Proton affinity changes driving unidirectional proton transport in the bacteriorhodopsin photocycle.
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H++: a server for estimating pKas and adding missing hydrogens to macromoleculesDeprotonation of D96 in Bacteriorhodopsin Opens the Proton Uptake PathwayMolecular mechanisms for generating transmembrane proton gradientsFactors influencing the energetics of electron and proton transfers in proteins. What can be learned from calculations.Polarization spectroscopy of gaseous tropolone in a strong electric field.Statistics and physical origins of pK and ionization state changes upon protein-ligand binding.ProBLM web server: protein and membrane placement and orientation package.Charge state of the globular histone core controls stability of the nucleosomeHow environment supports a state: molecular dynamics simulations of two states in bacteriorhodopsin suggest lipid and water compensation.Multi-dimensional characterization of electrostatic surface potential computation on graphics processorsHalorhodopsin pumps Cl- and bacteriorhodopsin pumps protons by a common mechanism that uses conserved electrostatic interactions.Proton transfer-mediated GPCR activationH++ 3.0: automating pK prediction and the preparation of biomolecular structures for atomistic molecular modeling and simulationsMolecular dynamics simulations of proteins in lipid bilayersGPCR activation: protonation and membrane potentialProtonation and pK changes in protein-ligand binding.Understanding photosynthetic light-harvesting: a bottom up theoretical approach.Water molecules and hydrogen-bonded networks in bacteriorhodopsin--molecular dynamics simulations of the ground state and the M-intermediate.Calculated proton uptake on anaerobic reduction of cytochrome C oxidase: is the reaction electroneutral?Accelerating electrostatic surface potential calculation with multi-scale approximation on graphics processing units.An analytical approach to computing biomolecular electrostatic potential. II. Validation and applicationsAn analytical approach to computing biomolecular electrostatic potential. I. Derivation and analysis.Accuracy of continuum electrostatic calculations based on three common dielectric boundary definitions.A density functional and quantum Monte Carlo study of glutamic acid in vacuo and in a dielectric continuum medium.
P2860
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P2860
Proton affinity changes driving unidirectional proton transport in the bacteriorhodopsin photocycle.
description
2003 nî lūn-bûn
@nan
2003年の論文
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2003年学术文章
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2003年学术文章
@zh
2003年学术文章
@zh-cn
2003年学术文章
@zh-hans
2003年学术文章
@zh-my
2003年学术文章
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2003年學術文章
@zh-hant
name
Proton affinity changes drivin ...... bacteriorhodopsin photocycle.
@en
Proton affinity changes drivin ...... bacteriorhodopsin photocycle.
@nl
type
label
Proton affinity changes drivin ...... bacteriorhodopsin photocycle.
@en
Proton affinity changes drivin ...... bacteriorhodopsin photocycle.
@nl
prefLabel
Proton affinity changes drivin ...... bacteriorhodopsin photocycle.
@en
Proton affinity changes drivin ...... bacteriorhodopsin photocycle.
@nl
P2093
P1476
Proton affinity changes drivin ...... bacteriorhodopsin photocycle.
@en
P2093
Alexander Smondyrev
Alexey Onufriev
Donald Bashford
P304
P356
10.1016/S0022-2836(03)00903-3
P407
P577
2003-10-01T00:00:00Z