首页> 外文期刊>Hypertension: An Official Journal of the American Heart Association >Rnd3/RhoE Modulates Hypoxia-Inducible Factor 1α/Vascular Endothelial Growth Factor Signaling by Stabilizing Hypoxia-Inducible Factor 1α and Regulates Responsive Cardiac Angiogenesis
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Rnd3/RhoE Modulates Hypoxia-Inducible Factor 1α/Vascular Endothelial Growth Factor Signaling by Stabilizing Hypoxia-Inducible Factor 1α and Regulates Responsive Cardiac Angiogenesis

机译:Rnd3 / RhoE通过稳定低氧诱导因子1α调节低氧诱导因子1α/血管内皮生长因子信号传导并调节反应性心脏血管生成。

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The insufficiency of compensatory angiogenesis in the heart of patients with hypertension contributes to heart failure transition. The hypoxia-inducible factor 1α-vascular endothelial growth factor (HIF1α-VEGF) signaling cascade controls responsive angiogenesis. One of the challenges in reprograming the insufficient angiogenesis is to achieve a sustainable tissue exposure to the proangiogenic factors, such as HIF1α stabilization. In this study, we identified Rnd3, a small Rho GTPase, as a proangiogenic factor participating in the regulation of the HIF1α-VEGF signaling cascade. Rnd3 physically interacted with and stabilized HIF1α, and consequently promoted VEGFA expression and endothelial cell tube formation. To demonstrate this proangiogenic role of Rnd3 in vivo, we generated Rnd3 knockout mice. Rnd3 haploinsufficient (Rnd3+/-) mice were viable, yet developed dilated cardiomyopathy with heart failure after transverse aortic constriction stress. The poststress Rnd3+/- hearts showed significantly impaired angiogenesis and decreased HIF1α and VEGFA expression. The angiogenesis defect and heart failure phenotype were partially rescued by cobalt chloride treatment, a HIF1α stabilizer, confirming a critical role of Rnd3 in stress-responsive angiogenesis. Furthermore, we generated Rnd3 transgenic mice and demonstrated that Rnd3 overexpression in heart had a cardioprotective effect through reserved cardiac function and preserved responsive angiogenesis after pressure overload. Finally, we assessed the expression levels of Rnd3 in the human heart and detected significant downregulation of Rnd3 in patients with end-stage heart failure. We concluded that Rnd3 acted as a novel proangiogenic factor involved in cardiac responsive angiogenesis through HIF1α-VEGFA signaling promotion. Rnd3 downregulation observed in patients with heart failure may explain the insufficient compensatory angiogenesis involved in the transition to heart failure.
机译:高血压患者心脏的代偿性血管生成不足导致心力衰竭的转变。缺氧诱导因子1α-血管内皮生长因子(HIF1α-VEGF)信号级联控制反应性血管生成。重新编程不足的血管生成的挑战之一是要使组织持续暴露于促血管生成因子,例如HIF1α稳定化。在这项研究中,我们确定了小的Rho GTP酶Rnd3作为促血管生成因子,参与了HIF1α-VEGF信号级联的调控。 Rnd3与HIF1α相互作用并使其稳定,从而促进VEGFA表达和内皮细胞管形成。为了证明Rnd3在体内的这种促血管生成作用,我们生成了Rnd3基因敲除小鼠。 Rnd3单倍体不足(Rnd3 +/-)小鼠是可行的,但在横向主动脉缩窄应力后发展为扩张性心肌病,并伴有心力衰竭。后应激Rnd3 +/-心脏显示血管新生明显受损,HIF1α和VEGFA表达降低。血管生成缺陷和心力衰竭表型通过HIF1α稳定剂氯化钴处理得以部分挽救,证实了Rnd3在应激反应性血管生成中的关键作用。此外,我们生成了Rnd3转基因小鼠,并证明了Rnd3在心脏中的过表达通过保留的心脏功能具有心脏保护作用,并在压力超负荷后保留了反应性血管生成。最后,我们评估了Rnd3在人心脏中的表达水平,并检测到患有晚期心力衰竭的患者Rnd3明显下调。我们得出的结论是,Rnd3充当通过HIF1α-VEGFA信号传导促进心脏反应性血管生成的新型促血管生成因子。心力衰竭患者中观察到的Rnd3下调可能解释了过渡到心力衰竭的代偿性血管生成不足。

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