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A more precise characterization of chaperonin substrates

机译:伴侣蛋白底物的更精确表征

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Motivation: Molecular chaperones prevent the aggregation of their substrate proteins and thereby ensure that they reach their functional native state. The bacterial GroEL/ES chaperonin system is understood in great detail on a structural, mechanistic and functional level; its interactors in Escherichia coli have been identified and characterized. However, a long-standing question in the field is: What makes a protein a chaperone substrate?Results: Here we identify, using a bioinformatics-based approach a simple set of quantities, which characterize the GroEL-substrate proteome. We define three novel parameters differentiating GroEL interactors from other cellular proteins: lower rate of evolution, hydrophobicity and aggregation propensity. Combining them with other known features to a simple Bayesian predictor allows us to identify known homologous and heterologous GroEL substrateproteins. We discuss our findings in relation to established mechanisms of protein folding and evolutionary buffering by chaperones.
机译:动机:分子伴侣阻止其底物蛋白质的聚集,从而确保它们达到其功能性天然状态。细菌GroEL / ES伴侣蛋白系统在结构,机制和功能水平上都得到了非常详细的了解。其在大肠杆菌中的相互作用已被鉴定和表征。但是,该领域中一个长期存在的问题是:是什么使蛋白质成为分子伴侣底物?结果:在这里,我们使用基于生物信息学的方法确定了一组简单的量,这些量是GroEL底物蛋白质组的特征。我们定义了三个区别于其他细胞蛋白的GroEL相互作用因子的新颖参数:较低的进化速率,疏水性和聚集倾向。将它们与其他已知特征结合到简单的贝叶斯预测因子,使我们能够鉴定出已知的同源和异源GroEL底物蛋白。我们讨论有关蛋白质折叠和伴侣蛋白进化缓冲的已建立机制的发现。

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