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All Atom Motion Tree detects side chain-related motions and their coupling with domain motion in proteins

机译:所有Atom Motion Tree都检测与侧链相关的运动及其与蛋白质中域运动的耦合

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摘要

Structural changes of proteins are closely related with their molecular function. We previously developed a computational tool, Motion Tree (MT), to compare protein structures and describe structural changes using solely the Cα atoms. Here, we have extended MT to incorporate all heavy atoms to analyze side chain-related (SCR) motions. All Atom Motion Tree (AAMT) was applied to 76 proteins that exhibited a simple domain motion identified by MT. AAMT also detected 921 SCR motions. We examined the coupling of domain and SCR motions and classified the structural changes in terms of coupling. The statistical results indicated that it is common for coupled SCR motions to also couple with the domain motion. The classification correlates properties of domain motions and SCR motions. The AAMT results suggest that a large domain motion with a sizable domain boundary is accompanied by SCR motions composed of more than a single residue, which induces further couplings of SCR motions.
机译:蛋白质的结构变化与其分子功能密切相关。我们之前开发了一种计算工具“运动树(MT)”,用于比较蛋白质结构并仅使用Cα原子描述结构变化。在这里,我们扩展了MT以合并所有重原子来分析与侧链相关(SCR)的运动。将所有Atom Motion Tree(AAMT)应用于显示MT鉴定的简单域运动的76种蛋白质。 AAMT还检测到921次SCR运动。我们检查了域和SCR运动的耦合,并根据耦合对结构变化进行了分类。统计结果表明,耦合的SCR运动与域运动也很常见。该分类将域运动和SCR运动的属性相关联。 AAMT结果表明,具有较大域边界的大域运动伴随着由不止一个残基组成的SCR运动,从而引起SCR运动的进一步耦合。

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