The exchange of ADP and ATP across the inner mitochondrial membrane is a fundamental cellular process. This exchange is facilitated by the adenine nucleotide translocase, the structure and function of which are critically dependent on the signature phospholipid of mitochondria, cardiolipin (CL). Here we employ multiscale molecular dynamics simulations to investigate CL interactions within a membrane environment. Using simulations at both coarse-grained and atomistic resolutions, we identify three CL binding sites on the translocase, in agreement with those seen in crystal structures and inferred from nuclear magnetic resonance measurements. Characterization of the free energy landscape for lateral lipid interaction via potential of mean for...
Cardiolipins have multiple vital functions within biological cell membranes, most notably in the ene...
AbstractThe reaction mechanism of the cytochrome (cyt) bc1 complex relies on proton and electron tra...
Present in bacterial and mitochondrial membranes, cardiolipins have a unique dimeric structure, whic...
The exchange of ADP and ATP across the inner mitochondrial membrane is a fundamental cellular proces...
The exchange of ADP and ATP across the inner mitochondrial membrane is a fundamental cellular proces...
Cardiolipin in eukaryotes is found in the mitochondrial inner membrane, where it interacts with memb...
Mitochondrial membranes are unique in many ways. Unlike other cellular membranes, they are comprised...
Mitochondrial membranes are unique in many ways. Unlike other cellular membranes, they are comprised...
The respiratory chain is located in the inner membrane of mitochondria and produces the major part o...
The respiratory chain is located in the inner membrane of mitochondria and produces the major part o...
In mitochondria and many bacteria, the electron transport chain produces energy from foodstuff as a ...
Parallel advances in lipidomics and the structural biology of membrane proteins over the past decade...
Computational ‘microscopy’ refers to the use of computational resources to simulate the dynamics of ...
The respiratory chain is located in the inner membrane of mitochondria and produces the major part o...
The respiratory chain or oxidative phosphorylation system (OxPhos) generates most of the chemical en...
Cardiolipins have multiple vital functions within biological cell membranes, most notably in the ene...
AbstractThe reaction mechanism of the cytochrome (cyt) bc1 complex relies on proton and electron tra...
Present in bacterial and mitochondrial membranes, cardiolipins have a unique dimeric structure, whic...
The exchange of ADP and ATP across the inner mitochondrial membrane is a fundamental cellular proces...
The exchange of ADP and ATP across the inner mitochondrial membrane is a fundamental cellular proces...
Cardiolipin in eukaryotes is found in the mitochondrial inner membrane, where it interacts with memb...
Mitochondrial membranes are unique in many ways. Unlike other cellular membranes, they are comprised...
Mitochondrial membranes are unique in many ways. Unlike other cellular membranes, they are comprised...
The respiratory chain is located in the inner membrane of mitochondria and produces the major part o...
The respiratory chain is located in the inner membrane of mitochondria and produces the major part o...
In mitochondria and many bacteria, the electron transport chain produces energy from foodstuff as a ...
Parallel advances in lipidomics and the structural biology of membrane proteins over the past decade...
Computational ‘microscopy’ refers to the use of computational resources to simulate the dynamics of ...
The respiratory chain is located in the inner membrane of mitochondria and produces the major part o...
The respiratory chain or oxidative phosphorylation system (OxPhos) generates most of the chemical en...
Cardiolipins have multiple vital functions within biological cell membranes, most notably in the ene...
AbstractThe reaction mechanism of the cytochrome (cyt) bc1 complex relies on proton and electron tra...
Present in bacterial and mitochondrial membranes, cardiolipins have a unique dimeric structure, whic...