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Unsolved mysteries of Rag GTPase signaling in yeast

机译:酵母中Rag GTPase信号的未解之谜

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摘要

The target of rapamycin complex 1 (TORC1) plays a central role in controlling eukaryotic cell growth by fine-tuning anabolic and catabolic processes to the nutritional status of organisms and individual cells. Amino acids represent essential and primordial signals that modulate TORC1 activity through the conserved Rag family GTPases. These assemble, as part of larger lysosomal/vacuolar membrane-associated complexes, into heterodimeric sub-complexes, which typically comprise two paralogous Rag GTPases ofopposite 6TP-/GDP-loading status. The TORC1-stimulating/inhibiting states of these heterodimers are controlled by various guanine nucleotide exchange factor (GEF) and GTPase-activating protein fGAP) complexes, which are remarkably conserved in various eukaryotic model systems. Among the latter, the budding yeast Saccharomyces cerevisiae has been instrumental for the elucidation of basic aspects of Rag GTPase regulation and function. Here, we discuss the current state of the respective research, focusing on the major unsolved issues regarding the architecture, regulation, and function of the Rag GTPase containing complexes in yeast. Decoding these mysteries will undoubtedly further shape our understanding of the conserved and divergent principles of nutrient signaling in eukaryotes.
机译:雷帕霉素复合物1(TORC1)的目标通过将合成代谢和分解代谢过程微调至生物体和单个细胞的营养状况,在控制真核细胞生长中发挥核心作用。氨基酸代表通过保守的Rag家族GTPases调节TORC1活性的基本信号和原始信号。这些作为较大的溶酶体/液泡膜相关复合物的一部分组装成异二聚体亚复合物,其通常包含两个与6TP- / GDP-加载状态相反的旁系Rag GTPases。这些异二聚体的TORC1刺激/抑制状态受各种鸟嘌呤核苷酸交换因子(GEF)和GTPase激活蛋白fGAP)复合物控制,这些复合物在各种真核生物模型系统中都非常保守。在后者中,出芽的酿酒酵母对阐明Rag GTPase调控和功能的基本方面起着重要的作用。在这里,我们讨论各自研究的当前状态,重点关注与酵母中含Rag GTPase的复合物的结构,调控和功能有关的主要未解决问题。无疑,对这些奥秘的解读将进一步塑造我们对真核生物营养信号传导守恒和发散原理的理解。

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