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TOR激酶Tor2的缺失模拟了氮饥饿,并激活了裂殖酵母中的有性发育途径。

Loss of the TOR kinase Tor2 mimics nitrogen starvation and activates the sexual development pathway in fission yeast.

作者信息

Matsuo Tomohiko, Otsubo Yoko, Urano Jun, Tamanoi Fuyuhiko, Yamamoto Masayuki

机构信息

Department of Biophysics and Biochemistry, Graduate School of Science, University of Tokyo, Tokyo 113-0033, Japan.

出版信息

Mol Cell Biol. 2007 Apr;27(8):3154-64. doi: 10.1128/MCB.01039-06. Epub 2007 Jan 29.

Abstract

Fission yeast has two TOR (target of rapamycin) kinases, namely Tor1 and Tor2. Tor1 is required for survival under stressed conditions, proper G(1) arrest, and sexual development. In contrast, Tor2 is essential for growth. To analyze the functions of Tor2, we constructed two temperature-sensitive tor2 mutants. Interestingly, at the restrictive temperature, these mutants mimicked nitrogen starvation by arresting the cell cycle in G(1) phase and initiating sexual development. Microarray analysis indicated that expression of nitrogen starvation-responsive genes was induced extensively when Tor2 function was suppressed, suggesting that Tor2 normally mediates a signal from the nitrogen source. As with mammalian and budding yeast TOR, we find that fission yeast TOR also forms multiprotein complexes analogous to TORC1 and TORC2. The raptor homologue, Mip1, likely forms a complex predominantly with Tor2, producing TORC1. The rictor/Avo3 homologue, Ste20, and the Avo1 homologue, Sin1, appear to form TORC2 mainly with Tor1 but may also bind Tor2. The Lst8 homologue, Wat1, binds to both Tor1 and Tor2. Our analysis shows, with respect to promotion of G(1) arrest and sexual development, that the loss of Tor1 (TORC2) and the loss of Tor2 (TORC1) exhibit opposite effects. This highlights an intriguing functional relationship among TOR kinase complexes in the fission yeast Schizosaccharomyces pombe.

摘要

裂殖酵母有两种雷帕霉素靶蛋白(TOR)激酶,即Tor1和Tor2。Tor1是应激条件下存活、适当的G1期停滞和有性发育所必需的。相比之下,Tor2对生长至关重要。为了分析Tor2的功能,我们构建了两个温度敏感型tor2突变体。有趣的是,在限制温度下,这些突变体通过使细胞周期停滞在G1期并启动有性发育来模拟氮饥饿。微阵列分析表明,当Tor2功能被抑制时,氮饥饿反应基因的表达被广泛诱导,这表明Tor2通常介导来自氮源的信号。与哺乳动物和芽殖酵母的TOR一样,我们发现裂殖酵母TOR也形成类似于TORC1和TORC2的多蛋白复合物。猛禽同源物Mip1可能主要与Tor2形成复合物,产生TORC1。rictor/Avo3同源物Ste20和Avo1同源物Sin1似乎主要与Tor1形成TORC2,但也可能与Tor2结合。Lst8同源物Wat1与Tor1和Tor2都结合。我们的分析表明,就促进G1期停滞和有性发育而言,Tor1(TORC2)的缺失和Tor2(TORC1)的缺失表现出相反的效果。这突出了裂殖酵母粟酒裂殖酵母中TOR激酶复合物之间有趣的功能关系。

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