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帕金森病不能预防线粒体 DNA 突变小鼠的心脏衰老加速。

Parkin does not prevent accelerated cardiac aging in mitochondrial DNA mutator mice.

机构信息

Skaggs School of Pharmacy and Pharmaceutical Sciences and.

Department of Pharmacology, University of California, San Diego, La Jolla, California, USA.

出版信息

JCI Insight. 2019 Apr 16;5(10):127713. doi: 10.1172/jci.insight.127713.

Abstract

The E3 ubiquitin ligase Parkin plays an important role in regulating clearance of dysfunctional or unwanted mitochondria in tissues, including the heart. However, whether Parkin also functions to prevent cardiac aging by maintaining a healthy population of mitochondria is still unclear. Here, we have examined the role of Parkin in the context of mtDNA damage and myocardial aging using a mouse model carrying a proofreading defective mitochondrial DNA polymerase gamma (POLG). We observed both decreased Parkin protein levels and development of cardiac hypertrophy in POLG hearts with age; however, cardiac hypertrophy in POLG mice was neither rescued, nor worsened by cardiac specific overexpression or global deletion of Parkin, respectively. Unexpectedly, mitochondrial fitness did not substantially decline with age in POLG mice when compared to WT. We found that baseline mitophagy receptor-mediated mitochondrial turnover and biogenesis were enhanced in aged POLG hearts. We also observed the presence of megamitochondria in aged POLG hearts. Thus, these processes may limit the accumulation of dysfunctional mitochondria as well as the degree of cardiac functional impairment in the aging POLG heart. Overall, our results demonstrate that Parkin is dispensable for constitutive mitochondrial quality control in a mtDNA mutation model of cardiac aging.

摘要

E3 泛素连接酶 Parkin 在调节组织中功能失调或不需要的线粒体清除中发挥着重要作用,包括心脏。然而,Parkin 是否通过维持健康的线粒体群体来预防心脏衰老仍然不清楚。在这里,我们使用携带校对缺陷的线粒体 DNA 聚合酶 γ (POLG) 的小鼠模型,研究了 Parkin 在 mtDNA 损伤和心肌衰老背景下的作用。我们观察到随着年龄的增长,POLG 心脏中的 Parkin 蛋白水平下降和心脏肥大的发展;然而,心脏特异性过表达或全局敲除 Parkin 分别不能挽救或加重 POLG 小鼠的心脏肥大。出乎意料的是,与 WT 相比,POLG 小鼠的线粒体适应性在衰老过程中并没有明显下降。我们发现,与年轻的 POLG 心脏相比,衰老的 POLG 心脏中线粒体自噬受体介导的线粒体周转率和生物发生增强。我们还观察到衰老的 POLG 心脏中存在巨大线粒体。因此,这些过程可能限制了功能失调线粒体的积累以及衰老 POLG 心脏中心脏功能障碍的程度。总的来说,我们的结果表明,Parkin 在 mtDNA 突变的心脏衰老模型中对于组成型线粒体质量控制是可有可无的。

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