Diffusion of inner membrane proteins is a prerequisite for correct functionality of mitochondria. The complicated structure of tubular, vesicular or flat cristae and their small connections to the inner boundary membrane impose constraints on the mobility of proteins making their diffusion a very complicated process. Therefore we investigate the molecular transport along the main mitochondrial axis using highly accurate computational methods. Diffusion is modeled on a curvilinear surface reproducing the shape of mitochondrial inner membrane (IM). Monte Carlo simulations are carried out for topologies resembling both tubular and lamellar cristae, for a range of physiologically viable crista sizes and densities. Geometrical confinement induce...
Cristae, folded subcompartments of the inner mitochondrial membrane (IMM), have complex and dynamic ...
Extended abstract of a paper presented at Microscopy and Microanalysis 2007 in Ft. Lauderdale, Flori...
<p>(<i>A</i>) Membrane surface rendering of mitochondrial tomogram. Cristae (<i>yellow</i>), inner b...
Diffusion of inner membrane proteins is a prerequisite for correct functionality of mitochondria. Th...
Diffusion of inner membrane proteins is a prerequisite for correct functionality of mitochondria. Th...
<p>Relative diffusivities projected on the long mitochondrial axis for different tubular cristae con...
AbstractThree-dimensional images of mitochondria provided by electron tomography reveal that the mic...
AbstractMolecular mobility in membranes of intracellular organelles is poorly understood, due to the...
AbstractThis review summarizes recent findings from electron tomography about the three-dimensional ...
AbstractMitochondria are double-membrane enclosed eukaryotic organelles with a central role in numer...
AbstractMitochondria are cell substructures (organelles) critical for cell life, because biological ...
Folding of the mitochondrial inner membrane (IM) into cristae greatly increases the ATP-generating s...
We report the first lateral diffusion measurements of redox components in normal-sized, matrix-conta...
Mitochondria are the power plant of most non-green eukaryotic cells. In order to understand mitochon...
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 ...
Extended abstract of a paper presented at Microscopy and Microanalysis 2007 in Ft. Lauderdale, Flori...
<p>(<i>A</i>) Membrane surface rendering of mitochondrial tomogram. Cristae (<i>yellow</i>), inner b...
Diffusion of inner membrane proteins is a prerequisite for correct functionality of mitochondria. Th...
Diffusion of inner membrane proteins is a prerequisite for correct functionality of mitochondria. Th...
<p>Relative diffusivities projected on the long mitochondrial axis for different tubular cristae con...
AbstractThree-dimensional images of mitochondria provided by electron tomography reveal that the mic...
AbstractMolecular mobility in membranes of intracellular organelles is poorly understood, due to the...
AbstractThis review summarizes recent findings from electron tomography about the three-dimensional ...
AbstractMitochondria are double-membrane enclosed eukaryotic organelles with a central role in numer...
AbstractMitochondria are cell substructures (organelles) critical for cell life, because biological ...
Folding of the mitochondrial inner membrane (IM) into cristae greatly increases the ATP-generating s...
We report the first lateral diffusion measurements of redox components in normal-sized, matrix-conta...
Mitochondria are the power plant of most non-green eukaryotic cells. In order to understand mitochon...
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 ...
Extended abstract of a paper presented at Microscopy and Microanalysis 2007 in Ft. Lauderdale, Flori...
<p>(<i>A</i>) Membrane surface rendering of mitochondrial tomogram. Cristae (<i>yellow</i>), inner b...