Membrane proteins structure and dynamics by nuclear magnetic resonance. 2011

Sergey Maltsev, and Gary A Lorigan
Department of Chemistry and Biochemistry, Miami University, Oxford, Ohio, USA.

Membrane proteins represent a challenging class of biological systems to study. They are extremely difficult to crystallize and in most cases they retain their structure and functions only in membrane environments. Therefore, commonly used diffraction methods fail to give detailed molecular structure and other approaches have to be utilized to obtain biologically relevant information. Nuclear magnetic resonance (NMR) spectroscopy, however, can provide powerful structural and dynamical constraints on these complicated systems. Solution- and solid-state NMR are powerful methods for investigating membrane proteins studies. In this work, we briefly review both solution and solid-state NMR techniques for membrane protein studies and illustrate the applications of these methods to elucidate proteins structure, conformation, topology, dynamics, and function. Recent advances in electronics, biological sample preparation, and spectral processing provided opportunities for complex biological systems, such as membrane proteins inside lipid vesicles, to be studied faster and with outstanding quality. New analysis methods therefore have emerged, that benefit from the combination of sample preparation and corresponding specific high-end NMR techniques, which give access to more structural and dynamic information.

UI MeSH Term Description Entries
D008051 Lipid Bilayers Layers of lipid molecules which are two molecules thick. Bilayer systems are frequently studied as models of biological membranes. Bilayers, Lipid,Bilayer, Lipid,Lipid Bilayer
D008565 Membrane Proteins Proteins which are found in membranes including cellular and intracellular membranes. They consist of two types, peripheral and integral proteins. They include most membrane-associated enzymes, antigenic proteins, transport proteins, and drug, hormone, and lectin receptors. Cell Membrane Protein,Cell Membrane Proteins,Cell Surface Protein,Cell Surface Proteins,Integral Membrane Proteins,Membrane-Associated Protein,Surface Protein,Surface Proteins,Integral Membrane Protein,Membrane Protein,Membrane-Associated Proteins,Membrane Associated Protein,Membrane Associated Proteins,Membrane Protein, Cell,Membrane Protein, Integral,Membrane Proteins, Integral,Protein, Cell Membrane,Protein, Cell Surface,Protein, Integral Membrane,Protein, Membrane,Protein, Membrane-Associated,Protein, Surface,Proteins, Cell Membrane,Proteins, Cell Surface,Proteins, Integral Membrane,Proteins, Membrane,Proteins, Membrane-Associated,Proteins, Surface,Surface Protein, Cell
D008823 Micelles Particles consisting of aggregates of molecules held loosely together by secondary bonds. The surface of micelles are usually comprised of amphiphatic compounds that are oriented in a way that minimizes the energy of interaction between the micelle and its environment. Liquids that contain large numbers of suspended micelles are referred to as EMULSIONS. Micelle
D009682 Magnetic Resonance Spectroscopy Spectroscopic method of measuring the magnetic moment of elementary particles such as atomic nuclei, protons or electrons. It is employed in clinical applications such as NMR Tomography (MAGNETIC RESONANCE IMAGING). In Vivo NMR Spectroscopy,MR Spectroscopy,Magnetic Resonance,NMR Spectroscopy,NMR Spectroscopy, In Vivo,Nuclear Magnetic Resonance,Spectroscopy, Magnetic Resonance,Spectroscopy, NMR,Spectroscopy, Nuclear Magnetic Resonance,Magnetic Resonance Spectroscopies,Magnetic Resonance, Nuclear,NMR Spectroscopies,Resonance Spectroscopy, Magnetic,Resonance, Magnetic,Resonance, Nuclear Magnetic,Spectroscopies, NMR,Spectroscopy, MR
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D019852 Diacylglycerol Kinase An enzyme of the transferase class that uses ATP to catalyze the phosphorylation of diacylglycerol to a phosphatidate. EC 2.7.1.107. DAG Kinase,Diacylglycerol Kinase alpha (DGKA),Diglyceride Kinase,1,2-Diacylglycerol Kinase,Arachidonoyl-Diacylglycerol Kinase,Ceramide-Diglyceride Kinase,DGK alpha,DGK beta,DGK delta,DGK gamma,DGK-IV,DGKdelta,1,2 Diacylglycerol Kinase,Arachidonoyl Diacylglycerol Kinase,Ceramide Diglyceride Kinase,Kinase, 1,2-Diacylglycerol,Kinase, Arachidonoyl-Diacylglycerol,Kinase, Ceramide-Diglyceride,Kinase, DAG,Kinase, Diacylglycerol,Kinase, Diglyceride,alpha, DGK,beta, DGK,delta, DGK,gamma, DGK

Related Publications

Sergey Maltsev, and Gary A Lorigan
January 2013, Annual review of analytical chemistry (Palo Alto, Calif.),
Sergey Maltsev, and Gary A Lorigan
January 2001, Analytical biochemistry,
Sergey Maltsev, and Gary A Lorigan
January 2002, Advances in protein chemistry,
Sergey Maltsev, and Gary A Lorigan
January 1994, Methods in enzymology,
Sergey Maltsev, and Gary A Lorigan
January 2001, Methods in enzymology,
Sergey Maltsev, and Gary A Lorigan
October 2019, Biomolecules,
Sergey Maltsev, and Gary A Lorigan
January 2008, Annual review of physical chemistry,
Sergey Maltsev, and Gary A Lorigan
January 2002, Journal of postgraduate medicine,
Sergey Maltsev, and Gary A Lorigan
April 2011, Protein and peptide letters,
Sergey Maltsev, and Gary A Lorigan
January 1971, Journal of agricultural and food chemistry,
Copied contents to your clipboard!