Toronto General Research Institute, Toronto, 100 College St., M5G 1L7, Ontario Canada.
Campbell Family Cancer Research Institute, Princess Margaret Hospital, Toronto, Ontario, Canada.
Sci Rep. 2017 Feb 2;7:41490. doi: 10.1038/srep41490.
Cardiac homeostasis requires proper control of protein turnover. Protein degradation is principally controlled by the Ubiquitin-Proteasome System. Mule is an E3 ubiquitin ligase that regulates cellular growth, DNA repair and apoptosis to maintain normal tissue architecture. However, Mule's function in the heart has yet to be described. In a screen, we found reduced Mule expression in left ventricular samples from end-stage heart failure patients. Consequently, we generated conditional cardiac-specific Mule knockout (Mule ;mcm) mice. Mule ablation in adult Mule ;mcm mice prevented myocardial c-Myc polyubiquitination, leading to c-Myc accumulation and subsequent reduced expression of Pgc-1α, Pink1, and mitochondrial complex proteins. Furthermore, these mice developed spontaneous cardiac hypertrophy, left ventricular dysfunction, and early mortality. Co-deletion of Mule and c-Myc rescued this phenotype. Our data supports an indispensable role for Mule in cardiac homeostasis through the regulation of mitochondrial function via maintenance of Pgc-1α and Pink1 expression and persistent negative regulation of c-Myc.
心脏内环境稳定需要对蛋白质周转进行适当的控制。蛋白质降解主要由泛素-蛋白酶体系统控制。Mule 是一种 E3 泛素连接酶,可调节细胞生长、DNA 修复和细胞凋亡,以维持正常的组织架构。然而,Mule 在心脏中的功能尚未被描述。在一项筛选中,我们发现终末期心力衰竭患者左心室样本中的 Mule 表达降低。因此,我们生成了条件性心脏特异性 Mule 敲除(Mule ;mcm)小鼠。成年 Mule ;mcm 小鼠中 Mule 的缺失阻止了心肌 c-Myc 的多泛素化,导致 c-Myc 积累,并随后降低 Pgc-1α、Pink1 和线粒体复合物蛋白的表达。此外,这些小鼠还出现自发性心肌肥厚、左心室功能障碍和早期死亡。Mule 和 c-Myc 的共同缺失挽救了这种表型。我们的数据支持 Mule 通过维持 Pgc-1α 和 Pink1 的表达和持续负调控 c-Myc 来调节线粒体功能,从而在心脏内环境稳定中发挥不可或缺的作用。