Redox-coupled proton transfer mechanism in nitrite reductase revealed by femtosecond crystallography.
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Serial crystallography captures enzyme catalysis in copper nitrite reductase at atomic resolution from one crystalDe novo phasing with X-ray laser reveals mosquito larvicide BinAB structureIdentifying and Visualizing Macromolecular Flexibility in Structural BiologyMembrane protein structure determination by SAD, SIR, or SIRAS phasing in serial femtosecond crystallography using an iododetergentHydroxyethyl cellulose matrix applied to serial crystallography.Native phasing of x-ray free-electron laser data for a G protein-coupled receptor.Development of a dose-limiting data collection strategy for serial synchrotron rotation crystallographyData processing pipeline for serial femtosecond crystallography at SACLADesign of Heteronuclear Metalloenzymes.On the state of crystallography at the dawn of the electron microscopy revolution.Recent structural insights into the function of copper nitrite reductases.Protein-ligand complex structure from serial femtosecond crystallography using soaked thermolysin microcrystals and comparison with structures from synchrotron radiationXFELs for structure and dynamics in biology.Active-site protein dynamics and solvent accessibility in native Achromobacter cycloclastes copper nitrite reductase.Atomic resolution structure of serine protease proteinase K at ambient temperature.Experimental phasing of serial femtosecond crystallography data.Experimental phase determination with selenomethionine or mercury-derivatization in serial femtosecond crystallography.Two-colour serial femtosecond crystallography dataset from gadoteridol-derivatized lysozyme for MAD phasing.Capturing an initial intermediate during the P450nor enzymatic reaction using time-resolved XFEL crystallography and caged-substrate.Serial femtosecond crystallography at the SACLA: breakthrough to dynamic structural biology.Copper-Containing Nitrite Reductase Employing Proton-Coupled Spin-Exchanged Electron-Transfer and Multiproton Synchronized Transfer to Reduce Nitrite.An unprecedented dioxygen species revealed by serial femtosecond rotation crystallography in copper nitrite reductase.Shot-by-shot characterization of focused X-ray free electron laser pulses.New molecular packing in a crystal of pseudoazurin from Alcaligenes faecalis: a double-helical arrangement of blue copper.Enzyme catalysis captured using multiple structures from one crystal at varying temperatures.Demonstration of femtosecond X-ray pump X-ray probe diffraction on protein crystals
P2860
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P2860
Redox-coupled proton transfer mechanism in nitrite reductase revealed by femtosecond crystallography.
description
2016 nî lūn-bûn
@nan
2016年の論文
@ja
2016年論文
@yue
2016年論文
@zh-hant
2016年論文
@zh-hk
2016年論文
@zh-mo
2016年論文
@zh-tw
2016年论文
@wuu
2016年论文
@zh
2016年论文
@zh-cn
name
Redox-coupled proton transfer ...... y femtosecond crystallography.
@ast
Redox-coupled proton transfer ...... y femtosecond crystallography.
@en
type
label
Redox-coupled proton transfer ...... y femtosecond crystallography.
@ast
Redox-coupled proton transfer ...... y femtosecond crystallography.
@en
prefLabel
Redox-coupled proton transfer ...... y femtosecond crystallography.
@ast
Redox-coupled proton transfer ...... y femtosecond crystallography.
@en
P2093
P2860
P50
P356
P1476
Redox-coupled proton transfer ...... by femtosecond crystallography
@en
P2093
Changyong Song
Eiichi Mizohata
Eriko Nango
Fumiaki Yumoto
Ka Man Tse
Kensuke Tono
Michihiro Sugahara
Naohiro Matsugaki
Osamu Nureki
Shigeyuki Inoue
P2860
P304
P356
10.1073/PNAS.1517770113
P407
P577
2016-02-29T00:00:00Z