首页> 外文期刊>Journal of Molecular Biology >Conserved positions for ribose recognition: importance of water bridging interactions among ATP, ADP and FAD-protein complexes.
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Conserved positions for ribose recognition: importance of water bridging interactions among ATP, ADP and FAD-protein complexes.

机译:核糖识别的保守位置:ATP,ADP和FAD蛋白复合物之间水桥相互作用的重要性。

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摘要

Analysis of the spatial arrangement of protein and water atoms that form polar interactions with ribose has been performed for a structurally non-redundant dataset of ATP, ADP and FAD-protein complexes. The 26 ligand-protein structures were separated into two groups corresponding to the most populated furanose ring conformations (N and S-domains). Four conserved positions were found for S-domain protein-ligand complexes and five for N-domain complexes. Multiple protein folds and secondary structural elements were represented at a single conserved position. The following novel points were revealed: (i) Two complementary positions sometimes combine to describe a putative atomic spatial location for a specific conserved binding spot. (ii) More than one third of the interactions scored were water-mediated. Thus, conserved spatial positions rich in water atoms are a significant feature of ribose-protein complexes.
机译:已对ATP,ADP和FAD-蛋白质复合物的结构上非冗余数据集进行了与核糖形成极性相互作用的蛋白质和水原子的空间排列分析。将26种配体-蛋白质结构分为对应于人口最多的呋喃糖环构象(N和S结构域)的两组。对于S结构域蛋白-配体复合物,发现四个保守的位置,对于N结构域复合物,发现五个保守的位置。在单个保守位置代表多个蛋白质折叠和二级结构元件。揭示了以下新颖的观点:(i)有时两个互补的位置结合起来描述一个特定的保守结合点的假定的原子空间位置。 (ii)超过三分之一的互动是水介导的。因此,富含水原子的保守空间位置是核糖-蛋白质复合物的重要特征。

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