16,957 research outputs found
Comment on 'Valid molecular dynamics simulations of human hemoglobin require a surprisingly large box size'.
A recent molecular dynamics investigation into the stability of hemoglobin concluded that the unliganded protein is only stable in the T state when a solvent box is used in the simulations that is ten times larger than what is usually employed (El Hage et al., 2018). Here, we express three main concerns about that study. In addition, we find that with an order of magnitude more statistics, the reported box size dependence is not reproducible. Overall, no significant effects on the kinetics or thermodynamics of conformational transitions were observed
Free energy surfaces from nonequilibrium processes without work measurement
Recent developments in statistical mechanics have allowed the estimation of
equilibrium free energies from the statistics of work measurements during
processes that drive the system out of equilibrium. Here a different class of
processes is considered, wherein the system is prepared and released from a
nonequilibrium state, and no external work is involved during its observation.
For such ``clamp-and-release'' processes, a simple strategy for the estimation
of equilibrium free energies is offered. The method is illustrated with
numerical simulations, and analyzed in the context of tethered single-molecule
experiments.Comment: 15 pages, 3 figures (1 color); accepted to J. Chem. Phy
Predicting kinase inhibitor resistance: Physics-based and data-driven approaches.
Resistance to small molecule drugs often emerges in cancer cells, viruses, and bacteria as a result of the evolutionary pressure exerted by the therapy. Protein mutations that directly impair drug binding are frequently involved in resistance, and the ability to anticipate these mutations would be beneficial in drug development and clinical practice. Here, we evaluate the ability of three distinct computational methods to predict ligand binding affinity changes upon protein mutation for the cancer target Abl kinase. These structure-based approaches rely on first-principle statistical mechanics, mixed physics- and knowledge-based potentials, and machine learning, and were able to estimate binding affinity changes and identify resistant mutations with remarkable accuracy. We expect that these complementary approaches will enable the routine prediction of resistance-causing mutations in a variety of other target proteins
Mapping of sensitivity to oil spills in the Lithuanian Baltic Sea coast.
This research develops an integrated environmental assessment tool for Lithuanian coastal area that takes due account of the major oil spill risks posed by the D-6 oil drilling platform, vessel traffic in the south-eastern Baltic Sea, and operation of the Butinge oil terminal. The goal of this paper is to present an environmental sensitivity index (ESI) mapping approach based on four specific indexes: coastal features (ESIC), socio-economic aspects (ESISE), biological (ESIB) and fishery resources (ESIF). The relevant methodology approach was selected. The core dataset is provided by GIS-based environmental atlas updated with other relevant GIS data of Lithuanian coastal resources. Four ESI maps were developed and an overall environmental sensitivity index (OESI) map produced. Results indicate that in the case of an oil spill, two areas need to be prioritized due to their biologic and socio-economic resources: the 25 km long shoreline between the settlements of Nida-Juodkrante on the Curonian Spit (CS) and the mainland coast (MC) between the settlements Palanga and Sventoji
Aging in place:adjusting post-WWII neighborhoods of midsize cities into senior friendly neighborhoods
An instrument to measure independent walking: are there differences between preterm and fullterm infants?
Morfologische, ecologische en governance principes voor ecodynamisch ontwerpen: toegespitst op de 'Bouwen met Natuur' pilots Friese IJsselmeerkust : building with nature, case Markermeer IJsselmeer, MIJ 4.2, Deliverable 1.6
Het concept āBouwen met Natuurā richt zich op gebiedsgerichte ontwerpprocessen langs kusten met het doel om de interactie tussen menselijke ingrepen en ecosysteem processen te vergroten. Het concept maakt maximaal gebruik van dynamiek van natuurlijke processen en van de inzet van bio@engineers bij de ontwikkeling van nieuwe kustlandschappen. De uitdaging bij āBouwen met Natuurā projecten is om een menselijke ambitie m.b.t. waterbouw te realiseren op een wijze die maximaal gebruik maakt van het ecosysteem en tevens dit ecosysteem versterkt. Het zoeken naar een win@win situatie voor zowel de menselijke waterbouwambitie als voor de natuurwaarden is dus iets anders dan natuur behouden die er is of nieuwe natuur ontwikkelen. Ook is het concept fundamenteel anders dan het compenseren van natuur die elders verloren gaat
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