Faculty of Life Sciences, University of Manchester, Oxford Road, Manchester M13 9PT, UK.
Cancer Research UK Manchester Institute, Alderley Park, Macclesfield SK10 4TG, UK.
Open Biol. 2021 Apr;11(4):200405. doi: 10.1098/rsob.200405. Epub 2021 Apr 7.
Fluctuations in TOR, AMPK and MAP-kinase signalling maintain cellular homeostasis and coordinate growth and division with environmental context. We have applied quantitative, SILAC mass spectrometry to map TOR and nutrient-controlled signalling in the fission yeast . Phosphorylation levels at more than 1000 sites were altered following nitrogen stress or Torin1 inhibition of the TORC1 and TORC2 networks that comprise TOR signalling. One hundred and thirty of these sites were regulated by both perturbations, and the majority of these (119) new targets have not previously been linked to either nutritional or TOR control in either yeasts or humans. Elimination of AMPK inhibition of TORC1, by removal of AMPK (), identified phosphosites where nitrogen stress-induced changes were independent of TOR control. Using a yeast strain with an ATP analogue-sensitized Cdc2 kinase, we excluded sites that were changed as an indirect consequence of mitotic control modulation by nitrogen stress or TOR signalling. Nutritional control of gene expression was reflected in multiple targets in RNA metabolism, while significant modulation of actin cytoskeletal components points to adaptations in morphogenesis and cell integrity networks. Reduced phosphorylation of the MAPKK Byr1, at a site whose human equivalent controls docking between MEK and ERK, prevented sexual differentiation when resources were sparse but not eliminated.
TOR、AMPK 和 MAP 激酶信号的波动维持着细胞的内稳态,并根据环境背景协调生长和分裂。我们已经应用定量 SILAC 质谱技术来绘制裂殖酵母中 TOR 和营养控制信号的图谱。氮胁迫或 Torin1 抑制 TORC1 和 TORC2 网络(包括 TOR 信号)后,超过 1000 个位点的磷酸化水平发生改变。这些位点中有 130 个受到这两种干扰的调节,其中大多数(119 个)新靶点以前从未在酵母或人类中与营养或 TOR 控制联系在一起。通过去除 AMPK()消除了 AMPK 对 TORC1 的抑制,从而确定了氮胁迫诱导的变化与 TOR 控制无关的磷酸化位点。使用一种带有 ATP 类似物敏感的 Cdc2 激酶的酵母菌株,我们排除了由于氮应激或 TOR 信号对有丝分裂控制的调节而间接改变的位点。营养控制基因表达反映在 RNA 代谢的多个靶标中,而肌动蛋白细胞骨架成分的显著调节表明形态发生和细胞完整性网络的适应性。在一个位点上,MAPKK Byr1 的磷酸化减少,该位点的人类等效物控制 MEK 和 ERK 之间的对接,当资源匮乏时会阻止有性分化,但不会消除有性分化。