Leach John P, Heallen Todd, Zhang Min, Rahmani Mahdis, Morikawa Yuka, Hill Matthew C, Segura Ana, Willerson James T, Martin James F
Department of Molecular Physiology and Biophysics, Baylor College of Medicine, One Baylor Plaza, Houston, Texas 77030, USA.
The Texas Heart Institute, 6770 Bertner Avenue, Houston, Texas 77030, USA.
Nature. 2017 Oct 12;550(7675):260-264. doi: 10.1038/nature24045. Epub 2017 Oct 4.
Mammalian organs vary widely in regenerative capacity. Poorly regenerative organs, such as the heart are particularly vulnerable to organ failure. Once established, heart failure commonly results in mortality. The Hippo pathway, a kinase cascade that prevents adult cardiomyocyte proliferation and regeneration, is upregulated in human heart failure. Here we show that deletion of the Hippo pathway component Salvador (Salv) in mouse hearts with established ischaemic heart failure after myocardial infarction induces a reparative genetic program with increased scar border vascularity, reduced fibrosis, and recovery of pumping function compared with controls. Using translating ribosomal affinity purification, we isolate cardiomyocyte-specific translating messenger RNA. Hippo-deficient cardiomyocytes have increased expression of proliferative genes and stress response genes, such as the mitochondrial quality control gene, Park2. Genetic studies indicate that Park2 is essential for heart repair, suggesting a requirement for mitochondrial quality control in regenerating myocardium. Gene therapy with a virus encoding Salv short hairpin RNA improves heart function when delivered at the time of infarct or after ischaemic heart failure following myocardial infarction was established. Our findings indicate that the failing heart has a previously unrecognized reparative capacity involving more than cardiomyocyte renewal.
哺乳动物的器官再生能力差异很大。再生能力差的器官,如心脏,特别容易发生器官衰竭。一旦发生心力衰竭,通常会导致死亡。河马通路(Hippo pathway)是一种激酶级联反应,可阻止成年心肌细胞增殖和再生,在人类心力衰竭中上调。在这里,我们表明,与对照组相比,在心肌梗死后已发生缺血性心力衰竭的小鼠心脏中删除河马通路成分萨尔瓦多(Salv),可诱导一种修复性遗传程序,增加瘢痕边缘血管生成、减少纤维化并恢复泵血功能。通过翻译核糖体亲和纯化,我们分离出心肌细胞特异性翻译信使核糖核酸。缺乏河马通路的心肌细胞中增殖基因和应激反应基因的表达增加,如线粒体质量控制基因Park2。遗传学研究表明,Park2对心脏修复至关重要,这表明再生心肌中线粒体质量控制是必需的。在梗死时或心肌梗死后缺血性心力衰竭建立后,用编码Salv短发夹RNA的病毒进行基因治疗可改善心脏功能。我们的研究结果表明,衰竭心脏具有一种以前未被认识的修复能力,这种能力不仅仅涉及心肌细胞更新。