Here we demonstrate that type I protein kinase A is redoxactive, forming an interprotein disulfide bond between its two regulatory RI subunits in response to cellular hydrogen peroxide. This oxidative disulfide formation causes a subcellular translocation and activation of the kinase, resulting in phosphorylation of established substrate proteins. The translocation is mediated at least in part by the oxidized form of the kinase having an enhanced affinity for alpha-myosin heavy chain, which serves as a protein kinase A (PKA) anchor protein and localizes the PKA to its myofilament substrates troponin I and myosin binding protein C. The functional consequence of these events in cardiac myocytes is that hydrogen peroxide increases contractilit...
The Frank–Starling mechanism allows the amount of blood entering the heart from the veins to be prec...
AbstractThe cellular redox state regulates nuclear factor-κB (NF-κB) signaling systems. We investiga...
Cardiac stress initiates a pathological remodeling process that is associated with cardiomyocyte los...
Here we demonstrate that type I protein kinase A is redoxactive, forming an interprotein disulfide b...
cAMP-dependent protein kinase (PKAc) is a pivotal cell signaling protein in eukaryotes. The catalyti...
The contraction and relaxation of the heart is controlled by stimulation of the beta 1-adrenorecepto...
Kinase oxidation is a critical signalling mechanism through which changes in the intracellular redox...
Background: Kinase oxidation is a critical signalling mechanism through which changes in the intrace...
Oxidation of cysteine residues of proteins is emerging as an important means of regulation of signal...
Background: Hydrogen peroxide (H2O2)-induced oxidative stress has been demonstrated to induce afterd...
The control of vascular smooth muscle contractility enables regulation of blood pressure, which is p...
Due to the growing importance of cellular signaling mediated by reactive oxygen species (ROS), prote...
<div><p>Previously we showed that Protein kinase A (PKA) activated in hypoxia and myocardial ischemi...
Type I PKA regulatory α-subunit (RIα; encoded by the Prkar1a gene) serves as the predominant inhibit...
Cells respond to different kind of stress through the coordinated activation of signaling pathways s...
The Frank–Starling mechanism allows the amount of blood entering the heart from the veins to be prec...
AbstractThe cellular redox state regulates nuclear factor-κB (NF-κB) signaling systems. We investiga...
Cardiac stress initiates a pathological remodeling process that is associated with cardiomyocyte los...
Here we demonstrate that type I protein kinase A is redoxactive, forming an interprotein disulfide b...
cAMP-dependent protein kinase (PKAc) is a pivotal cell signaling protein in eukaryotes. The catalyti...
The contraction and relaxation of the heart is controlled by stimulation of the beta 1-adrenorecepto...
Kinase oxidation is a critical signalling mechanism through which changes in the intracellular redox...
Background: Kinase oxidation is a critical signalling mechanism through which changes in the intrace...
Oxidation of cysteine residues of proteins is emerging as an important means of regulation of signal...
Background: Hydrogen peroxide (H2O2)-induced oxidative stress has been demonstrated to induce afterd...
The control of vascular smooth muscle contractility enables regulation of blood pressure, which is p...
Due to the growing importance of cellular signaling mediated by reactive oxygen species (ROS), prote...
<div><p>Previously we showed that Protein kinase A (PKA) activated in hypoxia and myocardial ischemi...
Type I PKA regulatory α-subunit (RIα; encoded by the Prkar1a gene) serves as the predominant inhibit...
Cells respond to different kind of stress through the coordinated activation of signaling pathways s...
The Frank–Starling mechanism allows the amount of blood entering the heart from the veins to be prec...
AbstractThe cellular redox state regulates nuclear factor-κB (NF-κB) signaling systems. We investiga...
Cardiac stress initiates a pathological remodeling process that is associated with cardiomyocyte los...