在低亮氨酸条件下,wh2 - psr1 - psr2复合物选择性调节TORC1和自噬,但不调节氮耗竭。

Yitao Wang, Yang Ping, Rui Zhou, Guiqin Wang, Yu Zhang, Xueyu Yang, Mingjun Zhao, Dongsheng Liu, Madhura Kulkarni, Heather Lamb, Qingwei Niu, J Marie Hardwick, Xinchen Teng
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引用次数: 0

摘要

氨基酸和氨是细胞生长所需氮的来源,以前认为它们对酵母有类似的作用。与这一观点一致的是,耗尽这两种氮源中的任何一种都会抑制雷帕霉素复合物1 (TORC1)的靶点,导致诱导巨噬/自噬和抑制细胞生长。在这项研究中,我们发现在酿酒酵母中,wh2和卤酸脱卤酶(HAD)型磷酸酶Psr1和Psr2区分了这两种氮源,因为wh2 -Psr1-Psr2复合物在低亮氨酸的情况下抑制TORC1,而在无氮的情况下则不抑制。相反,由Npr2和Npr3控制的平行途径,seh1相关复合物抑制TORC1 (SEACIT)的组分,在低亮氨酸和氮消耗条件下抑制TORC1。wh2、Psr1、Psr2突变体和Tor1片段的共免疫沉淀支持wh2招募Psr1和Psr2到TORC1的模型。因此,在低亮氨酸条件下,wh2和Tor1之间的相互作用增加,而在缺氮条件下则减少。虽然Psr1和Psr2磷酸酶的靶点尚不清楚,但其活性位点的突变可消除其对TORC1的抑制作用。与HAD磷酸酶在物种间的保守性一致,人类HAD磷酸酶CTDSP1 (CTD小磷酸酶1)、CTDSP2和CTDSPL可以在功能上取代酵母中的Psr1和Psr2,在低亮氨酸条件下恢复TORC1抑制和自噬激活。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Whi2-Psr1-Psr2 complex selectively regulates TORC1 and autophagy under low leucine conditions but not nitrogen depletion.

Amino acids and ammonia serve as sources of nitrogen for cell growth and were previously thought to have similar effects on yeast. Consistent with this idea, depletion of either of these two nitrogen sources inhibits the target of rapamycin complex 1 (TORC1), leading to induction of macroautophagy/autophagy and inhibition of cell growth. In this study, we show that Whi2 and the haloacid dehalogenase (HAD)-type phosphatases Psr1 and Psr2 distinguish between these two nitrogen sources in Saccharomyces cerevisiae, as the Whi2-Psr1-Psr2 complex inhibits TORC1 in response to low leucine but not in the absence of nitrogen. In contrast, a parallel pathway controlled by Npr2 and Npr3, components of the Seh1-associated complex inhibiting TORC1 (SEACIT), suppress TORC1 under both low leucine- and nitrogen-depletion conditions. Co-immunoprecipitations with mutants of Whi2, Psr1, Psr2 and fragments of Tor1 support the model that Whi2 recruits Psr1 and Psr2 to TORC1. In accordance, the interaction between Whi2 and Tor1 appears to increase under low leucine but decreases under nitrogen-depletion conditions. Although the targets of Psr1 and Psr2 phosphatases are not known, mutation of their active sites abolishes their inhibitory effects on TORC1. Consistent with the conservation of HAD phosphatases across species, human HAD phosphatases CTDSP1 (CTD small phosphatase 1), CTDSP2, and CTDSPL can functionally replace Psr1 and Psr2 in yeast, restoring TORC1 inhibition and autophagy activation in response to low leucine conditions.

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