Abstract
Conspectus Biological activities of enzymes, including regulation or coordination of mechanistic stages preceding or following the chemical step, may depend upon kinetic or equilibrium changes in protein conformations. Exchange of more open or flexible conformational states with more closed or constrained states can influence inhibition, allosteric regulation, substrate recognition, formation of the Michaelis complex, side reactions, and product release. NMR spectroscopy has long been applied to the study of conformational dynamic processes in enzymes because these phenomena can be characterized over multiple time scales with atomic site resolution. Laboratory-frame spin-relaxation measurements, sensitive to reorientational motions on picosecond-nanosecond time scales, and rotating-frame relaxation-dispersion measurements, sensitive to chemical exchange processes on microsecond-millisecond time scales, provide information on both conformational distributions and kinetics. This Account reviews NMR spin relaxation studies of the enzymes ribonuclease HI from mesophilic (Escherichia coli) and thermophilic (Thermus thermophilus) bacteria, E. coli AlkB, and Saccharomyces cerevisiae triosephosphate isomerase to illustrate the contributions of conformational flexibility and dynamics to diverse steps in enzyme mechanism. Spin relaxation measurements and molecular dynamics (MD) simulations of the bacterial ribonuclease H enzymes show that the handle region, one of three loop regions that interact with substrates, interconverts between two conformations. Comparison of these conformations with the structure of the complex between Homo sapiens ribonuclease H and a DNA:RNA substrate suggests that the more closed state is inhibitory to binding. The large population of the closed conformation in T. thermophilus ribonuclease H contributes to the increased Michaelis constant compared with the E. coli enzyme. NMR spin relaxation and fluorescence spectroscopy have characterized a conformational transition in AlkB between an open state, in which the side chains of methionine residues in the active site are disordered, and a closed state, in which these residues are ordered. The open state is highly populated in the AlkB/Zn(II) complex, and the closed state is highly populated in the AlkB/Zn(II)/2OG/substrate complex, in which 2OG is the 2-oxoglutarate cosubstrate and the substrate is a methylated DNA oligonucleotide. The equilibrium is shifted to approximately equal populations of the two conformations in the AlkB/Zn(II)/2OG complex. The conformational shift induced by 2OG ensures that 2OG binds to AlkB/Zn(II) prior to the substrate. In addition, the opening rate of the closed conformation limits premature release of substrate, preventing generation of toxic side products by reaction with water. Closure of active site loop 6 in triosephosphate isomerase is critical for forming the Michaelis complex, but reopening of the loop after the reaction is (partially) rate limiting. NMR spin relaxation and MD simulations of triosephosphate isomerase in complex with glycerol 3-phosphate demonstrate that closure of loop 6 is a highly correlated rigid-body motion. The MD simulations also indicate that motions of Gly173 in the most flexible region of loop 6 contribute to opening of the active site loop for product release. Considered together, these three enzyme systems illustrate the power of NMR spin relaxation investigations in providing global insights into the role of conformational dynamic processes in the mechanisms of enzymes from initial activation to final product release.
PMID: 25574774 [PubMed - as supplied by publisher]
Insecticidal fungi: Enzyme inhibitors extracted
Insecticidal fungi: Enzyme inhibitors extracted
http://www.spectroscopynow.com/common/images/thumbnails/149a327c9ae.jpgScreening of dozens of strains of fungi that infect insects has led to the discovery of a strong inhibitor for the enzyme tyrosinase. Tyrosinase activity is involved in insect development processes but also in human aging, the development of melanoma, wound healing, and even in the browning of fruits and vegetables.
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11-15-2014 01:47 PM
[NMR paper] A novel 2-oxoindolinylidene inhibitor of bacterial MurD ligase: Enzyme kinetics, protein-inhibitor binding by NMR and a molecular dynamics study.
A novel 2-oxoindolinylidene inhibitor of bacterial MurD ligase: Enzyme kinetics, protein-inhibitor binding by NMR and a molecular dynamics study.
Related Articles A novel 2-oxoindolinylidene inhibitor of bacterial MurD ligase: Enzyme kinetics, protein-inhibitor binding by NMR and a molecular dynamics study.
Eur J Med Chem. 2014 Jun 11;83C:92-101
Authors: Sim?i? M, Pureber K, Kristan K, Urleb U, Kocjan D, Grdadolnik SG
Abstract
N-(5-(5-nitro-2-oxo-1,2-dihydro-3H-indol-3-ylidene)4-oxo-2-thioxo-1,3-thiazolidin-3-yl)nicotinamide,...
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06-22-2014 12:24 PM
A Novel 2-oxoindolinylidene Inhibitor of Bacterial MurD Ligase: Enzyme Kinetics, Protein-Inhibitor Binding by NMR and a Molecular Dynamics Study
A Novel 2-oxoindolinylidene Inhibitor of Bacterial MurD Ligase: Enzyme Kinetics, Protein-Inhibitor Binding by NMR and a Molecular Dynamics Study
Publication date: Available online 11 June 2014
Source:European Journal of Medicinal Chemistry</br>
Author(s): Mihael Sim?i? , Kaja Pureber , Katja Kristan , Uro Urleb , Darko Kocjan , Simona Goli? Grdadolnik</br>
N-(5-(5-nitro-2-oxo-1,2-dihydro-3H-indol-3-ylidene)4-oxo-2-thioxo-1,3-thiazolidin-3-yl)nicotinamide, an 2-oxoindolinylidene derivative with novel structure scaffold, was evaluated for inhibition potency...
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06-12-2014 10:52 PM
[NMR paper] Evolution of the concept of conformational dynamics of enzyme functions over half of a century: A personal view.
Evolution of the concept of conformational dynamics of enzyme functions over half of a century: A personal view.
http://www.ncbi.nlm.nih.gov/corehtml/query/egifs/http:--media.wiley.com-assets-2250-98-WileyOnlineLibrary-Button_120x27px_FullText.gif Related Articles Evolution of the concept of conformational dynamics of enzyme functions over half of a century: A personal view.
Biopolymers. 2013 Apr;99(4):263-9
Authors: Závodszky P, Hajdú I
Abstract
To most physicists, it was always evident that conformational fluctuation is an inherent...
[NMR paper] NMR structure of cysteinyl-phosphorylated enzyme IIB of the N,N'-diacetylchitobiose-s
NMR structure of cysteinyl-phosphorylated enzyme IIB of the N,N'-diacetylchitobiose-specific phosphoenolpyruvate-dependent phosphotransferase system of Escherichia coli.
Related Articles NMR structure of cysteinyl-phosphorylated enzyme IIB of the N,N'-diacetylchitobiose-specific phosphoenolpyruvate-dependent phosphotransferase system of Escherichia coli.
J Mol Biol. 2001 May 18;308(5):993-1009
Authors: Ab E, Schuurman-Wolters GK, Nijlant D, Dijkstra K, Saier MH, Robillard GT, Scheek RM
The determination by NMR of the solution structure of the...
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11-19-2010 08:32 PM
[NMR paper] 1H NMR Self-Diffusion in Polymer-Surfactant Nanocapsules and Cryogels with Enzyme.
1H NMR Self-Diffusion in Polymer-Surfactant Nanocapsules and Cryogels with Enzyme.
Related Articles 1H NMR Self-Diffusion in Polymer-Surfactant Nanocapsules and Cryogels with Enzyme.
J Colloid Interface Sci. 1998 Oct 1;206(1):168-176
Authors: Shapiro YE, Pykhteeva EG, Levashov AV
The multicomponent self-diffusion in nanocapsules and cryogel biocatalytic systems containing alpha-chymotrypsin has been studied with the NMR-PGSE method at various temperatures and compared with the diffusion of such systems without enzyme. Unilamellar vesicles have...
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11-17-2010 11:15 PM
NMR post-doc position: NMR-based dynamics study of enzyme mechanism
The following post-doc position in NMR is available in University of Missouri:
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We have an opening for a postdoctoral fellow to use NMR to study dynamics of an enzyme while it is carrying on reversible catalysis. The prospects are promising and can be compared with thorough enzymology and crystallography of its ligand-dependent conformational changes (done in our dept.). The enzyme is sizeable enough to be challenging, but we have a battery of excellent 800 MHz spectra of deuterated samples for launching the project. The postdoctoral fellow will be housed in a new...