Structure of archaerhodopsin-2 at 1.8 Å resolution

Author:

Kouyama Tsutomu,Fujii Ryudo,Kanada Soun,Nakanishi Taichi,Chan Siu Kit,Murakami Midori

Abstract

Archaerhodopsin-2 (aR2), the sole protein found in the claret membrane ofHalorubrumsp. Aus-2, functions as a light-driven proton pump. In this study, structural analysis of aR2 was performed using a novel three-dimensional crystal prepared by the successive fusion of claret membranes. The crystal is made up of stacked membranes, in each of which aR2 trimers are arranged on a hexagonal lattice. This lattice structure resembles that found in the purple membrane ofH. salinarum, except that lipid molecules trapped within the trimeric structure are not distributed with perfect threefold symmetry. Nonetheless, diffraction data at 1.8 Å resolution provide accurate structural information about functionally important residues. It is shown that two glutamates in the proton-release channel form a paired structure that is maintained by a low-barrier hydrogen bond. Although the structure of the proton-release pathway is highly conserved among proton-pumping archaeal rhodopsins, aR2 possesses the following peculiar structural features: (i) the motional freedom of the tryptophan residue that makes contact with the C13 methyl group of retinal is restricted, affecting the formation/decay kinetics of the L state, and (ii) the N-terminal polypeptide folds into an Ω-loop, which may play a role in organizing the higher-order structure.

Publisher

International Union of Crystallography (IUCr)

Subject

General Medicine,Structural Biology

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1. Existence of two substates in the O intermediate of the bacteriorhodopsin photocycle;Biochimica et Biophysica Acta (BBA) - Biomembranes;2022-10

2. QuasAr Odyssey: the origin of fluorescence and its voltage sensitivity in microbial rhodopsins;Nature Communications;2022-09-20

3. Two substates in the O intermediate of the light-driven proton pump archaerhodopsin-2;Biochimica et Biophysica Acta (BBA) - Biomembranes;2022-07

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