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Assembly of cell regulatory systems through protein interaction domains [Review]

机译:通过蛋白质相互作用域组装细胞调节系统[综述]

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The sequencing of complete genomes provides a list that includes the proteins responsible for cellular regulation. However, this does not immediately reveal what these proteins do, nor how they are assembled into the molecular machines and functional networks that control cellular behavior. The regulation of many different cellular processes requires the use of protein interaction domains to direct the association of polypeptides with one another and with phospholipids, small molecules, or nucleic acids. The modular nature of these domains, and the flexibility of their binding properties, have likely facilitated the evolution of cellular pathways. Conversely, aberrant interactions can induce abnormal cellular behavior and disease. The fundamental properties of protein interaction domains are discussed in this review and in detailed reviews on individual domains at Science's STKE at http://www.sciencemag.org/cgi/content/full/300/5618/445/DC1. [References: 148]
机译:完整基因组的测序提供了一个清单,其中包括负责细胞调节的蛋白质。但是,这并不能立即揭示这些蛋白质的作用,也不能立即揭示它们如何组装到控制细胞行为的分子机器和功能网络中。许多不同细胞过程的调节需要使用蛋白质相互作用域来指导多肽彼此之间以及与磷脂,小分子或核酸的缔合。这些结构域的模块性质以及其结合特性的灵活性可能促进了细胞途径的进化。相反,异常的相互作用会诱发异常的细胞行为和疾病。蛋白质相互作用域的基本特性在本综述中以及在Science的STKE上有关单个域的详细综述中进行了讨论,网址为http://www.sciencemag.org/cgi/content/full/300/5618/445/DC1。 [参考:148]

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