AbstractMagic-angle spinning nuclear magnetic resonance is well suited for the study of membrane proteins in the nativelike lipid environment. However, the natural cellular membrane is invariably more complex than the proteoliposomes most often used for solid-state NMR (SSNMR) studies, and differences may affect the structure and dynamics of the proteins under examination. In this work we use SSNMR and other biochemical and biophysical methods to probe the structure of a seven-transmembrane helical photoreceptor, Anabaena sensory rhodopsin (ASR), prepared in the Escherichia coli inner membrane, and compare it to that in a bilayer formed by DMPC/DMPA lipids. We find that ASR is organized into trimers in both environments but forms two-dimens...
Proteins are dynamic entities and populate ensembles of conformations. Transitions between states wi...
Solid-state NMR is a versatile and powerful tool for determining the dynamic structure of membrane p...
Membrane proteins are one of the main targets of medicinal research with over 50% of all medicines t...
AbstractMagic-angle spinning nuclear magnetic resonance is well suited for the study of membrane pro...
Oligomerization of membrane proteins is common in nature. Here, we combine spin-labeling double elec...
The feasibility of using solid-state MAS NMR for in situ structural characterization of the LR11 (so...
AbstractSolid-state NMR spectroscopy is an efficient tool for following conformational dynamics of m...
AbstractProteorhodopsins are typical retinal-binding light-driven proton pumps of heptahelical archi...
SummaryMicrobial rhodopsins execute diverse biological functions in the cellular membrane. A mechani...
Membrane proteins function as important communication channels of the cell and its environment that ...
SummarySelecting a suitable membrane-mimicking environment is of fundamental importance for the inve...
We present crystal structures of the Anabaena sensory rhodopsin transducer (ASRT), a soluble cytopla...
AbstractThe 3D structures or dynamic feature of fully hydrated membrane proteins are very important ...
AbstractThe biochemical processes of living cells involve a numerous series of reactions that work w...
AbstractThe motional averaging of powder pattern line shapes is one of the most fundamental aspects ...
Proteins are dynamic entities and populate ensembles of conformations. Transitions between states wi...
Solid-state NMR is a versatile and powerful tool for determining the dynamic structure of membrane p...
Membrane proteins are one of the main targets of medicinal research with over 50% of all medicines t...
AbstractMagic-angle spinning nuclear magnetic resonance is well suited for the study of membrane pro...
Oligomerization of membrane proteins is common in nature. Here, we combine spin-labeling double elec...
The feasibility of using solid-state MAS NMR for in situ structural characterization of the LR11 (so...
AbstractSolid-state NMR spectroscopy is an efficient tool for following conformational dynamics of m...
AbstractProteorhodopsins are typical retinal-binding light-driven proton pumps of heptahelical archi...
SummaryMicrobial rhodopsins execute diverse biological functions in the cellular membrane. A mechani...
Membrane proteins function as important communication channels of the cell and its environment that ...
SummarySelecting a suitable membrane-mimicking environment is of fundamental importance for the inve...
We present crystal structures of the Anabaena sensory rhodopsin transducer (ASRT), a soluble cytopla...
AbstractThe 3D structures or dynamic feature of fully hydrated membrane proteins are very important ...
AbstractThe biochemical processes of living cells involve a numerous series of reactions that work w...
AbstractThe motional averaging of powder pattern line shapes is one of the most fundamental aspects ...
Proteins are dynamic entities and populate ensembles of conformations. Transitions between states wi...
Solid-state NMR is a versatile and powerful tool for determining the dynamic structure of membrane p...
Membrane proteins are one of the main targets of medicinal research with over 50% of all medicines t...