Probing Structural Dynamics and Topology of the KCNE1 Membrane Protein in Lipid Bilayers via Site-Directed Spin Labeling and Electron Paramagnetic Resonance Spectroscopy

被引:23
|
作者
Sahu, Indra D. [1 ]
Craig, Andrew F. [1 ]
Dunagan, Megan M. [1 ]
Troxel, Kaylee R. [1 ]
Zhang, Rongfu [1 ]
Meiberg, Andrew G. [1 ]
Harmon, Corrinne N. [1 ]
McCarrick, Robert M. [1 ]
Kroncke, Brett M. [2 ,3 ]
Sanders, Charles R. [2 ,3 ]
Lorigan, Gary A. [1 ]
机构
[1] Miami Univ, Dept Chem & Biochem, Oxford, OH 45056 USA
[2] Vanderbilt Univ, Dept Biochem, Nashville, TN 37232 USA
[3] Vanderbilt Univ, Struct Biol Ctr, Nashville, TN 37232 USA
基金
美国国家科学基金会; 美国国家卫生研究院;
关键词
LONG-QT-SYNDROME; AMYLOID PRECURSOR PROTEIN; POTASSIUM CHANNEL; TRANSMEMBRANE DOMAIN; 3-DIMENSIONAL ARCHITECTURE; CONFORMATIONAL-CHANGES; CLOSED CONFORMATION; EPR SPECTROSCOPY; TERMINAL DOMAIN; BASIC-PROTEIN;
D O I
10.1021/acs.biochem.5b00505
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
KCNE1 is a single transmembrane protein that modulates the function of voltage-gated potassium channels, including KCNQ1. Hereditary mutations in the genes encoding either protein can result in diseases such as congenital deafness, long QT syndrome, ventricular tachyarrhythmia, syncope, and sudden cardiac death. Despite the biological significance of KCNE1, the structure and dynamic properties of its physiologically relevant native membrane-bound state are not fully understood. In this study, the structural dynamics and topology of KCNE1 in bilayered lipid vesicles was investigated using site-directed spin labeling (SDSL) and electron paramagnetic resonance (EPR) spectroscopy. A 53-residue nitroxide EPR scan of the KCNE1 protein sequence including all 27 residues of the transmembrane domain (45-71) and 26 residues of the N- and C-termini of KCNE1 in lipid bilayered vesicles was analyzed in terms of nitroxide side-chain motion. Continuous wave-EPR spectral line shape analysis indicated the nitroxide spin label side-chains located in the KCNE1 TMD are less mobile when compared to the extracellular region of KCNE1. The EPR data also revealed that the C-terminus of KCNE1 is more mobile when compared to the N-terminus. EPR power saturation experiments were performed on 41 sites including 18 residues previously proposed to reside in the transmembrane domain (TMD) and 23 residues of the N- and C-termini to determine the topology of KCNE1 with respect to the 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine (POPC)/1-palmitoyl-2-oleoyl-snglycero-3-phospho-(1'-rac-glycerol) (POPG) lipid bilayers. The results indicated that the transmembrane domain is indeed buried within the membrane, spanning the width of the lipid biayer. Power saturation data also revealed that the extracellular region of KCNE1 is solvent-exposed with some of the portions partially or weakly interacting with the membrane surface. These results are consistent with the previously published solution NMR structure of KCNE1 in micelles.
引用
收藏
页码:6402 / 6412
页数:11
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