A primary biological function of multi-spanning membrane proteins is to transfer information and/or materials through a membrane by changing their conformations. Therefore, particular dynamics of the membrane proteins are tightly associated with their function. The semi-atomic resolution dynamics information revealed by NMR is able to discriminate function-related dynamics from random fluctuations. This review will discuss several studies in which quantitative dynamics information by solution NMR has contributed to revealing the structural basis of the function of multi-spanning membrane proteins, such as ion channels, GPCRs, and transporters
Nuclear Magnetic Resonance (NMR) spectroscopy is a powerful tool used to study both the structure an...
The phospholipid membrane is a self-assembled, dynamic molecular system that may exist alone in asso...
Membranes border cells from their environment. Thus, they belong to the basic prerequisites for life...
A primary biological function of multi-spanning membrane proteins is to transfer information and/or ...
This article discusses future perspectives of solution NMR spectroscopy to study structures and func...
Solid-state nuclear magnetic resonance (SSNMR) spectroscopy elucidates membrane protein structures a...
A large portion of proteins in living organisms are membrane proteins which play critical roles in t...
A large portion of proteins in living organisms are membrane proteins which play critical roles in t...
A research topic within the field of molecular biophysics is the structure-function relationship of ...
Protein structures were originally determined by X-ray crystallography, a technique which uses a reg...
Solid-state NMR is a versatile and powerful tool for determining the dynamic structure of membrane p...
Protein structures were originally determined by X-ray crystallography, a technique which uses a reg...
(15) N spin-relaxation rates are demonstrated to provide critical information about the long-range s...
A research topic within the field of molecular biophysics is the structure-function relationship of ...
A research topic within the field of molecular biophysics is the structure-function relationship of ...
Nuclear Magnetic Resonance (NMR) spectroscopy is a powerful tool used to study both the structure an...
The phospholipid membrane is a self-assembled, dynamic molecular system that may exist alone in asso...
Membranes border cells from their environment. Thus, they belong to the basic prerequisites for life...
A primary biological function of multi-spanning membrane proteins is to transfer information and/or ...
This article discusses future perspectives of solution NMR spectroscopy to study structures and func...
Solid-state nuclear magnetic resonance (SSNMR) spectroscopy elucidates membrane protein structures a...
A large portion of proteins in living organisms are membrane proteins which play critical roles in t...
A large portion of proteins in living organisms are membrane proteins which play critical roles in t...
A research topic within the field of molecular biophysics is the structure-function relationship of ...
Protein structures were originally determined by X-ray crystallography, a technique which uses a reg...
Solid-state NMR is a versatile and powerful tool for determining the dynamic structure of membrane p...
Protein structures were originally determined by X-ray crystallography, a technique which uses a reg...
(15) N spin-relaxation rates are demonstrated to provide critical information about the long-range s...
A research topic within the field of molecular biophysics is the structure-function relationship of ...
A research topic within the field of molecular biophysics is the structure-function relationship of ...
Nuclear Magnetic Resonance (NMR) spectroscopy is a powerful tool used to study both the structure an...
The phospholipid membrane is a self-assembled, dynamic molecular system that may exist alone in asso...
Membranes border cells from their environment. Thus, they belong to the basic prerequisites for life...