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Sequence and Structure Properties Uncover the Natural Classification of Protein Complexes Formed by Intrinsically Disordered Proteins via Mutual Synergistic Folding

机译:序列和结构特性揭示了通过相互协同折叠由固有紊乱的蛋白质形成的蛋白质复合物的自然分类

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摘要

Intrinsically disordered proteins mediate crucial biological functions through their interactions with other proteins. Mutual synergistic folding (MSF) occurs when all interacting proteins are disordered, folding into a stable structure in the course of the complex formation. In these cases, the folding and binding processes occur in parallel, lending the resulting structures uniquely heterogeneous features. Currently there are no dedicated classification approaches that take into account the particular biological and biophysical properties of MSF complexes. Here, we present a scalable clustering-based classification scheme, built on redundancy-filtered features that describe the sequence and structure properties of the complexes and the role of the interaction, which is directly responsible for structure formation. Using this approach, we define six major types of MSF complexes, corresponding to biologically meaningful groups. Hence, the presented method also shows that differences in binding strength, subcellular localization, and regulation are encoded in the sequence and structural properties of proteins. While current protein structure classification methods can also handle complex structures, we show that the developed scheme is fundamentally different, and since it takes into account defining features of MSF complexes, it serves as a better representation of structures arising through this specific interaction mode.
机译:本质上无序的蛋白质通过它们与其他蛋白质的相互作用来介导关键的生物学功能。当所有相互作用的蛋白质都失序时,就会发生相互协同折叠(MSF),在复合物形成过程中会折叠成稳定的结构。在这些情况下,折叠和绑定过程并行发生,从而使所得结构具有独特的异质特征。当前,没有专门的分类方法考虑到MSF配合物的特定生物学和生物物理特性。在这里,我们提出了一种基于可伸缩聚类的分类方案,该方案基于冗余过滤的功能,这些功能描述了复合物的序列和结构属性以及相互作用的作用,而相互作用直接负责结构的形成。使用这种方法,我们定义了六种主要类型的MSF配合物,它们与具有生物学意义的组相对应。因此,提出的方法还表明结合强度,亚细胞定位和调节的差异被编码在蛋白质的序列和结构特性中。虽然当前的蛋白质结构分类方法也可以处理复杂的结构,但我们证明,所开发的方案从根本上来说是不同的,并且由于考虑了MSF复合物的定义特征,因此可以更好地表示通过这种特定的相互作用模式产生的结构。

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