Membrane proteins play critical biochemical roles but remain challenging to study. Recently, native or nondenaturing mass spectrometry (MS) has made great strides in characterizing membrane protein interactions. However, conventional native MS relies on detergent micelles, which may disrupt natural interactions. Lipoprotein nanodiscs provide a platform to present membrane proteins for native MS within a lipid bilayer environment, but previous native MS of membrane proteins in nanodiscs has been limited by the intermediate stability of nanodiscs. It is difficult to eject membrane proteins from nanodiscs for native MS but also difficult to retain intact nanodisc complexes with membrane proteins inside. Here, we employed chemical reagents that...
Coordination between membrane proteins and their surrounding lipid environment dictates the function...
Mass spectrometry (MS) has emerged as a powerful tool to study membrane protein complexes and protei...
Mass spectrometry (MS) has emerged as a powerful tool to study membrane protein complexes and protei...
Membrane proteins mediate critical physiological roles which establishes them as attractive therapeu...
Membrane proteins play vital roles in many biological processes and represent the majority of drug t...
Membrane proteins play critical physiological roles and make up the majority of drug targets. Due to...
Membrane proteins play critical physiological roles and make up the majority of drug targets. Due to...
Membrane proteins frequently assemble into higher order homo- or hetero-oligomers within their natur...
Native mass spectrometry (MS) has become an important tool for the analysis of membrane proteins. Al...
We describe here the analysis of nanodisc complexes by using native mass spectrometry (MS) to charac...
Lipoprotein nanodiscs are ideally suited for native mass spectrometry because they provide a relativ...
Membrane systems play a critical role in biochemistry by regulating the chemical, energy, and inform...
Membrane proteins (MPs) are vital therapeutic targets which play important roles in a multitude of c...
Membrane proteins can be examined in near-native lipid-bilayer environments with the advent of polym...
Membrane proteins can be examined in near-native lipid-bilayer environments with the advent of polym...
Coordination between membrane proteins and their surrounding lipid environment dictates the function...
Mass spectrometry (MS) has emerged as a powerful tool to study membrane protein complexes and protei...
Mass spectrometry (MS) has emerged as a powerful tool to study membrane protein complexes and protei...
Membrane proteins mediate critical physiological roles which establishes them as attractive therapeu...
Membrane proteins play vital roles in many biological processes and represent the majority of drug t...
Membrane proteins play critical physiological roles and make up the majority of drug targets. Due to...
Membrane proteins play critical physiological roles and make up the majority of drug targets. Due to...
Membrane proteins frequently assemble into higher order homo- or hetero-oligomers within their natur...
Native mass spectrometry (MS) has become an important tool for the analysis of membrane proteins. Al...
We describe here the analysis of nanodisc complexes by using native mass spectrometry (MS) to charac...
Lipoprotein nanodiscs are ideally suited for native mass spectrometry because they provide a relativ...
Membrane systems play a critical role in biochemistry by regulating the chemical, energy, and inform...
Membrane proteins (MPs) are vital therapeutic targets which play important roles in a multitude of c...
Membrane proteins can be examined in near-native lipid-bilayer environments with the advent of polym...
Membrane proteins can be examined in near-native lipid-bilayer environments with the advent of polym...
Coordination between membrane proteins and their surrounding lipid environment dictates the function...
Mass spectrometry (MS) has emerged as a powerful tool to study membrane protein complexes and protei...
Mass spectrometry (MS) has emerged as a powerful tool to study membrane protein complexes and protei...