QM/MM study of energy storage and molecular rearrangements due to the primary event in vision.
about
Showcasing modern molecular dynamics simulations of membrane proteins through G protein-coupled receptors.The mechanism of photo-energy storage in the Halorhodopsin chloride pump.Structure, initial excited-state relaxation, and energy storage of rhodopsin resolved at the multiconfigurational perturbation theory levelRetinal conformation and dynamics in activation of rhodopsin illuminated by solid-state H NMR spectroscopy.Photochemical reaction dynamics of the primary event of vision studied by means of a hybrid molecular simulation.Unusual kinetics of thermal decay of dim-light photoreceptors in vertebrate vision.Molecular mechanism of long-range synergetic color tuning between multiple amino acid residues in conger rhodopsinQM/MM study of the structure, energy storage, and origin of the bathochromic shift in vertebrate and invertebrate bathorhodopsins.Why 11-cis-retinal? Why not 7-cis-, 9-cis-, or 13-cis-retinal in the eye?Quantum mechanical/molecular mechanical structure, enantioselectivity, and spectroscopy of hydroxyretinals and insights into the evolution of color vision in small white butterflies.Spectral tuning of ultraviolet cone pigments: an interhelical lock mechanismSpectral tuning in visual pigments: an ONIOM(QM:MM) study on bovine rhodopsin and its mutants.Quantum mechanical/molecular mechanical studies on spectral tuning mechanisms of visual pigments and other photoactive proteins.Solid-state 2H NMR spectroscopy of retinal proteins in aligned membranes.Color vision: "OH-site" rule for seeing red and green.Structural analysis and dynamics of retinal chromophore in dark and meta I states of rhodopsin from 2H NMR of aligned membranes.Retinal dynamics during light activation of rhodopsin revealed by solid-state NMR spectroscopy.Color tuning in photofunctional proteins.Dynamic structure of retinylidene ligand of rhodopsin probed by molecular simulationsDiscrimination of saturated aldehydes by the rat I7 olfactory receptor.The opsin shift and mechanism of spectral tuning in rhodopsin.Light activation of rhodopsin: insights from molecular dynamics simulations guided by solid-state NMR distance restraints.Electron density deformations provide new insights into the spectral shift of rhodopsins.Probing the remarkable thermal kinetics of visual rhodopsin with E181Q and S186A mutants.Using the ONIOM hybrid method to apply equation of motion CCSD to larger systems: benchmarking and comparison with time-dependent density functional theory, configuration interaction singles, and time-dependent Hartree-Fock.
P2860
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P2860
QM/MM study of energy storage and molecular rearrangements due to the primary event in vision.
description
2004 nî lūn-bûn
@nan
2004 թուականի Օգոստոսին հրատարակուած գիտական յօդուած
@hyw
2004 թվականի օգոստոսին հրատարակված գիտական հոդված
@hy
2004年の論文
@ja
2004年論文
@yue
2004年論文
@zh-hant
2004年論文
@zh-hk
2004年論文
@zh-mo
2004年論文
@zh-tw
2004年论文
@wuu
name
QM/MM study of energy storage ...... o the primary event in vision.
@ast
QM/MM study of energy storage ...... o the primary event in vision.
@en
QM/MM study of energy storage ...... o the primary event in vision.
@nl
type
label
QM/MM study of energy storage ...... o the primary event in vision.
@ast
QM/MM study of energy storage ...... o the primary event in vision.
@en
QM/MM study of energy storage ...... o the primary event in vision.
@nl
prefLabel
QM/MM study of energy storage ...... o the primary event in vision.
@ast
QM/MM study of energy storage ...... o the primary event in vision.
@en
QM/MM study of energy storage ...... o the primary event in vision.
@nl
P2860
P1433
P1476
QM/MM study of energy storage ...... o the primary event in vision.
@en
P2093
Victor S Batista
P2860
P304
P356
10.1529/BIOPHYSJ.104.048264
P407
P577
2004-08-31T00:00:00Z