Electron paramagnetic resonance spectroscopic characterization of the human KCNE3 protein in lipodisq nanoparticles for structural dynamics of membrane proteins

被引:0
|
作者
Scheyer, Matthew W. [1 ]
Campbell, Conner [1 ]
William, Patrick L. [1 ]
Hussain, Mustakim [1 ]
Begum, Afsana [1 ]
Fonseca, Sebastian Escobar [1 ]
Asare, Isaac K. [1 ]
Dabney, Peyton [1 ]
Dabney-Smith, Carole [2 ]
Lorigan, Gary A. [2 ]
Sahu, Indra D. [1 ,2 ]
机构
[1] Campbellsville Univ, Nat Sci Div, Campbellsville, KY 42718 USA
[2] Miami Univ, Dept Chem & Biochem, Oxford, OH 45056 USA
基金
美国国家科学基金会;
关键词
Lipodisq nanoparticles; SMALPs; KCNE3; EPR spectroscopy; Membrane mimetic; Membrane proteins; Structural dynamics; SOLID-STATE NMR; BIFUNCTIONAL SPIN LABELS; MALEIC ACID COPOLYMER; NITROXIDE SIDE-CHAIN; DISTANCE MEASUREMENTS; LIPID-BILAYERS; 3-DIMENSIONAL ARCHITECTURE; TRANSMEMBRANE DOMAIN; MOLECULAR-DYNAMICS; NA+/H+-ANTIPORTER;
D O I
10.1016/j.bpc.2023.107080
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
One of the major challenges in solubilization of membrane proteins is to find the optimal physiological envi-ronment for their biophysical studies. EPR spectroscopy is a powerful biophysical technique for studying the structural and dynamic properties of macromolecules. However, the challenges in the membrane protein sample preparation and flexible motion of the spin label limit the utilization of EPR spectroscopy to a majority of membrane protein systems in a physiological membrane-bound state. Recently, lipodisq nanoparticles or styrene-maleic acid copolymer-lipid nanoparticles (SMALPs) have emerged as a membrane mimetic system for investi-gating the structural studies of membrane proteins. However, its detail characterization for membrane protein studies is still poorly understood. Recently, we characterized the potassium channel membrane protein KCNQ1 voltage sensing domain (KCNQ1-VSD) and KCNE1 reconstituted into lipodisq nanoparticles using EPR spec-troscopy. In this study, the potassium channel accessory protein KCNE3 containing flexible N-and C-termini was encapsulated into proteoliposomes and lipodisq nanoparticles and characterized for studying its structural and dynamic properties using nitroxide based site-directed spin labeling EPR spectroscopy. CW-EPR lineshape analysis data indicated an increase in spectral line broadenings with the addition of the styrene-maleic acid (SMA) polymer which approaches close to the rigid limit providing a homogeneous stabilization of the protein-lipid complex. Similarly, EPR DEER measurements indicated an enhanced quality of distance measurements with an increase in the phase memory time (Tm) values upon incorporation of the sample into lipodisq nanoparticles, when compared to proteoliposomes. These results agree with the solution NMR structural structure of the KCNE3 and EPR studies of other membrane proteins in lipodisq nanoparticles. This study along with our earlier studies will provide the reference characterization data that will provide benefit to the membrane protein researchers for studying structural dynamics of challenging membrane proteins.
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页数:13
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