AbstractAlthough a high ATP diffusion rate implies homogeneous distribution of the principal energetic currency in the cytosol, local diffusion barriers represented by macromolecular structures can render ATP concentrations to be inhomogeneous. A method is presented here that provides apparent diffusion coefficient values in local intracellular regions and allows the estimation of spatial metabolite distribution. The apparent local diffusion coefficient for ATP in cardiac myofibrils was determined from the analysis of diffusion-dependent rightward shift of the substrate dependence for actomyosin ATPase activity using the reaction-diffusion model, which accounted for the properties of phosphotransfer reactions. This functional analysis, whic...
Recent electron microscopy data have revealed that cardiac mitochondria are not arranged in crystall...
International audienceThe purpose of this study is to investigate theoretically which intracellular ...
We have previously provided evidence that diffusion of metabolites across the porin pores of mitocho...
AbstractAlthough a high ATP diffusion rate implies homogeneous distribution of the principal energet...
International audienceRecent studies have revealed the structural and functional interactions betwee...
AbstractCardiomyocytes have intracellular diffusion restrictions, which spatially compartmentalize A...
Contractile function of cardiac cells is driven by the sliding displacement of myofilaments powered ...
AbstractContractile function of cardiac cells is driven by the sliding displacement of myofilaments ...
The regulation of mitochondrial respiration in the intact heart may differ from that of isolated mit...
AbstractIntracellular diffusion in muscle cells is known to be restricted. Although characteristics ...
AbstractSeveral experiments on permeabilized heart muscle fibers suggest the existence of diffusion ...
International audienceThe mathematical model of the compartmentalized energy transfer system in card...
The mathematical model of the compartmentalized energy transfer system in cardiac myocytes presented...
Recent electron microscopy data have revealed that cardiac mitochondria are not arranged in crystall...
Recent electron microscopy data have revealed that cardiac mitochondria are not arranged in crystall...
International audienceThe purpose of this study is to investigate theoretically which intracellular ...
We have previously provided evidence that diffusion of metabolites across the porin pores of mitocho...
AbstractAlthough a high ATP diffusion rate implies homogeneous distribution of the principal energet...
International audienceRecent studies have revealed the structural and functional interactions betwee...
AbstractCardiomyocytes have intracellular diffusion restrictions, which spatially compartmentalize A...
Contractile function of cardiac cells is driven by the sliding displacement of myofilaments powered ...
AbstractContractile function of cardiac cells is driven by the sliding displacement of myofilaments ...
The regulation of mitochondrial respiration in the intact heart may differ from that of isolated mit...
AbstractIntracellular diffusion in muscle cells is known to be restricted. Although characteristics ...
AbstractSeveral experiments on permeabilized heart muscle fibers suggest the existence of diffusion ...
International audienceThe mathematical model of the compartmentalized energy transfer system in card...
The mathematical model of the compartmentalized energy transfer system in cardiac myocytes presented...
Recent electron microscopy data have revealed that cardiac mitochondria are not arranged in crystall...
Recent electron microscopy data have revealed that cardiac mitochondria are not arranged in crystall...
International audienceThe purpose of this study is to investigate theoretically which intracellular ...
We have previously provided evidence that diffusion of metabolites across the porin pores of mitocho...