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内在无序是与14-3-3蛋白结合的伴侣蛋白的一个关键特征。

Intrinsic disorder is a key characteristic in partners that bind 14-3-3 proteins.

作者信息

Bustos Diego M, Iglesias Alberto A

机构信息

Instituto Tecnológico de Chascomús-IIB-INTECH, Camino Circunvalación, Chascomús, Argentina.

出版信息

Proteins. 2006 Apr 1;63(1):35-42. doi: 10.1002/prot.20888.

Abstract

Proteins named 14-3-3 can bind more than 200 different proteins, mostly (but not exclusively) when they are at a phosphorylated state. These partner proteins are involved in different cellular processes, such as cell signaling, transcription factors, cellular morphology, and metabolism; this suggests pleiotropic functionality for 14-3-3 proteins. Recent efforts to establish a rational classification of 14-3-3 binding partners showed neither structural nor functional relatedness in this group of proteins. Using three natural predictors of disorder in proteins, and the structural available information, we show that >90% of 14-3-3 protein partners contain disordered regions. This percentage is significantly high when compared with recent studies on cell signaling and cancer-related proteins or RNA chaperons. More important, almost all 14-3-3-binding sites are inside disordered regions, this reinforcing the importance of structural disorder in this class of proteins. We also propose that a disorder-to-order transition occurs in the binding of 14-3-3 proteins with their partners. We discuss the consequences of the latter for consensus binding sequences, specificity, affinity, and thermodynamic control.

摘要

名为14-3-3的蛋白质能够结合200多种不同的蛋白质,其中大部分(但并非全部)是在它们处于磷酸化状态时。这些伙伴蛋白参与不同的细胞过程,如细胞信号传导、转录因子、细胞形态和代谢;这表明14-3-3蛋白具有多效性功能。最近对14-3-3结合伙伴进行合理分类的研究表明,这组蛋白质在结构和功能上均无相关性。利用蛋白质无序的三个天然预测指标以及现有的结构信息,我们发现超过90%的14-3-3蛋白伙伴含有无序区域。与最近关于细胞信号传导和癌症相关蛋白或RNA伴侣的研究相比,这个比例非常高。更重要的是,几乎所有14-3-3的结合位点都在无序区域内,这进一步强调了结构无序在这类蛋白质中的重要性。我们还提出,14-3-3蛋白与其伙伴结合时会发生从无序到有序的转变。我们讨论了后者对共有结合序列、特异性、亲和力和热力学控制的影响。

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