KRIT1 loss of function causes a ROS-dependent upregulation of c-Jun

被引:52
|
作者
Goitre, Luca [1 ]
De Luca, Elisa [1 ]
Braggion, Stefano [1 ]
Trapani, Eliana [1 ]
Guglielmotto, Michela [2 ]
Biasi, Fiorella [1 ]
Forni, Marco [3 ]
Moglia, Andrea [4 ]
Trabalzini, Lorenza [5 ]
Retta, Saverio Francesco [1 ]
机构
[1] Univ Turin, Dept Clin & Biol Sci, I-10043 Turin, Italy
[2] Univ Turin, Dept Neurosci, Turin, Italy
[3] EuroClone SpA Res Lab, Turin, Italy
[4] Univ Turin, Dept Agr Forest & Food Sci, Turin, Italy
[5] Univ Siena, Dept Biotechnol Chem & Pharm, I-53100 Siena, Italy
关键词
Cerebral cavernous malformations; KRIT1; Reactive oxygen species; Cellular antioxidant defense mechanisms; c-Jun; COX-2; Free radicals; CEREBRAL CAVERNOUS MALFORMATIONS; NF-KAPPA-B; OXIDATIVE STRESS; GENE-EXPRESSION; NADPH OXIDASE; VASCULAR-PERMEABILITY; RADICAL GENERATION; ENDOTHELIAL GROWTH; HYDROGEN-PEROXIDE; HETEROZYGOUS MICE;
D O I
10.1016/j.freeradbiomed.2013.11.020
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Loss-of-function mutations in the KRIT1 gene (CCM1) have been associated with the pathogenesis of cerebral cavernous malformations (CCM), a major cerebrovascular disease. However, KRIT1 functions and CCM pathogenetic mechanisms remain incompletely understood. Indeed, recent experiments in animal models have clearly demonstrated that the homozygous loss of KRIT1 is not sufficient to induce CCM lesions, suggesting that additional factors are necessary to cause CCM disease. Previously, we found that KRIT1 is involved in the maintenance of the intracellular reactive oxygen species (ROS) homeostasis to prevent ROS-induced cellular dysfunctions, including a reduced ability to maintain a quiescent state. Here, we show that KRIT1 loss of function leads to enhanced expression and phosphorylation of the redox-sensitive transcription factor c-Jun, as well as induction of its downstream target COX-2, in both cellular models and human CCM tissues. Furthermore, we demonstrate that c-Jun upregulation can be reversed by either KRIT1 re-expression or ROS scavenging, whereas KRIT1 overexpression prevents forced upregulation of c-Jun induced by oxidative stimuli. Taken together with the reported role of c-Jun in vascular dysfunctions triggered by oxidative stress, our findings shed new light on the molecular mechanisms underlying KRIT1 function and CCM pathogenesis. (C) 2014 Elsevier Inc. All rights reserved.
引用
收藏
页码:134 / 147
页数:14
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