Avruch Joseph, Lin Yenshou, Long Xiaomeng, Murthy Sid, Ortiz-Vega Sara
Diabetes Unit and Medical Services and Department of Molecular Biology, Massachusetts General Hospital, Boston, Massachusetts, USA.
Curr Opin Clin Nutr Metab Care. 2005 Jan;8(1):67-72. doi: 10.1097/00075197-200501000-00010.
The aim of this article is to summarize recent advances in the understanding of the regulation of the target of rapamycin (TOR), a protein kinase that is regulated independently by insulin, amino acids and energy sufficiency and which participates in the control of the component of protein synthesis responsible for cell growth.
These have been found in two major areas: genetic studies in Drosophila followed by studies in mammalian systems have identified the components of the Tuberous Sclerosis protein complex, a heterodimer of the proteins Hamartin and Tuberin, as inhibitors of TOR signaling, and as the major targets by which the insulin/IGF-1 signal transduction pathway, through the protein kinase PKB, and the energy status of the cell, through the AMP-activated protein kinase, regulate the TOR signaling. In turn, the inhibitory action of the tuberous sclerosis protein complex has been shown to be mediated by its ability to deactivate the small, ras-like GTPase Rheb. A second advance has been achieved by the identification of the TOR-associated protein raptor, as an indispensable substrate binding sub-unit of the TOR complex, and as the site at which the inhibitory effects on TOR signaling of rapamycin and amino acid deficiency converge.
These findings bring us closer to the understanding of how nutrients and insulin coordinate protein synthesis to regulate anabolic cell growth.
本文旨在总结对雷帕霉素靶蛋白(TOR)调控机制理解的最新进展。TOR是一种蛋白激酶,受胰岛素、氨基酸和能量充足状态独立调控,参与负责细胞生长的蛋白质合成组分的控制。
主要在两个领域取得了进展:对果蝇的遗传学研究以及随后在哺乳动物系统中的研究,确定了结节性硬化蛋白复合物的组分,即错构瘤蛋白和结节蛋白的异二聚体,作为TOR信号传导的抑制剂,并且是胰岛素/IGF-1信号转导途径通过蛋白激酶PKB以及细胞能量状态通过AMP激活的蛋白激酶调节TOR信号传导的主要靶点。反过来,结节性硬化蛋白复合物的抑制作用已被证明是通过其使小的、类Ras GTP酶Rheb失活的能力介导的。第二个进展是通过鉴定TOR相关蛋白猛禽(raptor)实现的,它是TOR复合物不可或缺的底物结合亚基,也是雷帕霉素和氨基酸缺乏对TOR信号传导抑制作用的汇聚位点。
这些发现使我们更接近理解营养素和胰岛素如何协调蛋白质合成以调节合成代谢细胞生长。