Vecchione Carmine, Patrucco Enrico, Marino Gennaro, Barberis Laura, Poulet Roberta, Aretini Alessandra, Maffei Angelo, Gentile Maria Teresa, Storto Marianna, Azzolino Ornella, Brancaccio Mara, Colussi Gian Luca, Bettarini Umberto, Altruda Fiorella, Silengo Lorenzo, Tarone Guido, Wymann Mathias P, Hirsch Emilio, Lembo Giuseppe
Istituto di Ricovero e Cura a Carattere Scientifico, Neuromed, 86077 Pozzilli, Italy.
J Exp Med. 2005 Apr 18;201(8):1217-28. doi: 10.1084/jem.20040995. Epub 2005 Apr 11.
Hypertension affects nearly 20% of the population in Western countries and strongly increases the risk for cardiovascular diseases. In the pathogenesis of hypertension, the vasoactive peptide of the renin-angiotensin system, angiotensin II and its G protein-coupled receptors (GPCRs), play a crucial role by eliciting reactive oxygen species (ROS) and mediating vessel contractility. Here we show that mice lacking the GPCR-activated phosphoinositide 3-kinase (PI3K)gamma are protected from hypertension that is induced by administration of angiotensin II in vivo. PI3Kgamma was found to play a role in angiotensin II-evoked smooth muscle contraction in two crucial, distinct signaling pathways. In response to angiotensin II, PI3Kgamma was required for the activation of Rac and the subsequent triggering of ROS production. Conversely, PI3Kgamma was necessary to activate protein kinase B/Akt, which, in turn, enhanced L-type Ca(2+) channel-mediated extracellular Ca(2+) entry. These data indicate that PI3Kgamma is a key transducer of the intracellular signals that are evoked by angiotensin II and suggest that blocking PI3Kgamma function might be exploited to improve therapeutic intervention on hypertension.
高血压影响着西方国家近20%的人口,并显著增加心血管疾病的风险。在高血压的发病机制中,肾素-血管紧张素系统的血管活性肽、血管紧张素II及其G蛋白偶联受体(GPCRs)通过引发活性氧(ROS)和介导血管收缩发挥关键作用。在此我们表明,缺乏GPCR激活的磷脂酰肌醇3激酶(PI3K)γ的小鼠可免受体内给予血管紧张素II诱导的高血压影响。发现PI3Kγ在血管紧张素II诱发的平滑肌收缩的两条关键且不同的信号通路中发挥作用。响应血管紧张素II时,Rac的激活以及随后ROS产生的触发需要PI3Kγ。相反,激活蛋白激酶B/Akt需要PI3Kγ,而蛋白激酶B/Akt反过来又增强L型钙通道介导的细胞外钙内流。这些数据表明PI3Kγ是血管紧张素II诱发的细胞内信号的关键转导器,并提示阻断PI3Kγ功能可能有助于改善高血压的治疗干预。