Mitochondria are known as the powerhouse of eukaryotic cells. Energy production occurs in specific dynamic membrane invaginations in the inner mitochondrial membrane called cristae. Although the integrity of these structures is recognized as a key point for proper mitochondrial function, less is known about the mechanisms at the origin of their plasticity and organization, and how they can influence mitochondria function. Here, we review the studies which question the role of lipid membrane composition based mainly on minimal model systems
Cristae, folded subcompartments of the inner mitochondrial membrane (IMM), have complex and dynamic ...
AbstractMitochondria are cell substructures (organelles) critical for cell life, because biological ...
AbstractThe inner membrane system of mitochondria is known to consist of two contiguous but distinct...
International audienceMitochondria are known as the powerhouse of eukaryotic cells. Energy productio...
AbstractMitochondria are double-membrane enclosed eukaryotic organelles with a central role in numer...
Folding of the mitochondrial inner membrane (IM) into cristae greatly increases the ATP-generating s...
AbstractThis review summarizes recent findings from electron tomography about the three-dimensional ...
Mitochondria are double membrane-enclosed organelles performing important cellular and metabolic fun...
SummaryRespiratory chain complexes assemble into functional quaternary structures called supercomple...
Metabolic function and architecture of mitochondria are intimately linked. More than 60 years ago, c...
Mitochondria are the respiratory organelles of eukaryotes and their evolutionary history is deeply i...
Invaginations of the inner mitochondrial membrane originate cristae - important structural and bioen...
AbstractThree-dimensional images of mitochondria provided by electron tomography reveal that the mic...
Respiratory chain complexes assemble into functional quaternary structures called supercomplexes (RC...
AbstractIn recent years, electron tomography has provided detailed three-dimensional models of mitoc...
Cristae, folded subcompartments of the inner mitochondrial membrane (IMM), have complex and dynamic ...
AbstractMitochondria are cell substructures (organelles) critical for cell life, because biological ...
AbstractThe inner membrane system of mitochondria is known to consist of two contiguous but distinct...
International audienceMitochondria are known as the powerhouse of eukaryotic cells. Energy productio...
AbstractMitochondria are double-membrane enclosed eukaryotic organelles with a central role in numer...
Folding of the mitochondrial inner membrane (IM) into cristae greatly increases the ATP-generating s...
AbstractThis review summarizes recent findings from electron tomography about the three-dimensional ...
Mitochondria are double membrane-enclosed organelles performing important cellular and metabolic fun...
SummaryRespiratory chain complexes assemble into functional quaternary structures called supercomple...
Metabolic function and architecture of mitochondria are intimately linked. More than 60 years ago, c...
Mitochondria are the respiratory organelles of eukaryotes and their evolutionary history is deeply i...
Invaginations of the inner mitochondrial membrane originate cristae - important structural and bioen...
AbstractThree-dimensional images of mitochondria provided by electron tomography reveal that the mic...
Respiratory chain complexes assemble into functional quaternary structures called supercomplexes (RC...
AbstractIn recent years, electron tomography has provided detailed three-dimensional models of mitoc...
Cristae, folded subcompartments of the inner mitochondrial membrane (IMM), have complex and dynamic ...
AbstractMitochondria are cell substructures (organelles) critical for cell life, because biological ...
AbstractThe inner membrane system of mitochondria is known to consist of two contiguous but distinct...