Native mass spectrometry characterization of intact nanodisc lipoprotein complexes.
about
The emerging role of native mass spectrometry in characterizing the structure and dynamics of macromolecular complexes.Membrane protein production in Escherichia coli cell-free lysatesAnalyzing native membrane protein assembly in nanodiscs by combined non-covalent mass spectrometry and synthetic biologyAmphipols outperform dodecylmaltoside micelles in stabilizing membrane protein structure in the gas phase.Native electrospray ionization and electron-capture dissociation for comparison of protein structure in solution and the gas phase.Dynamic protein ligand interactions--insights from MS.Lipid nanotechnologyInterfacing lipid bilayer nanodiscs and silicon photonic sensor arrays for multiplexed protein-lipid and protein-membrane protein interaction screening.Integral membrane proteins and bilayer proteomicsHyphenating size-exclusion chromatography with electrospray mass spectrometry; using on-line liquid-liquid extraction to study the lipid composition of lipoprotein particles.Native mass spectrometry of photosynthetic pigment-protein complexes.Detergent-free mass spectrometry of membrane protein complexes.Interpretation and deconvolution of nanodisc native mass spectra.Investigating macromolecular complexes using top-down mass spectrometry.Interfacing Membrane Mimetics with Mass Spectrometry.Rapid capillary mixing experiments for the analysis of hydrophobic membrane complexes directly from aqueous lipid bilayer solutions.Nanodiscs in Membrane Biochemistry and Biophysics.Recent advances in nanodisc technology for membrane protein studies (2012-2017).Examining the Heterogeneous Genome Content of Multipartite Viruses BMV and CCMV by Native Mass Spectrometry.Bayesian deconvolution of mass and ion mobility spectra: from binary interactions to polydisperse ensembles.Unraveling the Composition and Behavior of Heterogeneous Lipid Nanodiscs by Mass SpectrometryProbing the Lipid Annular Belt by Gas-Phase Dissociation of Membrane Proteins in Nanodiscs.Native MS Analysis of Bacteriorhodopsin and an Empty Nanodisc by Orthogonal Acceleration Time-of-Flight, Orbitrap and Ion Cyclotron Resonance.Fourier Transform-Ion Cyclotron Resonance Mass Spectrometry as a Platform for Characterizing Multimeric Membrane Protein Complexes.Small-angle X-ray and neutron scattering demonstrates that cell-free expression produces properly formed disc-shaped nanolipoprotein particles.Multiplexed silicon photonic sensor arrays enable facile characterization of coagulation protein binding to nanodiscs with variable lipid content.Native Mass Spectrometry for the Characterization of Structure and Interactions of Membrane Proteins.Sortase-mediated labelling of lipid nanodiscs for cellular tracing.
P2860
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P2860
Native mass spectrometry characterization of intact nanodisc lipoprotein complexes.
description
2012 nî lūn-bûn
@nan
2012年の論文
@ja
2012年論文
@yue
2012年論文
@zh-hant
2012年論文
@zh-hk
2012年論文
@zh-mo
2012年論文
@zh-tw
2012年论文
@wuu
2012年论文
@zh
2012年论文
@zh-cn
name
Native mass spectrometry characterization of intact nanodisc lipoprotein complexes.
@ast
Native mass spectrometry characterization of intact nanodisc lipoprotein complexes.
@en
type
label
Native mass spectrometry characterization of intact nanodisc lipoprotein complexes.
@ast
Native mass spectrometry characterization of intact nanodisc lipoprotein complexes.
@en
prefLabel
Native mass spectrometry characterization of intact nanodisc lipoprotein complexes.
@ast
Native mass spectrometry characterization of intact nanodisc lipoprotein complexes.
@en
P2093
P2860
P356
P1433
P1476
Native mass spectrometry characterization of intact nanodisc lipoprotein complexes.
@en
P2093
Michael L Gross
Robert E Blankenship
Stephen G Sligar
Weidong Cui
P2860
P304
P356
10.1021/AC302663F
P407
P577
2012-10-17T00:00:00Z