Department of Cellular and Molecular Pharmacology, University of California, San Francisco, CA 94158, USA.
Science. 2011 May 6;332(6030):680-6. doi: 10.1126/science.1198701.
The spatial and temporal organization of molecules within a cell is critical for coordinating the many distinct activities carried out by the cell. In an increasing number of biological signaling processes, scaffold proteins have been found to play a central role in physically assembling the relevant molecular components. Although most scaffolds use a simple tethering mechanism to increase the efficiency of interaction between individual partner molecules, these proteins can also exert complex allosteric control over their partners and are themselves the target of regulation. Scaffold proteins offer a simple, flexible strategy for regulating selectivity in pathways, shaping output behaviors, and achieving new responses from preexisting signaling components. As a result, scaffold proteins have been exploited by evolution, pathogens, and cellular engineers to reshape cellular behavior.
细胞内分子的空间和时间组织对于协调细胞进行的许多不同活动至关重要。在越来越多的生物信号转导过程中,支架蛋白被发现在物理组装相关分子组成部分方面发挥着核心作用。尽管大多数支架蛋白使用简单的系链机制来提高单个伴侣分子之间相互作用的效率,但这些蛋白也可以对其伴侣施加复杂的变构控制,并且自身也是调控的靶标。支架蛋白为调节途径中的选择性、塑造输出行为以及从现有信号转导成分中获得新的反应提供了一种简单、灵活的策略。因此,进化、病原体和细胞工程师都利用支架蛋白来重塑细胞行为。
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