Uritani Masahiro, Hidaka Hidetoshi, Hotta Yukari, Ueno Masaru, Ushimaru Takashi, Toda Takashi
Department of Chemistry, Faculty of Science, Shizuoka University, 836 Oya Suruga-ku, Shizuoka 422-8529, Japan.
Genes Cells. 2006 Dec;11(12):1367-79. doi: 10.1111/j.1365-2443.2006.01025.x.
The target of rapamycin (Tor) plays a pivotal role in cell growth and metabolism. Yeast contains two related proteins, Tor1 and Tor2. In fission yeast, Tor1 is dispensable for normal growth but is involved in amino acid uptake and cell survival under various stress conditions. In contrast, Tor2 is essential for cell proliferation; however, its physiological function remains unknown. Here we characterize the roles of fission yeast Tor2 by creating temperature sensitive (tor2(ts)) mutants. Remarkably, we have found that tor2(ts) mimics nitrogen starvation responses, because the mutant displays a number of phenotypes that are normally induced only on nitrogen deprivation. These include G1 cell-cycle arrest with a small cell size, induction of autophagy and commitment to sexual differentiation. By contrast, tor1Deltator2(ts) double mutant cells show distinct phenotypes, as the cells cease division with normal cell size in the absence of G1 arrest. Tor2 physically interacts with the conserved Rhb1/GTPase. Intriguingly, over-expression of rhb1(+) or deletion of Rhb1-GAP-encoding tsc2(+) is capable of rescuing stress-sensitive phenotypes of the tor1 mutant, implying that Tor1 and Tor2 also share functions in cell survival under adverse environment. We propose that Tor1 and Tor2 are involved in both corroborative and independent roles in nutrient sensing and stress response pathways.
雷帕霉素靶蛋白(Tor)在细胞生长和代谢中起关键作用。酵母含有两种相关蛋白,Tor1和Tor2。在裂殖酵母中,Tor1对正常生长并非必需,但在各种应激条件下参与氨基酸摄取和细胞存活。相比之下,Tor2对细胞增殖至关重要;然而,其生理功能仍不清楚。在这里,我们通过创建温度敏感型(tor2(ts))突变体来表征裂殖酵母Tor2的作用。值得注意的是,我们发现tor2(ts)模拟氮饥饿反应,因为该突变体表现出许多通常仅在氮剥夺时才诱导的表型。这些表型包括G1期细胞周期停滞且细胞体积小、自噬诱导和进入有性分化。相比之下,tor1Δtor2(ts)双突变细胞表现出不同的表型,因为细胞在没有G1期停滞的情况下以正常细胞大小停止分裂。Tor2与保守的Rhb1 / GTP酶发生物理相互作用。有趣的是,rhb1(+)的过表达或编码Rhb1 - GAP的tsc2(+)的缺失能够挽救tor1突变体的应激敏感表型,这意味着Tor1和Tor2在不利环境下的细胞存活中也具有共同功能。我们提出,Tor1和Tor2在营养感知和应激反应途径中既发挥协同作用,也发挥独立作用。