Higher plants are continually exposed to reactive oxygen and nitrogen species during their lives. Together with glucose and reactive dicarbonyls, these can modify proteins spontaneously, leading to protein oxidation, nitration and glycation. These reactions have the potential to damage proteins and have an impact on physiological processes. The levels of protein oxidation, nitration and glycation adducts were assayed, using liquid chromatography coupled with tandem mass spectrometry, in total leaf extracts over a diurnal cycle and when exposed to conditions that promote oxidative stress. Changes in the levels of oxidation, glycation and nitration adducts were found between the light and dark phases under non-stress conditions. A comparison ...
Reactive oxygen species (ROS) and reactive nitrogen species (RNS) are present at low and controlled ...
Plants reconfigure their metabolic network under stress conditions. Changes of mitochondrial metabol...
Plants reconfigure their metabolic network under stress conditions. Changes of mitochondrial metabol...
Abstract: Reactive oxygen and nitrogen species can modify various biomolecules, including proteins. ...
Stress factors provoke enhanced production of reactive oxygen species (ROS) in plants. ROS that esca...
Environmental stress is one of the major factors reducing crop productivity. Due to the oncoming cli...
Leaf senescence represents the final stage of leaf development and is associated with fundamental ch...
Oxidative stress and reactive oxygen species (ROS) are common to many fundamental responses of plant...
Stress factors provoke enhanced production of reactive oxygen species (ROS) in plants. ROS that esc...
Nitric oxide (•NO) is a free radical which exerts a myriad of functions in the physiology of higher ...
The alternative oxidase (AOX) is a stress response protein that is thought to safely dissipate exces...
Recent research has identified glycation as a non-enzymatic post-translational modification of prote...
Abstract While exposure of C3 plants to elevated [CO2] would be expected to reduce production of rea...
Nitric oxide and reactive oxygen species play a key role in the plant hypersensitive disease resista...
Protein phosphorylation plays a pivotal role in the regulation of many cellular events; increasing e...
Reactive oxygen species (ROS) and reactive nitrogen species (RNS) are present at low and controlled ...
Plants reconfigure their metabolic network under stress conditions. Changes of mitochondrial metabol...
Plants reconfigure their metabolic network under stress conditions. Changes of mitochondrial metabol...
Abstract: Reactive oxygen and nitrogen species can modify various biomolecules, including proteins. ...
Stress factors provoke enhanced production of reactive oxygen species (ROS) in plants. ROS that esca...
Environmental stress is one of the major factors reducing crop productivity. Due to the oncoming cli...
Leaf senescence represents the final stage of leaf development and is associated with fundamental ch...
Oxidative stress and reactive oxygen species (ROS) are common to many fundamental responses of plant...
Stress factors provoke enhanced production of reactive oxygen species (ROS) in plants. ROS that esc...
Nitric oxide (•NO) is a free radical which exerts a myriad of functions in the physiology of higher ...
The alternative oxidase (AOX) is a stress response protein that is thought to safely dissipate exces...
Recent research has identified glycation as a non-enzymatic post-translational modification of prote...
Abstract While exposure of C3 plants to elevated [CO2] would be expected to reduce production of rea...
Nitric oxide and reactive oxygen species play a key role in the plant hypersensitive disease resista...
Protein phosphorylation plays a pivotal role in the regulation of many cellular events; increasing e...
Reactive oxygen species (ROS) and reactive nitrogen species (RNS) are present at low and controlled ...
Plants reconfigure their metabolic network under stress conditions. Changes of mitochondrial metabol...
Plants reconfigure their metabolic network under stress conditions. Changes of mitochondrial metabol...