人体RhCG氨传导机制

Henry J. Hoyhtya, H. Koster, M. M. Christiansen, U. Akgun
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引用次数: 1

摘要

大肠杆菌AmtB与人RhCG以及欧洲亚硝化单胞菌Rh50结构的差异表明AmtB和Rh蛋白的氨传导机制不同。本研究通过分子动力学模拟RhCG和Rh50NE的结构,探讨了两者的机制差异。与AmtB不同,Rh蛋白缺乏质周前庭底部的芳香笼。本报告建立了质周Glu残基作为Rh蛋白的NH +4结合位点,孔入口处的两个Phe残基作为NH3结合位点。nh4分子被另一个铵离子推动,释放出一个质子,奔向苯基门。本研究还发现,与AmtB不同,Rh蛋白孔允许水分子,最终促进NH3从周质传导到细胞质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Human RhCG Ammonia Conduction Mechanism
The structural differences between E. coli AmtB and the human RhCG as well as the Rh50 from Nitrosomonas europaea suggest different ammonia conduction mechanisms for the AmtB and the Rh proteins. This study investigates the mechanism differences by using molecular dynamics simulations on RhCG and Rh50NE structures. Unlike AmtB the Rh proteins lack the aromatic cage at the bottom of the periplasmic vestibule. This report establishes the periplasmic Glu residue as the N H +4 binding site for Rh proteins, and the two Phe residues at the entrance of the pore as the NH3 binding site. The N H +4 molecule pushed by another ammonium releases one of its protons on its way to the phenyl gate. This study also discovers that, unlike AmtB, the Rh protein pores allow water molecules, which eventually facilitates the NH3 conduction from periplasm to cytoplasm.
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