核苷酸变异对高度保守蛋白影响的计算研究:以肌动蛋白为例。

Biophysics and Physicobiology Pub Date : 2022-07-28 eCollection Date: 2022-01-01 DOI:10.2142/biophysico.bppb-v19.0025
Ha T T Duong, Hirofumi Suzuki, Saki Katagiri, Mayu Shibata, Misae Arai, Kei Yura
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摘要

人类个体基因组测序可以研究核苷酸变异、氨基酸取代、对蛋白质结构的影响和疾病之间的关系。许多研究已经发现了普遍的趋势,例如,致病变异往往出现在蛋白质结构的隐藏区域,良性变异往往出现在蛋白质表面,进化保守残基的变异往往是致病的。这些趋势是从具有氨基酸序列标准进化变化的球状蛋白中推断出来的。在这项研究中,我们研究了肌动蛋白的变异分布,这是一种高度保守的蛋白质。许多核苷酸变异和肌动蛋白的三维结构已在数据库中登记。通过结合这些数据,我们发现隐藏在蛋白质内部的变异是相当良性的,而蛋白质表面的变异是致病的。这种变异影响的特殊分布可能归因于肌动蛋白中蛋白质-蛋白质相互作用中蛋白质表面的广泛使用。
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Computational study of the impact of nucleotide variations on highly conserved proteins: In the case of actin.

Sequencing of individual human genomes enables studying relationship among nucleotide variations, amino acid substitutions, effect on protein structures and diseases. Many studies have found general tendencies, for instance, that pathogenic variations tend to be found in the buried regions of the protein structures, that benign variations tend to be found on the surface of the proteins, and that variations on evolutionary conserved residues tend to be pathogenic. These tendencies were deduced from globular proteins with standard evolutionary changes in amino acid sequences. In this study, we investigated the variation distribution on actin, one of the highly conserved proteins. Many nucleotide variations and three-dimensional structures of actin have been registered in databases. By combining those data, we found that variations buried inside the protein were rather benign and variations on the surface of the protein were pathogenic. This idiosyncratic distribution of the variation impact is likely ascribed to the extensive use of the surface of the protein for protein-protein interactions in actin.

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Description of peptide bond planarity from high-resolution neutron crystallography. Population dynamics models for various forms of adaptation. Frontiers of microbial movement research. Unveiling the physics underlying symmetry breaking of the actin cytoskeleton: An artificial cell-based approach. SATORI: Amplification-free digital RNA detection method for the diagnosis of viral infections.
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