Genetic deletion of p66Shc adaptor protein prevents hyperglycemia-induced endothelial dysfunction and oxidative stress

被引:199
|
作者
Camici, Giovanni G.
Schiavoni, Marzia
Francia, Pietro
Bachschmid, Markus
Martin-Padura, Ines
Hersberger, Martin
Tanner, Felix C.
Pelicci, PierGiuseppe
Volpe, Massimo
Anversa, Piero
Luescher, Thomas F.
Cosentino, Francesco
机构
[1] Univ Zurich, Univ Hosp, Inst Physiol, CH-8057 Zurich, Switzerland
[2] Univ Roma La Sapienza, Div Cardiol, Fac Med 2, I-00189 Rome, Italy
[3] Univ Konstanz, Dept Biol, D-78457 Constance, Germany
[4] European Inst Oncol, Dept Expt Oncol, I-20141 Milan, Italy
[5] Univ Hosp, Inst Clin Chem, CH-8057 Zurich, Switzerland
[6] New York Med Coll, Cardiovasc Res Inst, Valhalla, NY 10595 USA
[7] IRCCS Neuromed, I-86077 Pozzilli, Italy
关键词
D O I
10.1073/pnas.0609656104
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Increased production of reactive oxygen species (ROS) and loss of endothelial NO bioavailability are key features of vascular disease in diabetes mellitus. The p66(Shc) adaptor protein controls cellular responses to oxidative stress. Mice lacking p66(Shc) (p66(Shc-/-)) have increased resistance to ROS and prolonged life span. The present work was designed to investigate hyperglycemia-associated changes in endothelial function in a model of insulin-dependent diabetes mellitus p66(Shc-/-) mouse. p(66Shc-/-) and wild-type (WT) mice were injected with citrate buffer (control) or made diabetic by an i.p. injection of 200 mg of streptozotocin per kg of body weight. Streptozotocin-treated p66(Shc-/-) and WT mice showed a similar increase in blood glucose. However, significant differences arose with respect to endothelial dysfunction and oxidative stress. WT diabetic mice displayed marked impairment of endothelium-dependent relaxations, increased peroxynitrite (ONOO-) generation, nitrotyrosine expression, and lipid peroxidation as measured in the aortic tissue. In contrast, p66(Shc-/-) diabetic mice did not develop these high-glucose-mediated abnormalities. Furthermore, protein expression of the antioxidant enzyme heme oxygenase 1 and endothelial NO synthase were up-regulated in p66Shc-/- but not in WT mice. We report that p66Shc-/- mice are resistant to hyperglycemia-induced, ROS-dependent endothelial dysfunction. These data suggest that p66Shc adaptor protein is part of a signal transduction pathway relevant to hyperglycemia vascular damage and, hence, may represent a novel therapeutic target against diabetic vascular complications.
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收藏
页码:5217 / 5222
页数:6
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