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首页> 外文期刊>Eukaryotic cell >Involvement of Saccharomyces cerevisiae Avo3p/Tsc11p in Maintaining TOR Complex 2 Integrity and Coupling to Downstream Signaling
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Involvement of Saccharomyces cerevisiae Avo3p/Tsc11p in Maintaining TOR Complex 2 Integrity and Coupling to Downstream Signaling

机译:酿酒酵母Avo3p / Tsc11p参与维持TOR复杂2完整性和下游信号的耦合。

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Target-of-rapamycin proteins (TORs) are Ser/Thr kinases serving a central role in cell growth control. TORs function in two conserved multiprotein complexes, TOR complex 1 (TORC1) and TORC2; the mechanisms underlying their actions and regulation are not fully elucidated. Saccharomyces TORC2, containing Tor2p, Avo1p, Avo2p, Avo3p/Tsc11p, Bit61p, and Lst8p, regulates cell integrity and actin organization. Two classes of avo3 temperature-sensitive (avo3ts) mutants that we previously identified display cell integrity and actin defects, yet one is suppressed by AVO1 while the other is suppressed by AVO2 or SLM1, defining two TORC2 downstream signaling mechanisms, one mediated by Avo1p and the other by Avo2p/Slm1p. Employing these mutants, we explored Avo3p functions in TORC2 structure and signaling. By observing binary protein interactions using coimmunoprecipitation, we discovered that the composition of TORC2 and its recruitment of the downstream effectors Slm1p and Slm2p were differentially affected in different avo3ts mutants. These molecular defects can be corrected only by expressing AVO3, not by expressing suppressors, highlighting the role of Avo3p as a structural and signaling scaffold for TORC2. Phenotypic modifications of avo3ts mutants by deletion of individual Rho1p-GTPase-activating proteins indicate that two TORC2 downstream signaling branches converge on Rho1p activation. Our results also suggest that Avo2p/Slm1p-mediated signaling, but not Avo1p-mediated signaling, links to Rho1p activation specifically through the Rho1p-guanine nucleotide exchange factor Tus1p.
机译:雷帕霉素靶蛋白(TOR)是Ser / Thr激酶,在细胞生长控制中起着核心作用。 TOR在两种保守的多蛋白复合物中起作用,即TOR复合物1(TORC1)和TORC2;其作用和调节的基础机制尚未完全阐明。 酿酒酵母 TORC2包含Tor2p,Avo1p,Avo2p,Avo3p / Tsc11p,Bit61p和Lst8p,可调节细胞完整性和肌动蛋白组织。我们先前确定的两类 avo3 温度敏感( avo3 ts )突变体表现出细胞完整性和肌动蛋白缺陷,但一类被< em> AVO1 ,而另一个被 AVO2 SLM1 抑制,从而定义了两种TORC2下游信号传导机制,一种由Avo1p介导,另一种由Avo2p / Slm1p介导。利用这些突变体,我们探索了Avo3p在TORC2结构和信号传导中的功能。通过使用共免疫沉淀观察二进制蛋白相互作用,我们发现在不同的 avo3 ts 突变体中,TORC2的组成及其下游效应子Slm1p和Slm2p的募集受到不同的影响。这些分子缺陷只能通过表达 AVO3 来纠正,而不能通过表达抑制因子来纠正,从而突出了Avo3p作为TORC2的结构和信号转导支架的作用。通过删除单个Rho1p-GTPase-激活蛋白对 avo3 ts 突变体的表型修饰表明,两个TORC2下游信号分支在Rho1p激活上收敛。我们的结果还表明,Avo2p / Slm1p介导的信号传导,而不是Avo1p介导的信号传导,特别是通过Rho1p-鸟嘌呤核苷酸交换因子Tus1p链接到Rho1p激活。

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