نتایج جستجو برای: molecular motion

تعداد نتایج: 839686  

Journal: :Journal of chemical theory and computation 2010
Michael P Eastwood Kate A Stafford Ross A Lippert Morten Ø Jensen Paul Maragakis Cristian Predescu Ron O Dror David E Shaw

Since the behavior of biomolecules can be sensitive to temperature, the ability to accurately calculate and control the temperature in molecular dynamics (MD) simulations is important. Standard analysis of equilibrium MD simulations-even constant-energy simulations with negligible long-term energy drift-often yields different calculated temperatures for different motions, however, in apparent v...

2012
Alessandro Pandini Arianna Fornili Franca Fraternali Jens Kleinjung

Allostery offers a highly specific way to modulate protein function. Therefore, understanding this mechanism is of increasing interest for protein science and drug discovery. However, allosteric signal transmission is difficult to detect experimentally and to model because it is often mediated by local structural changes propagating along multiple pathways. To address this, we developed a metho...

2011
Carsten Kutzner Jacek Czub Helmut Grubmüller

We describe a versatile method to enforce the rotation of subsets of atoms, e.g., a protein subunit, in molecular dynamics (MD) simulations. In particular, we introduce a "flexible axis" technique that allows realistic flexible adaptions of both the rotary subunit as well as the local rotation axis during the simulation. A variety of useful rotation potentials were implemented for the GROMACS 4...

Journal: :Journal of chemical theory and computation 2015
Chad W Hopkins Scott Le Grand Ross C Walker Adrian E Roitberg

Previous studies have shown that the method of hydrogen mass repartitioning (HMR) is a potentially useful tool for accelerating molecular dynamics (MD) simulations. By repartitioning the mass of heavy atoms into the bonded hydrogen atoms, it is possible to slow the highest-frequency motions of the macromolecule under study, thus allowing the time step of the simulation to be increased by up to ...

2011
Elena Papaleo Marco Pasi Matteo Tiberti Luca De Gioia

Networks and clusters of intramolecular interactions, as well as their "communication" across the three-dimensional architecture have a prominent role in determining protein stability and function. Special attention has been dedicated to their role in thermal adaptation. In the present contribution, seven previously experimentally characterized mutants of a cold-adapted α-amylase, featuring mes...

Journal: :The Journal of chemical physics 2007
Anthony M A West Ron Elber David Shalloway

A recently introduced computational algorithm to extend time scales of atomically detailed simulations is illustrated. The algorithm, milestoning, is based on partitioning the dynamics to a sequence of trajectories between "milestones" and constructing a non-Markovian model for the motion along a reaction coordinate. The kinetics of a conformational transition in a blocked alanine is computed a...

2012
Kresten Lindorff-Larsen Paul Maragakis Stefano Piana Michael P. Eastwood Ron O. Dror David E. Shaw

Molecular dynamics simulations provide a vehicle for capturing the structures, motions, and interactions of biological macromolecules in full atomic detail. The accuracy of such simulations, however, is critically dependent on the force field--the mathematical model used to approximate the atomic-level forces acting on the simulated molecular system. Here we present a systematic and extensive e...

Journal: :The Journal of chemical physics 2013
Aurélie Lasoroski Rodolphe Vuilleumier Rodolphe Pollet

Hyperfine coupling tensors of the water molecule coordinated to the Prohance contrast agent in liquid water were calculated within and beyond the point dipole approximation along an ab initio molecular dynamics trajectory. We observe the non-equivalence at short time scales on structural as well as magnetodynamical properties of inner sphere water protons due to hydrogen bonds formation with th...

Journal: :Physical review. E, Statistical, nonlinear, and soft matter physics 2013
Chao Liu Wenfei Li Wei Wang

Recent theoretical and experimental studies suggested the large-amplitude angular jump mechanism of the reorientational motions of water molecules. In this paper, we study the correlation effects of such angular jump motions, which are important for understanding a number of biological processes involving the motions of water molecules, by using molecular dynamics simulations. The results show ...

Journal: :Structure 2006
Raik Grünberg Michael Nilges Johan Leckner

To better understand the interplay between protein-protein binding and protein dynamics, we analyzed molecular dynamics simulations of 17 protein-protein complexes and their unbound components. Complex formation does not restrict the conformational freedom of the partner proteins as a whole, but, rather, it leads to a redistribution of dynamics. We calculate the change in conformational entropy...

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