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Orotidine Monophosphate Decarboxylase

Orotidine Monophosphate Decarboxylase
Author: Jeehiun K. Lee
Publisher: Springer Science & Business Media
Total Pages: 172
Release: 2004-06-25
Genre: Science
ISBN: 9783540205661

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K.N. Houk, D.J. Tantillo, C. Stanton, Y. Hu: What Has Theory and Crystallography Revealed About the Mechanism of Catalysis by Orotidine Monophosphate Decarboxylase?N. Wu, E.F. Pai: Crystallographic Studies of Native and Mutant Orotidine 5'Phosphate Decarboxylases; B.G.


Investigations Into the Mechanism of Orotidine 5'-monophosphate Decarboxylase: Sources of Substrate Destabilization and Transition State Stabilization

Investigations Into the Mechanism of Orotidine 5'-monophosphate Decarboxylase: Sources of Substrate Destabilization and Transition State Stabilization
Author: Vanessa A. Iiams
Publisher:
Total Pages:
Release: 2011
Genre:
ISBN:

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Orotidine 50́ø-monophosphate decarboxylase (OMPDC) achieves a rarely paralleled rate acceleration, yet the catalytic basis prompting this enhancement have yet to be fully elucidated. To accomplish decarboxylation, OMPDC must overcome the high energy barrier due to the localized anionic charge of the intermediate. Mechanistic studies employing enzyme mutagenesis and product or intermediate analogues were used to investigate possible transition state stabilization by a carbene resonance structure. Viability of the carbene structure depends upon a key hydrogen bond between O4 of the substrate and the amide backbone of a conserved serine or threonine. Substitution of the conserved residue with Pro resulted in a kcat/KM of 1 M-1s-1; deletion of the FUMP O4 resulted in a product analogue that does not undergo H6 exchange or inhibit decarboxylation. Hence, indirect evidence reveals the O4-backbone interaction plays an important role for binding and catalysis. OMPDC likely has honed multiple mechanisms to attain its remarkable catalysis. The successful crystallizations of OMPDC a decade ago sparked hypotheses that structure and sequence conserved residues induced productive strain on the substrate-enzyme complex. Here, we demonstrate a new source of stress: a hydrophobic pocket adjacent to the OMP carboxylate that exhibits kinetic parameters characteristic of substrate destabilization. Substitution of these residues with hydrophilic side-chains, by providing hydrogen-bonding partners, decreased kcat by 10 to 10^40́3fold. The same substitutions display very little change in the rate of product H6 exchange, supporting that this hydrophobic pocket affects the substrate-enzyme complex before the transition state. We also provide evidence that hydrophilic residues can insert water molecules into the pocket with detrimental effects to catalysis.


Ab Initio Molecular Dynamics

Ab Initio Molecular Dynamics
Author: Dominik Marx
Publisher: Cambridge University Press
Total Pages: 503
Release: 2009-04-30
Genre: Science
ISBN: 1139477196

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Ab initio molecular dynamics revolutionized the field of realistic computer simulation of complex molecular systems and processes, including chemical reactions, by unifying molecular dynamics and electronic structure theory. This book provides the first coherent presentation of this rapidly growing field, covering a vast range of methods and their applications, from basic theory to advanced methods. This fascinating text for graduate students and researchers contains systematic derivations of various ab initio molecular dynamics techniques to enable readers to understand and assess the merits and drawbacks of commonly used methods. It also discusses the special features of the widely used Car–Parrinello approach, correcting various misconceptions currently found in research literature. The book contains pseudo-code and program layout for typical plane wave electronic structure codes, allowing newcomers to the field to understand commonly used program packages and enabling developers to improve and add new features in their code.


Computational Approaches for Studying Enzyme Mechanism Part A

Computational Approaches for Studying Enzyme Mechanism Part A
Author:
Publisher: Academic Press
Total Pages: 560
Release: 2016-08-04
Genre: Science
ISBN: 0128053631

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Computational Approaches for Studying Enzyme Mechanism Part A, is the first of two volumes in the Methods in Enzymology series, focusses on computational approaches for studying enzyme mechanism. The serial achieves the critically acclaimed gold standard of laboratory practices and remains one of the most highly respected publications in the molecular biosciences. Each volume is eagerly awaited, frequently consulted, and praised by researchers and reviewers alike. Now with over 550 volumes, the series remains a prominent and essential publication for researchers in all fields of life sciences and biotechnology, including biochemistry, chemical biology, microbiology, synthetic biology, cancer research, and genetics to name a few. Focuses on computational approaches for studying enzyme mechanism Continues the legacy of this premier serial with quality chapters authored by leaders in the field Covers research methods in intermediate filament associated proteins, and contains sections on such topics as lamin-associated proteins, intermediate filament-associated proteins and plakin, and other cytoskeletal cross-linkers


Synthesis of Orotidine-5'-monophosphate Modifications for the Study of the Catalytic Activity of the Enzyme Orotidine-5'-monophosphate Decarboxylase

Synthesis of Orotidine-5'-monophosphate Modifications for the Study of the Catalytic Activity of the Enzyme Orotidine-5'-monophosphate Decarboxylase
Author: Tobias Schmidt
Publisher:
Total Pages:
Release: 2022
Genre:
ISBN:

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In this thesis, the synthesis of OMPD substrate analogs was investigated to further elucidate the mechanism of the OMPD. As inhibiting molecules, 6-thioamido UMP, OMP methyl ester, reduced OMP, and nonpolar substituted UMPs (6-methyl, 6-ethyl, 6-isopropenyl) were synthesized. The synthesized substrate analogs were obtained in high purity after HPLC purification as bis(triethylammonium) salts which were soaked into pre-crystallized resting state crystals of the OMPD (human, wild type) and analyzed via x-ray crystallography. The obtained crystal structures of the synthesized ligands of OMPD w...


Structural Biology in Drug Discovery

Structural Biology in Drug Discovery
Author: Jean-Paul Renaud
Publisher: John Wiley & Sons
Total Pages: 706
Release: 2020-02-05
Genre: Medical
ISBN: 1118681010

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With the most comprehensive and up-to-date overview of structure-based drug discovery covering both experimental and computational approaches, Structural Biology in Drug Discovery: Methods, Techniques, and Practices describes principles, methods, applications, and emerging paradigms of structural biology as a tool for more efficient drug development. Coverage includes successful examples, academic and industry insights, novel concepts, and advances in a rapidly evolving field. The combined chapters, by authors writing from the frontlines of structural biology and drug discovery, give readers a valuable reference and resource that: Presents the benefits, limitations, and potentiality of major techniques in the field such as X-ray crystallography, NMR, neutron crystallography, cryo-EM, mass spectrometry and other biophysical techniques, and computational structural biology Includes detailed chapters on druggability, allostery, complementary use of thermodynamic and kinetic information, and powerful approaches such as structural chemogenomics and fragment-based drug design Emphasizes the need for the in-depth biophysical characterization of protein targets as well as of therapeutic proteins, and for a thorough quality assessment of experimental structures Illustrates advances in the field of established therapeutic targets like kinases, serine proteinases, GPCRs, and epigenetic proteins, and of more challenging ones like protein-protein interactions and intrinsically disordered proteins