Backbone and Side Chain Dynamics of Uncomplexed Human Adipocyte and Muscle Fatty Acid-Binding Proteins

التفاصيل البيبلوغرافية
العنوان: Backbone and Side Chain Dynamics of Uncomplexed Human Adipocyte and Muscle Fatty Acid-Binding Proteins
المؤلفون: and Luciano Mueller, Rex A. Parker, Michael Wittekind, Mark S. Friedrichs, Ching-Hsuen Chu, Keith L. Constantine, Ii‡ Bennett T. Farmer, Valentina Goldfarb, Jamil Haris
المصدر: Biochemistry. 37:7965-7980
بيانات النشر: American Chemical Society (ACS), 1998.
سنة النشر: 1998
مصطلحات موضوعية: Intracellular Fluid, Models, Molecular, Protein Conformation, Stereochemistry, Nerve Tissue Proteins, Fatty Acid-Binding Proteins, Myelin P2 Protein, Biochemistry, Fatty acid-binding protein, Mice, chemistry.chemical_compound, Adipocyte, Adipocytes, Side chain, Animals, Humans, Molecule, Computer Simulation, Muscle, Skeletal, Nuclear Magnetic Resonance, Biomolecular, Nitrogen Isotopes, Chemistry, Tumor Suppressor Proteins, Dynamics (mechanics), Relaxation (NMR), Metabolism, Neoplasm Proteins, Cytosol, Thermodynamics, lipids (amino acids, peptides, and proteins), Carrier Proteins, Fatty Acid-Binding Protein 7, Hydrogen, Protein Binding
الوصف: Adipocyte lipid-binding protein (A-LBP) and muscle fatty acid-binding protein (M-FABP) are members of a family of small ( approximately 15 kDa) cytosolic proteins that are involved in the metabolism of fatty acids and other lipid-soluble molecules. Although highly homologous (65%) and structurally very similar, A-LBP and M-FABP display distinct ligand binding characteristics. Since ligand binding may be influenced by intrinsic protein dynamical properties, we have characterized the backbone and side chain dynamics of uncomplexed (apo) human A-LBP and M-FABP. Backbone dynamics were characterized by measurements of 15N T1 and T2 values and ¿1H¿-15N NOEs. These data were analyzed using model-free spectral density functions and reduced spectral density mapping. The dynamics of methyl-containing side chains were charaterized by measurements of 2H T1 and T1rho relaxation times of 13C1H22H groups. The 2H relaxation data were analyzed using the model-free approach. For A-LBP, 15N relaxation data were obtained for 111 residues and 2H relaxation data were obtained for 42 methyl groups. For M-FABP, 15N relaxation data were obtained for 111 residues and 2H relaxation data were obtained for 53 methyl groups. The intrinsic flexibilities of these two proteins are compared, with particular emphasis placed on binding pocket residues. There are a number of distinct dynamical differences among corresponding residues between the two proteins. In particular, many residues display greater backbone picosecond to nanosecond and/or microsecond to millisecond time scale mobility in A-LBP relative to M-FABP, including F57, K58, and most residues in alpha-helix 2 (residues 28-35). Variations in the dynamics of this region may play a role in ligand selectivity. The side chains lining the fatty acid binding pocket display a wide range of motional restriction in both proteins. Side chains showing distinct dynamical differences between the two proteins include those of residues 20, 29, and 51. This information provides a necessary benchmark for determining dynamical changes induced by ligand binding and may ultimately lead to an enhanced understanding of ligand affinity and selectivity among fatty acid-binding proteins.
تدمد: 1520-4995
0006-2960
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::17b4b6f70f6468e9307bbd02944826ef
https://doi.org/10.1021/bi980203o
رقم الأكسشن: edsair.doi.dedup.....17b4b6f70f6468e9307bbd02944826ef
قاعدة البيانات: OpenAIRE