The role of tryptophan cation–pi interactions on ammonia transport through the AmtB ammonia channel

William E.C. Harries , Shahram Khademi , Robert M. Stroud
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引用次数: 1

Abstract

The high-resolution structure of Escherichia coli AmtB ammonia/ammonium channel and proteoliposome functional analysis has provided sufficient information to propose a permeation theory for this integral membrane channel protein. The role of cation–pi interactions at the periplasmic vestibule of the channel is proposed and integrated with molecular and quantum mechanical dynamics simulations and calculations. The structural and simulation data closely reinforce each other and point to cation–pi interactions as one of the primary mechanisms of ligand recruitment within the channel vestibule.

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色氨酸阳离子- π相互作用对氨通过AmtB氨通道转运的作用
大肠杆菌AmtB氨/铵通道的高分辨率结构和蛋白脂质体功能分析为提出该整体膜通道蛋白的渗透理论提供了足够的信息。提出了阳离子- π相互作用在通道周围质前庭的作用,并将其与分子和量子力学动力学模拟和计算相结合。结构和模拟数据紧密地相互加强,并指出阳离子- π相互作用是通道前庭内配体招募的主要机制之一。
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