Department of Neurology, Daping Hospital, Third Military Medical University, Chongqing 400042, China.
J Biol Chem. 2010 Apr 30;285(18):13666-77. doi: 10.1074/jbc.M109.087718. Epub 2010 Mar 8.
The phenotypic modulation of vascular smooth muscle cells (VSMCs) plays a pivotal role in hypertension-induced vascular changes including vascular remodeling. The precise mechanisms underlying VSMC phenotypic modulation remain elusive. Here we test the role of peroxisome proliferator-activated receptor (PPAR)-gamma in the VSMC phenotypic modulation during hypertension. Both spontaneously hypertensive rat (SHR) aortas and SHR-derived VSMCs exhibited reduced PPAR-gamma expression and excessive VSMC phenotypic modulation identified by reduced contractile proteins, alpha-smooth muscle actin (alpha-SMA) and smooth muscle 22alpha (SM22alpha), and enhanced proliferation and migration. PPAR-gamma overexpression rescued the expression of alpha-SMA and SM22alpha, and inhibited the proliferation and migration in SHR-derived VSMCs. In contrast, PPAR-gamma silencing exerted the opposite effect. Activating PPAR-gamma using rosiglitazone in vivo up-regulated aortic alpha-SMA and SM22alpha expression and attenuated aortic remodeling in SHRs. Increased activation of phosphoinositide 3-kinase (PI3K)/protein kinase B (AKT) signaling was observed in SHR-derived VSMCs. PI3K inhibitor LY294002 rescued the impaired expression of contractile proteins, and inhibited proliferation and migration in VSMCs from SHRs, whereas constitutively active PI3K mutant had the opposite effect. Overexpression or silencing of PPAR-gamma inhibited or excited PI3K/Akt activity, respectively. LY294002 counteracted the PPAR-gamma silencing induced proliferation and migration in SHR-derived VSMCs, whereas active PI3K mutant had the opposite effect. In contrast, reduced proliferation and migration by PPAR-gamma overexpression were reversed by the active PI3K mutant, and further inhibited by LY294002. We conclude that PPAR-gamma inhibits VSMC phenotypic modulation through inhibiting PI3K/Akt signaling. Impaired PPAR-gamma expression is responsible for VSMC phenotypic modulation during hypertension. These findings highlight an attractive therapeutic target for hypertension-related vascular disorders.
血管平滑肌细胞(VSMC)的表型调节在高血压引起的血管变化中起着关键作用,包括血管重构。VSMC 表型调节的确切机制仍不清楚。在这里,我们测试了过氧化物酶体增殖物激活受体(PPAR)-γ在高血压期间 VSMC 表型调节中的作用。自发性高血压大鼠(SHR)主动脉和 SHR 衍生的 VSMC 均表现出 PPAR-γ表达减少和 VSMC 表型过度调节,其特征是收缩蛋白减少,α-平滑肌肌动蛋白(α-SMA)和平滑肌 22α(SM22α),以及增殖和迁移增强。PPAR-γ过表达挽救了 SHR 衍生的 VSMC 中α-SMA 和 SM22α的表达,并抑制了增殖和迁移。相反,PPAR-γ沉默则产生了相反的效果。体内使用罗格列酮激活 PPAR-γ可上调 SHR 主动脉α-SMA 和 SM22α的表达,并减轻 SHR 的主动脉重构。在 SHR 衍生的 VSMC 中观察到磷酸肌醇 3-激酶(PI3K)/蛋白激酶 B(AKT)信号的激活增加。PI3K 抑制剂 LY294002 挽救了 SHR 衍生的 VSMC 中收缩蛋白表达受损,并抑制了增殖和迁移,而组成型活性 PI3K 突变体则产生相反的效果。PPAR-γ 的过表达或沉默分别抑制或兴奋了 PI3K/Akt 活性。LY294002 抵消了 PPAR-γ 沉默诱导的 SHR 衍生的 VSMC 增殖和迁移,而活性 PI3K 突变体则产生相反的效果。相反,PPAR-γ 过表达减少的增殖和迁移被活性 PI3K 突变体逆转,并且进一步被 LY294002 抑制。我们得出结论,PPAR-γ 通过抑制 PI3K/Akt 信号抑制 VSMC 表型调节。PPAR-γ 表达减少是高血压期间 VSMC 表型调节的原因。这些发现强调了高血压相关血管疾病的一个有吸引力的治疗靶点。