Nitric Oxide Regulates Multiple Signal Pathways in Plants via Protein S-Nitrosylation
Nitric oxide (NO) can perform its physiological role through protein S-nitrosylation, a redox-based post-translational modification (PTM). This review details the specific molecular mechanisms and current detection technologies of S-nitrosylation.
Wei Lin +4 more
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Alzheimer’s disease (AD), characterized by cognitive decline, is increasingly recognized as a disorder marked by synaptic loss and dysfunction. Despite this understanding, the underlying pathophysiological mechanisms contributing to synaptic impairment ...
Aobing Cheng +6 more
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Genotoxic therapy triggers reactive oxygen species (ROS) production and oxidative tissue injury. S-nitrosylation is a selective and reversible posttranslational modification of protein thiols by nitric oxide (NO), and 5,6,7,8-tetrahydrobiopterin (BH4) is
Yang Feng +15 more
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Nitric Oxide-S-Nitrosylation and Its Role in Neuroinflammation Associated with Neuropsychiatric Conditions. [PDF]
Sánchez F, Koning T.
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Hydrogen Gas Enhances Salinity Tolerance in Tomato Seedlings by Regulating the S-Nitrosylation of MEK1. [PDF]
Fang H +12 more
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S-nitrosylation of the scaffold protein STRAP enhances oxidative stress-induced apoptosis. [PDF]
Xu W, Chen D, Zhou HL.
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S-nitrosylation of HINT1 in macrophages aggravates foam cell formation and atherosclerosis. [PDF]
Tang K +13 more
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Aberrant Protein S-Nitrosylation Mimics the Effect of Rare Genetic Mutations in Neurodegenerative Diseases. [PDF]
Wang Y, Lipton SA.
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Sex differences in mitochondrial Ca<sup>2+</sup> during ischemia/reperfusion injury: A role for S-Nitrosylation. [PDF]
Roman B, Petersen CE, Sun J, Murphy E.
europepmc +1 more source
S-nitrosylation of IRF7 induced by NOS1 expression in melanoma suppresses anti-tumor immunity. [PDF]
Dai Y +17 more
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