Ruiz-Velasco Natividad, Domínguez Angeles, Vega Miguel A
Servicio de Bioquímica-Investigación, Consejo Superior de Investigaciones Científicas, Hospital Ramón y Cajal, Ctra. Colmenar Viejo km. 9.1, 28034, Madrid, Spain.
Biochem Pharmacol. 2004 Jan 15;67(2):303-13. doi: 10.1016/j.bcp.2003.09.006.
Scavenger receptor CD36 plays important roles in atherosclerosis, inflammation, thrombosis, and angiogenesis. Statins besides lowering serum cholesterol levels, exhibit a variety of effects on inflammation, coagulation and atherosclerosis lesion stability. PPAR-gamma ligands influence macrophage responses to many inflammatory stimuli. Herein, we investigated in human monocytes the effect of statins alone, and in combination with PPAR-gamma ligands on CD36 expression, as well as the molecular mechanisms underlying the regulatory action of statins. Our results demonstrate that statins upregulate both CD36 surface protein and mRNA by potentiating the transcription of the CD36 gene. Furthermore, the combination of statins and PPAR-gamma ligands has an additive effect on CD36 expression. Effects of statins on CD36 expression were prevented by mevalonate and geranylgeraniol, indicating the requirement of geranylgeranylated proteins for CD36 regulation. Rho GTPases inhibitor C3 exoenzyme reproduced the effect of statins, while Rho activator lysophosphatidic acid downregulated CD36. Transient expression of dominant-negative mutants of RhoA and RhoB induced a significant increased in CD36 promoter activity. Finally, the actin cytoskeleton disrupter cytochalasin D upregulated CD36. These data indicate that Rho proteins are important modulators of CD36 expression, and strongly suggest that statins increased CD36 expression by disrupting cytoskeleton organization by inactivating Rho GTPases. These features prompt to investigate the roles of Rho GTPases and actin cytoskeleton modulators on monocytic functions affected by statins.
清道夫受体CD36在动脉粥样硬化、炎症、血栓形成和血管生成中发挥着重要作用。他汀类药物除了降低血清胆固醇水平外,还对炎症、凝血和动脉粥样硬化病变稳定性具有多种作用。过氧化物酶体增殖物激活受体γ(PPAR-γ)配体影响巨噬细胞对多种炎症刺激的反应。在此,我们研究了他汀类药物单独以及与PPAR-γ配体联合使用对人单核细胞中CD36表达的影响,以及他汀类药物调节作用的分子机制。我们的结果表明,他汀类药物通过增强CD36基因的转录来上调CD36表面蛋白和mRNA。此外,他汀类药物与PPAR-γ配体的联合使用对CD36表达具有相加作用。甲羟戊酸和香叶基香叶醇可阻止他汀类药物对CD36表达的影响,表明香叶基香叶酰化蛋白对CD36调节的必要性。Rho GTP酶抑制剂C3外切酶重现了他汀类药物的作用,而Rho激活剂溶血磷脂酸则下调了CD36。RhoA和RhoB显性负突变体的瞬时表达导致CD36启动子活性显著增加。最后,肌动蛋白细胞骨架破坏剂细胞松弛素D上调了CD36。这些数据表明Rho蛋白是CD36表达的重要调节因子,并强烈提示他汀类药物通过使Rho GTP酶失活破坏细胞骨架组织来增加CD36表达。这些特征促使我们研究Rho GTP酶和肌动蛋白细胞骨架调节剂在受他汀类药物影响的单核细胞功能中的作用。