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视紫红质中三角形水簇独特拓扑结构的起源。

Origin of the unique topology of the triangular water cluster in rhodopsin.

作者信息

Noji Tomoyasu, Tsujimura Masaki, Saito Keisuke, Kojima Keiichi, Sudo Yuki, Ishikita Hiroshi

机构信息

Department of Applied Chemistry, Graduate School of Engineering, The University of Tokyo, Tokyo 113-8654, Japan.

Research Center for Advanced Science and Technology, The University of Tokyo, Tokyo 153-8904, Japan.

出版信息

Biophys Physicobiol. 2025 Aug 23;22(3):e220018. doi: 10.2142/biophysico.bppb-v22.0018. eCollection 2025.

Abstract

The crystal structure of rhodopsin (RxR) reveals a triangular cluster of three water molecules (W413, W415, and W419) at the extracellular proton-release site, near Glu187 and Glu197. Using a quantum mechanical/molecular mechanical approach, we identified the structural nature of this unique water cluster. The triangular shape is best reproduced when all three water molecules are neutral HO with protonated Glu187 and deprotonated Glu197. Attempts to place HO at any of these water molecules result in spontaneous proton transfer to one of the acidic residues and significant distortion from the crystal structure. The plane defined by the triangular water cluster extends into the guanidinium plane of Arg71, with both aligned along the W413...W419 axis. This extended plane lies nearly perpendicular to a five-membered, ring-like H-bond network involving two carboxyl oxygen atoms from Glu187 and one from Glu197. The resulting bipartite planar architecture, defined by the water triangle, Arg71, and the Glu187/Glu197 network may reflect the exceptional thermal stability in RxR.

摘要

视紫红质(RxR)的晶体结构显示,在细胞外质子释放位点,靠近谷氨酸187(Glu187)和谷氨酸197(Glu197)处,有一个由三个水分子(W413、W415和W419)组成的三角形簇。我们采用量子力学/分子力学方法,确定了这个独特水簇的结构性质。当所有三个水分子均为中性的HO,谷氨酸187质子化且谷氨酸197去质子化时,三角形形状能得到最佳重现。若尝试将HO置于这些水分子中的任何一个上,都会导致质子自发转移至其中一个酸性残基,并使晶体结构发生显著畸变。由三角形水簇所定义的平面延伸至精氨酸71(Arg71)的胍基平面,两者均沿W413...W419轴排列。这个延伸平面几乎垂直于一个五元环状氢键网络,该网络涉及来自谷氨酸187的两个羧基氧原子和来自谷氨酸197的一个羧基氧原子。由水三角形、精氨酸71以及谷氨酸187/谷氨酸197网络所定义的这种二分平面结构,可能反映了视紫红质中卓越的热稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1322/12445927/f945f17f8bf2/22_e220018-g001.jpg

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