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Rnd3 haploinsufficient mice are predisposed to hemodynamic stress and develop apoptotic cardiomyopathy with heart failure

机译:Rnd3单倍体不足的小鼠易受血液动力学压力并发展为具有心力衰竭的凋亡性心肌病

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Rho family guanosine triphosphatase (GTPase) 3 (Rnd3), a member of the small Rho GTPase family, has been suggested to regulate cell actin cytoskeleton dynamics, cell migration, and apoptosis through the Rho kinase-dependent signaling pathway. The biological function of Rnd3 in the heart is unknown. The downregulation of small GTPase Rnd3 transcripts was found in patients with end-stage heart failure. The pathological significance of Rnd3 loss in the transition to heart failure remains unexplored. To investigate the functional consequence of Rnd3 downregulation and the associated molecular mechanism, we generated Rnd3+/? haploinsufficient mice to mimic the downregulation of Rnd3 observed in the failing human heart. Rnd3+/? mice were viable; however, the mice developed heart failure after pressure overload by transverse aortic constriction (TAC). Remarkable apoptosis, increased caspase-3 activity, and elevated Rho kinase activity were detected in the Rnd3+/? haploinsufficient animal hearts. Pharmacological inhibition of Rho kinase by fasudil treatment partially improved Rnd3+/? mouse cardiac functions and attenuated myocardial apoptosis. To determine if Rho-associated coiled-coil kinase 1 (ROCK1) was responsible for Rnd3 deficiency-mediated apoptotic cardiomyopathy, we established a double-knockout mouse line, the Rnd3 haploinsufficient mice with ROCK1-null background (Rnd3+/?/ROCK1?/?). Again, genetic deletion of ROCK1 partially but not completely rescued Rnd3 deficiency-mediated heart failure phenotype. These data suggest that downregulation of Rnd3 correlates with cardiac loss of function as in heart failure patients. Animals with Rnd3 haploinsufficiency are predisposed to hemodynamic stress. Hyperactivation of Rho kinase activity is responsible in part for the apoptotic cardiomyopathy development. Further investigation of ROCK1-independent mechanisms in Rnd3-mediated cardiac remodeling should be the focus for future study.
机译:Rho家族鸟苷三磷酸酶(GTPase)3(Rnd3),小的Rho GTPase家族的成员,已建议通过Rho激酶依赖性信号通路调节细胞肌动蛋白的细胞骨架动力学,细胞迁移和凋亡。 Rnd3在心脏中的生物学功能尚不清楚。在晚期心力衰竭患者中发现小GTPase Rnd3转录本的下调。 Rnd3丢失向心力衰竭过渡的病理学意义仍待探索。为了研究Rnd3下调的功能后果及其相关的分子机制,我们生成了Rnd3 + /?单倍体不足的小鼠来模拟在衰竭的人心脏中观察到的Rnd3的下调。 Rnd3 + /?小鼠存活。但是,小鼠在通过横向主动脉收缩(TAC)造成压力超负荷后出现了心力衰竭。在Rnd3 + /?单倍体不足的动物心脏中检测到明显的凋亡,caspase-3活性增加和Rho激酶活性升高。法舒地尔治疗对Rho激酶的药理抑制作用可部分改善Rnd3 + /?小鼠心脏功能,并减弱心肌细胞凋亡。为了确定Rho相关的卷曲螺旋激酶1(ROCK1)是否对Rnd3缺陷介导的凋亡性心肌病负责,我们建立了一个双敲除小鼠系,即具有ROCK1空背景的Rnd3单倍型小鼠(Rnd3 + /? / ROCK1?/?)。再次,ROCK1的基因删除部分但不能完全挽救Rnd3缺陷介导的心力衰竭表型。这些数据表明,Rnd3的下调与心力衰竭患者的心脏功能丧失相关。具有Rnd3单倍剂量不足的动物易患血液动力学压力。 Rho激酶活性的过度活化部分导致凋亡性心肌病的发展。进一步研究Rnd3介导的心脏重构中ROCK1独立机制的研究应成为未来研究的重点。

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