Ongherth Anita, Pasch Sebastian, Wuertz Christina M, Nowak Karolin, Kittana Naim, Weis Cleo A, Jatho Aline, Vettel Christiane, Tiburcy Malte, Toischer Karl, Hasenfuss Gerd, Zimmermann Wolfram-Hubertus, Wieland Thomas, Lutz Susanne
Institute of Pharmacology, Medical Center Goettingen, Germany; DZHK (German Center for Cardiovascular Research) partner sites Goettingen and Mannheim, Germany.
Institute of Pharmacology, Medical Center Goettingen, Germany.
J Mol Cell Cardiol. 2015 Nov;88:39-54. doi: 10.1016/j.yjmcc.2015.09.009. Epub 2015 Sep 21.
Cardiac remodeling, a hallmark of heart disease, is associated with intense auto- and paracrine signaling leading to cardiac fibrosis. We hypothesized that the specific mediator of Gq/11-dependent RhoA activation p63RhoGEF, which is expressed in cardiac fibroblasts, plays a role in the underlying processes. We could show that p63RhoGEF is up-regulated in mouse hearts subjected to transverse aortic constriction (TAC). In an engineered heart muscle model (EHM), p63RhoGEF expression in cardiac fibroblasts increased resting and twitch tensions, and the dominant negative p63ΔN decreased both. In an engineered connective tissue model (ECT), p63RhoGEF increased tissue stiffness and its knockdown as well as p63ΔN reduced stiffness. In 2D cultures of neonatal rat cardiac fibroblasts, p63RhoGEF regulated the angiotensin II (Ang II)-dependent RhoA activation, the activation of the serum response factor, and the expression and secretion of the connective tissue growth factor (CTGF). All these processes were inhibited by the knockdown of p63RhoGEF or by p63ΔN likely based on their negative influence on the actin cytoskeleton. Moreover, we show that p63RhoGEF also regulates CTGF in engineered tissues and correlates with it in the TAC model. Finally, confocal studies revealed a closely related localization of p63RhoGEF and CTGF in the trans-Golgi network.
心脏重塑是心脏病的一个标志,与导致心脏纤维化的强烈自分泌和旁分泌信号传导有关。我们假设在心脏成纤维细胞中表达的Gq/11依赖性RhoA激活的特定介质p63RhoGEF在潜在过程中起作用。我们发现,在接受主动脉缩窄(TAC)的小鼠心脏中,p63RhoGEF上调。在工程心肌模型(EHM)中,心脏成纤维细胞中p63RhoGEF的表达增加了静息张力和抽搐张力,而显性负性p63ΔN则降低了两者。在工程结缔组织模型(ECT)中,p63RhoGEF增加了组织硬度,其敲低以及p63ΔN降低了硬度。在新生大鼠心脏成纤维细胞的二维培养中,p63RhoGEF调节血管紧张素II(Ang II)依赖性RhoA激活、血清反应因子的激活以及结缔组织生长因子(CTGF)的表达和分泌。所有这些过程都可能基于其对肌动蛋白细胞骨架的负面影响而被p63RhoGEF的敲低或p63ΔN抑制。此外,我们表明p63RhoGEF还在工程组织中调节CTGF,并在TAC模型中与之相关。最后,共聚焦研究揭示了p63RhoGEF和CTGF在反式高尔基体网络中的紧密相关定位。