Department of Biotechnology and Biosciences, University of Milano-Bicocca, 20126 Milan, Italy.
Departement of Food, Environmental and Nutritional Sciences, University of Milan, 20133 Milan, Italy.
Biomolecules. 2022 Apr 9;12(4):561. doi: 10.3390/biom12040561.
Intrinsically disordered proteins (IDPs) are ensembles of interconverting conformers whose conformational properties are governed by several physico-chemical factors, including their amino acid composition and the arrangement of oppositely charged residues within the primary structure. In this work, we investigate the effects of charge patterning on the average compactness and shape of three model IDPs with different proline content. We model IDP ensemble conformations as ellipsoids, whose size and shape are calculated by combining data from size-exclusion chromatography and native mass spectrometry. For each model IDP, we analyzed the wild-type protein and two synthetic variants with permuted positions of charged residues, where positive and negative amino acids are either evenly distributed or segregated. We found that charge clustering induces remodeling of the conformational ensemble, promoting compaction and/or increasing spherical shape. Our data illustrate that the average shape and volume of the ensembles depend on the charge distribution. The potential effect of other factors, such as chain length, number of proline residues, and secondary structure content, is also discussed. This methodological approach is a straightforward way to model IDP average conformation and decipher the salient sequence attributes influencing IDP structural properties.
无规卷曲蛋白质(IDPs)是由相互转化的构象体组成的集合,其构象性质受多种物理化学因素的控制,包括其氨基酸组成和一级结构中带相反电荷残基的排列。在这项工作中,我们研究了电荷模式对具有不同脯氨酸含量的三种模型 IDP 的平均紧凑性和形状的影响。我们将 IDP 集合构象建模为椭球体,其大小和形状通过结合尺寸排阻色谱和天然质谱的数据来计算。对于每个模型 IDP,我们分析了野生型蛋白和两种带电荷残基位置置换的合成变体,其中正电荷和负电荷氨基酸均匀分布或分离。我们发现,电荷聚类诱导构象集合的重排,促进紧凑化和/或增加球形形状。我们的数据表明,集合的平均形状和体积取决于电荷分布。还讨论了其他因素(如链长、脯氨酸残基数和二级结构含量)的潜在影响。这种方法是一种直接的方法,可以对 IDP 的平均构象进行建模,并解析影响 IDP 结构性质的突出序列属性。