نتایج جستجو برای: docking energy landscapes

تعداد نتایج: 704031  

Journal: :Physical review. E, Statistical, nonlinear, and soft matter physics 2008
Dengming Ming Marian Anghel Michael E Wall

Inherent structure theory is used to discover strong connections between simple characteristics of protein structure and the energy landscape of a Gō model. The potential energies and vibrational free energies of inherent structures are highly correlated, and both reflect simple measures of networks of native contacts. These connections have important consequences for models of protein dynamics...

Journal: :The Journal of chemical physics 2015
Halim Kusumaatmaja

A variety of methods are developed for characterising the free energy landscapes of continuum, Landau-type free energy models. Using morphologies of lipid vesicles and a multistable liquid crystal device as examples, I show that the methods allow systematic study of not only the most relevant minimum energy configurations, but also the transition pathways between any two minima, as well as thei...

Journal: :Journal of computational chemistry 2007
Hung-Ming Chen Bo-Fu Liu Hui-Ling Huang Shiow-Fen Hwang Shinn-Ying Ho

Protein-ligand docking can be formulated as a parameter optimization problem associated with an accurate scoring function, which aims to identify the translation, orientation, and conformation of a docked ligand with the lowest energy. The parameter optimization problem for highly flexible ligands with many rotatable bonds is more difficult than that for less flexible ligands using genetic algo...

Journal: :Acta Crystallographica Section A Foundations of Crystallography 2011

Journal: :Journal of Chemical Theory and Computation 2016

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2013
Xiakun Chu Linfeng Gan Erkang Wang Jin Wang

Biomolecular functions are determined by their interactions with other molecules. Biomolecular recognition is often flexible and associated with large conformational changes involving both binding and folding. However, the global and physical understanding for the process is still challenging. Here, we quantified the intrinsic energy landscapes of flexible biomolecular recognition in terms of b...

Journal: :Global change biology 2014
Cindy E Morris Franz Conen J Alex Huffman Vaughan Phillips Ulrich Pöschl David C Sands

Landscapes influence precipitation via the water vapor and energy fluxes they generate. Biologically active landscapes also generate aerosols containing microorganisms, some being capable of catalyzing ice formation and crystal growth in clouds at temperatures near 0 °C. The resulting precipitation is beneficial for the growth of plants and microorganisms. Mounting evidence from observations an...

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