Department of Molecular Biology, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.
Proc Natl Acad Sci U S A. 2013 Aug 20;110(34):13839-44. doi: 10.1073/pnas.1313192110. Epub 2013 Aug 5.
The adult mammalian heart has limited potential for regeneration. Thus, after injury, cardiomyocytes are permanently lost, and contractility is diminished. In contrast, the neonatal heart can regenerate owing to sustained cardiomyocyte proliferation. Identification of critical regulators of cardiomyocyte proliferation and quiescence represents an important step toward potential regenerative therapies. Yes-associated protein (Yap), a transcriptional cofactor in the Hippo signaling pathway, promotes proliferation of embryonic cardiomyocytes by activating the insulin-like growth factor and Wnt signaling pathways. Here we report that mice bearing mutant alleles of Yap and its paralog WW domain containing transcription regulator 1 (Taz) exhibit gene dosage-dependent cardiac phenotypes, suggesting redundant roles of these Hippo pathway effectors in establishing proper myocyte number and maintaining cardiac function. Cardiac-specific deletion of Yap impedes neonatal heart regeneration, resulting in a default fibrotic response. Conversely, forced expression of a constitutively active form of Yap in the adult heart stimulates cardiac regeneration and improves contractility after myocardial infarction. The regenerative activity of Yap is correlated with its activation of embryonic and proliferative gene programs in cardiomyocytes. These findings identify Yap as an important regulator of cardiac regeneration and provide an experimental entry point to enhance this process.
成年哺乳动物的心脏再生能力有限。因此,损伤后心肌细胞会永久丢失,收缩力会减弱。相比之下,新生儿的心脏可以再生,因为心肌细胞持续增殖。鉴定心肌细胞增殖和静止的关键调节因子是潜在再生疗法的重要步骤。Yes 相关蛋白(Yap)是 Hippo 信号通路中的转录共因子,通过激活胰岛素样生长因子和 Wnt 信号通路促进胚胎心肌细胞的增殖。在这里,我们报告说 Yap 及其同源物 WW 结构域包含转录调节剂 1(Taz)的突变等位基因的小鼠表现出基因剂量依赖性的心脏表型,这表明这些 Hippo 通路效应物在建立适当的心肌细胞数量和维持心脏功能方面具有冗余作用。心脏特异性敲除 Yap 会阻碍新生儿心脏的再生,导致默认的纤维化反应。相反,在成年心脏中强制表达组成型激活形式的 Yap 会刺激心脏再生,并改善心肌梗死后的收缩力。Yap 的再生活性与其在心肌细胞中激活胚胎和增殖基因程序相关。这些发现确定了 Yap 是心脏再生的重要调节因子,并为增强这一过程提供了一个实验切入点。