Mitochondria are double membrane bound organelles indispensable for biological processes such as apoptosis, cell signaling, and the production of many important metabolites, which includes ATP that is generated during the process known as oxidative phosphorylation (OXPHOS). The inner membrane contains folds called cristae, which increase the membrane surface and thus the amount of membrane-bound proteins necessary for the OXPHOS. These folds have been of great interest not only because of their importance for energy conversion, but also because changes in morphology have been linked to a broad range of diseases from cancer, diabetes, neurodegenerative diseases, to aging and infection. With a distance between opposing cristae membranes often...
A fundamental objective in molecular biology is to understand how DNA is organized in concert with v...
Mitochondria are dynamic organelles playing essential metabolic and signaling functions in cells. Th...
Oxidative phosphorylation (OXPHOS) is vital for the regeneration of the vast majority of ATP in euka...
Because of the diffraction resolution barrier, optical microscopes have so far failed in visualizing...
The emergence of diffraction-unlimited live-cell imaging technologies has enabled the examination of...
Mitochondria are highly dynamic organelles that exhibit a complex inner architecture. They exhibit a...
The convolution of membranes called cristae is a critical structural and functional feature of mitoc...
Mitochondria are dynamic organelles that change morphology to adapt to cellular energetic demands un...
Extended abstract of a paper presented at Microscopy and Microanalysis 2007 in Ft. Lauderdale, Flori...
Folding of the mitochondrial inner membrane (IM) into cristae greatly increases the ATP-generating s...
Recent breakthroughs in live-cell imaging have enabled visualization of cristae, making it feasible ...
AbstractThis review summarizes recent findings from electron tomography about the three-dimensional ...
Mitochondria play an essential role in the life cycle of eukaryotic cells. However, we still don’t k...
AbstractMitochondria are double-membrane enclosed eukaryotic organelles with a central role in numer...
Invaginations of the inner mitochondrial membrane originate cristae - important structural and bioen...
A fundamental objective in molecular biology is to understand how DNA is organized in concert with v...
Mitochondria are dynamic organelles playing essential metabolic and signaling functions in cells. Th...
Oxidative phosphorylation (OXPHOS) is vital for the regeneration of the vast majority of ATP in euka...
Because of the diffraction resolution barrier, optical microscopes have so far failed in visualizing...
The emergence of diffraction-unlimited live-cell imaging technologies has enabled the examination of...
Mitochondria are highly dynamic organelles that exhibit a complex inner architecture. They exhibit a...
The convolution of membranes called cristae is a critical structural and functional feature of mitoc...
Mitochondria are dynamic organelles that change morphology to adapt to cellular energetic demands un...
Extended abstract of a paper presented at Microscopy and Microanalysis 2007 in Ft. Lauderdale, Flori...
Folding of the mitochondrial inner membrane (IM) into cristae greatly increases the ATP-generating s...
Recent breakthroughs in live-cell imaging have enabled visualization of cristae, making it feasible ...
AbstractThis review summarizes recent findings from electron tomography about the three-dimensional ...
Mitochondria play an essential role in the life cycle of eukaryotic cells. However, we still don’t k...
AbstractMitochondria are double-membrane enclosed eukaryotic organelles with a central role in numer...
Invaginations of the inner mitochondrial membrane originate cristae - important structural and bioen...
A fundamental objective in molecular biology is to understand how DNA is organized in concert with v...
Mitochondria are dynamic organelles playing essential metabolic and signaling functions in cells. Th...
Oxidative phosphorylation (OXPHOS) is vital for the regeneration of the vast majority of ATP in euka...