Structural Influences: Cholesterol, Drug, and Proton Binding to Full-Length Influenza A M2 Protein

被引:36
作者
Ekanayake, E. Vindana [1 ,2 ]
Fu, Riqiang [2 ]
Cross, Timothy A. [1 ,2 ,3 ]
机构
[1] Florida State Univ, Dept Chem & Biochem, Tallahassee, FL 32306 USA
[2] Florida State Univ, Natl High Magnet Field Lab, Tallahassee, FL 32306 USA
[3] Florida State Univ, Inst Mol Biophys, Tallahassee, FL 32306 USA
基金
美国国家卫生研究院; 美国国家科学基金会;
关键词
SOLID-STATE NMR; INDUCED CONFORMATIONAL-CHANGE; MEMBRANE-PROTEIN; LIPID-BILAYERS; CYTOPLASMIC TAIL; ION-CHANNEL; VIRUS; TRANSMEMBRANE; MECHANISM; SPECTROSCOPY;
D O I
10.1016/j.bpj.2015.11.3529
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
The structure and functions of the M2 protein from Influenza A are sensitive to pH, cholesterol, and the antiinfluenza drug Amantadine. This is a tetrameric membrane protein of 97 amino-acid residues that has multiple functions, among them as a proton-selective channel and facilitator of viral budding, replacing the need for the ESCRT proteins that other viruses utilize. Here, various amino-acid-specific-labeled samples of the full-length protein were prepared and mixed, so that only inter-residue C-13-C-13 cross peaks between two differently labeled proteins representing interhelical interactions are observed. This channel is activated at slightly acidic pH values in the endosome when the His 37 residues in the middle of the transmembrane domain take on a +2 or +3 charged state. Changes observed here in interhelical distances in the N-terminus can be accounted for by modest structural changes, and no significant changes in structure were detected in the C-terminal portion of the channel upon activation of the channel. Amantadine, which blocks proton conductance by binding in the aqueous pore near the N-terminus, however, significantly modifies the tetrameric structure on the opposite side of the membrane. The interactions between the juxtamembrane amphipathic helix of one monomer and its neighboring monomer observed in the absence of drug are disrupted in its presence. However, the addition of cholesterol prevents this structural disruption. In fact, strong interactions are observed between cholesterol and residues in the amphipathic helix, accounting for cholesterol binding adjacent to a native palmitoylation site and near to an interhelix crevice that is typical of cholesterol binding sites. The resultant stabilization of the amphipathic helix deep in the bilayer interface facilitates the bilayer curvature that is essential for viral budding.
引用
收藏
页码:1391 / 1399
页数:9
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