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Functional and Structural Features of Disease-Related Protein Variants

机译:疾病相关蛋白变异的功能和结构特征

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摘要

Modern sequencing technologies provide an unprecedented amount of data of single-nucleotide variations occurring in coding regions and leading to changes in the expressed protein sequences. A significant fraction of these single-residue variations is linked to disease onset and collected in public databases. In recent years, many scientific studies have been focusing on the dissection of salient features of disease-related variations from different perspectives. In this work, we complement previous analyses by updating a dataset of disease-related variations occurring in proteins with 3D structure. Within this dataset, we describe functional and structural features that can be of interest for characterizing disease-related variations, including major chemico-physical properties, the strength of association to disease of variation types, their effect on protein stability, their location on the protein structure, and their distribution in Pfam structural/functional protein models. Our results support previous findings obtained in different data sets and introduce Pfam models as possible fingerprints of patterns of disease related single-nucleotide variations.
机译:现代测序技术提供编码区中发生的单核苷酸变化的前所未有的数据,并导致表达蛋白质序列的变化。这些单残基变异的大部分与疾病发作联系在公共数据库中。近年来,许多科学研究一直专注于与不同观点不同疾病相关变化的解剖。在这项工作中,通过更新具有3D结构的蛋白质中发生的疾病相关变化的数据集来补充先前的分析。在该数据集中,我们描述了表征疾病相关变化的功能和结构特征,包括主要的化学物理性质,包括变异类型的关联强度,它们对蛋白质稳定性的影响,它们对蛋白质的位置结构,及其在PFAM结构/功能蛋白模型中的分布。我们的结果支持在不同数据集中获得的先前发现,并将PFAM模型引入与疾病相关的单核苷酸变化模式的可能性。

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