和 TORC1 激活所必需的。总之,这些数据提供了一个分子机制,说明细胞质 pH 如何将 C 源的可用性与促进细胞生长的信号网络的活性联系起来。

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