Biological membranes define the boundaries of cells and are composed primarily of phospholipids and membrane proteins. It has become increasingly evident that direct interactions of membrane proteins with their surrounding lipids play key roles in regulating both protein conformations and function. However, the exact nature and structural consequences of these interactions remain difficult to track at the molecular level. Here, we present a protocol that specifically addresses this challenge. First, hydrogen–deuterium exchange mass spectrometry (HDX-MS) of membrane proteins incorporated into nanodiscs of controlled lipid composition is used to obtain information on the lipid species that are involved in modulating the conformational changes...
Cell membranes contain hundreds of different proteins and lipids in an asymmetric arrangement. Our c...
Cell membranes contain hundreds of different proteins and lipids in an asymmetric arrangement. Our c...
It is now clear that proteins are flexible entities that in solution switch between conformations to...
Integral membrane proteins (IMPs) control countless fundamental biological processes and constitute ...
International audienceHydrogen/deuterium exchange associated with mass spectrometry has been recentl...
International audienceHydrogen/deuterium exchange associated with mass spectrometry has been recentl...
The interplay between membrane proteins and the lipids of the membrane is important for cellular fun...
The interplay between membrane proteins and the lipids of the membrane is important for cellular fun...
Secondary transporters undergo structural rearrangements to catalyze substrate translocation across ...
The work described in this thesis is a combination native mass spectrometry experiments, molecular d...
With the recent success in determining membrane protein structures, further detailed understanding o...
With the recent success in determining membrane protein structures, further detailed understanding o...
Membrane proteins that exist in lipid bilayers are not isolated molecular entities. The lipid molecu...
Cell membranes contain hundreds of different proteins and lipids in an asymmetric arrangement. Our c...
Cell membranes contain hundreds of different proteins and lipids in an asymmetric arrangement. Our c...
Cell membranes contain hundreds of different proteins and lipids in an asymmetric arrangement. Our c...
Cell membranes contain hundreds of different proteins and lipids in an asymmetric arrangement. Our c...
It is now clear that proteins are flexible entities that in solution switch between conformations to...
Integral membrane proteins (IMPs) control countless fundamental biological processes and constitute ...
International audienceHydrogen/deuterium exchange associated with mass spectrometry has been recentl...
International audienceHydrogen/deuterium exchange associated with mass spectrometry has been recentl...
The interplay between membrane proteins and the lipids of the membrane is important for cellular fun...
The interplay between membrane proteins and the lipids of the membrane is important for cellular fun...
Secondary transporters undergo structural rearrangements to catalyze substrate translocation across ...
The work described in this thesis is a combination native mass spectrometry experiments, molecular d...
With the recent success in determining membrane protein structures, further detailed understanding o...
With the recent success in determining membrane protein structures, further detailed understanding o...
Membrane proteins that exist in lipid bilayers are not isolated molecular entities. The lipid molecu...
Cell membranes contain hundreds of different proteins and lipids in an asymmetric arrangement. Our c...
Cell membranes contain hundreds of different proteins and lipids in an asymmetric arrangement. Our c...
Cell membranes contain hundreds of different proteins and lipids in an asymmetric arrangement. Our c...
Cell membranes contain hundreds of different proteins and lipids in an asymmetric arrangement. Our c...
It is now clear that proteins are flexible entities that in solution switch between conformations to...