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Prediction of quaternary structure by analysis of hot spot residues in protein‐protein interfaces: the case of anthranilate phosphoribosyltransferases

机译:蛋白质 - 蛋白质界面的热点残留物预测季结构:含蒽酸磷基转移酶的情况

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摘要

Abstract It is an important goal of computational biology to correctly predict the association state of a protein based on its amino acid sequence and the structures of known homologues. We have pursued this goal on the example of anthranilate phosphoribosyltransferase (AnPRT), an enzyme that is involved in the biosynthesis of the amino acid tryptophan. Firstly, known crystal structures of naturally occurring homodimeric AnPRTs were analyzed using the Protein Interfaces, Surfaces, and Assemblies (PISA) service of the European Bioinformatics Institute (EBI). This led to the identification of two hydrophobic “hot spot” amino acids in the protein‐protein interface that were predicted to be essential for self‐association. Next, in a comprehensive multiple sequence alignment (MSA), naturally occurring AnPRT variants with hydrophilic or charged amino acids in place of hydrophobic residues in the two hot spot positions were identified. Representative variants were characterized in terms of thermal stability, enzymatic activity, and quaternary structure. We found that AnPRT variants with charged residues in both hot spot positions exist exclusively as monomers in solution. Variants with hydrophilic amino acids in one hot spot position occur in both forms, monomer and dimer. The results of the present study provide a detailed characterization of the determinants of the AnPRT monomer‐dimer equilibrium and show that analysis of hot spots in combination with MSAs can be a valuable tool in prediction of protein quaternary structures.
机译:摘要是基于其氨基酸序列和已知同源物的结构正确预测蛋白质的缔合态的重要目标是计算生物学的重要目标。我们追求了对氨基磺酸磷基转移酶(ANPRT)的实例的这种目标,该酶参与氨基酸色氨酸的生物合成。首先,使用欧洲生物信息学研究所(EBI)的蛋白质界面,表面和组件(PISA)进行分析了天然存在的同源胚层的已知晶体结构(eBI)。这导致鉴定蛋白质 - 蛋白质界面中的两个疏水性“热点”氨基酸,预测是对自我关联至关重要的。接下来,在综合的多序列对准(MSA)中,鉴定了具有亲水或带电氨基酸的自然发生的ANPRT变体代替两个热点位置中的疏水残留物。代表性变体表征在热稳定性,酶活性和季结构方面。我们发现,在溶液中的单体中,具有两个热点位置的带电残留物的ANPRT变体仅作为单体存在。在一个热点位置中具有亲水性氨基酸的变体发生在两种形式,单体和二聚体中。本研究的结果提供了ANPRT单体 - 二聚体平衡的决定因素的详细表征,并表明热点与MSA的分析可以是预测蛋白质四元结构的有价值的工具。

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