Cardiolipin (CL) plays a key role in dynamic organization of bacterial and mitochondrial membranes. CL forms membrane domains in bacterial cells, and these domains appear to participate in binding and functional regulation of multi-protein complexes involved in diverse cellular functions including cell division, energy metabolism, and membrane transport. Visualization of CL domains in bacterial cells by the fluorescent dye 10-N-nonyl acridine orange is critically reviewed. Possible mechanisms proposed for CL dynamic localization in bacterial cells are discussed. In the mitochondrial membrane CL is involved in organization of multi-subunit oxidative phosphorylation complexes and in their association into higher order supercomplexes. Evidence...
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...
International audienceWe show in this study that mitochondrial creatine kinase promotes segregation ...
Cardiolipin (CL) plays a key role in dynamic organization of bacterial and mitochondrial membranes. ...
AbstractCardiolipin (CL) plays a key role in dynamic organization of bacterial and mitochondrial mem...
AbstractThe structural and functional integrity of biological membranes is vital to life. The interp...
The respiratory chain or oxidative phosphorylation system (OxPhos) generates most of the chemical en...
The respiratory chain is located in the inner membrane of mitochondria and produces the major part o...
AbstractCardiolipin is a unique phospholipid which is almost exclusively located in the inner mitoch...
Mitochondria, chloroplasts and photosynthetic bacteria are characterized by the presence of complex ...
Cardiolipins (CLs) are ancient and unusual dimeric phospholipids localized in the plasma membrane of...
AbstractThe role of specific lipid structures in biological membranes has been elusive. There are hu...
AbstractCardiolipin (CL) is a complex phospholipid that is specifically found in mitochondria. Owing...
International audienceCardiolipin (CL) is an anionic phospholipid mainly located in the inner mitoch...
AbstractConsiderable progress has recently been made in understanding the role of cardiolipin in mit...
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...
International audienceWe show in this study that mitochondrial creatine kinase promotes segregation ...
Cardiolipin (CL) plays a key role in dynamic organization of bacterial and mitochondrial membranes. ...
AbstractCardiolipin (CL) plays a key role in dynamic organization of bacterial and mitochondrial mem...
AbstractThe structural and functional integrity of biological membranes is vital to life. The interp...
The respiratory chain or oxidative phosphorylation system (OxPhos) generates most of the chemical en...
The respiratory chain is located in the inner membrane of mitochondria and produces the major part o...
AbstractCardiolipin is a unique phospholipid which is almost exclusively located in the inner mitoch...
Mitochondria, chloroplasts and photosynthetic bacteria are characterized by the presence of complex ...
Cardiolipins (CLs) are ancient and unusual dimeric phospholipids localized in the plasma membrane of...
AbstractThe role of specific lipid structures in biological membranes has been elusive. There are hu...
AbstractCardiolipin (CL) is a complex phospholipid that is specifically found in mitochondria. Owing...
International audienceCardiolipin (CL) is an anionic phospholipid mainly located in the inner mitoch...
AbstractConsiderable progress has recently been made in understanding the role of cardiolipin in mit...
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...
International audienceWe show in this study that mitochondrial creatine kinase promotes segregation ...