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Cross-talk between SIRT1 and p66Shc in vascular diseases
Authors:Hou-Zao Chen  Yan-Zhen Wan  De-Pei Liu
Affiliation:1. Endocrinology and Metabolism Research Center (EMRC), Vali-Asr Hospital, Tehran University of Medical Sciences, Tehran, Iran;2. Department of pathology, Mirza Kuchikkhan Hospital, Tehran University of Medical Sciences, Tehran, Iran;1. Genética Molecular-Laboratorio Medicina, HUCA, Oviedo, Spain;2. Nefrología, HUCA, Oviedo, Spain;3. Centros de Salud Principado de Asturias, Asturias, Spain;4. Cellular Biology in Renal Diseases Laboratory, IIS-Fundación Jiménez Díaz and Universidad Autónoma de Madrid, Spain;5. Pediatría, HUCA, Oviedo, Spain;6. IDIPAZ, Madrid, Spain;7. Fundación Renal and RED INVESTIGACION RENAL (REDINREN), Spain;8. Universidad de Oviedo, Oviedo, Spain;1. Department of Biology, University of Bergen, P.O. Box 7803, N-5020 Bergen, Norway;2. Centre for Ecological and Evolutionary Synthesis (CEES), Department of Biology, University of Oslo, P.O. Box 1066, Blindern, N-0316 Oslo, Norway
Abstract:Accumulating evidence indicates that oxidative stress can occur through overproduction of reactive oxygen species (ROS) and/or reduced anti-oxidant potentials under pathophysiological conditions and plays an important role in the development of cardiovascular diseases (CVDs). Adapter protein p66Shc has the property to directly stimulate mitochondrial ROS generation by an oxidoreductase activity. A growing body of evidence implies that p66Shc plays a critical role in the pathophysiology of age-related vascular diseases. Silent mating type information regulator 2 homolog 1 (SIRT1), a nicotinamide adenine dinucleotide (NAD+)-dependent class III histone deacetylase (HDAC), has also been implicated in protection against vascular aging and age-related vascular diseases. Recently, we demonstrated that SIRT1 protects blood vessels from hyperglycemia-induced endothelial dysfunction through a novel mechanism involving the downregulation of p66Shc expression. In this review, we discuss the cross-talk between these two longevity genes as a mechanism of preventing vascular diseases by involving anti-oxidative stress responses and inhibiting endothelial senescence.
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