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Sestrin2 prevents age-related intolerance to post myocardial infarction via AMPK/PGC-1α pathway

机译:Sestrin2通过AMPK /PGC-1α途径预防与年龄相关的对心肌梗死的耐受性

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摘要

We have revealed that a novel stress-inducible protein, Sestrin2, declines in the heart with aging. Moreover, there is an interaction between Sestrin2 and energy sensor AMPK in the heart in response to ischemic stress. The objective of this study is to determine whether Sestrin2-AMPK complex modulates PGC-1α in the heart and protects the heart from ischemic insults. In order to characterize the role of cardiac Sestrin2-AMPK signaling cascade in aging, C57BL/6 wild type young mice (3–4 months), aged mice (24–26 months) and young Sestrin2 KO mice were subjected to left anterior descending coronary artery occlusion for in vivo regional ischemia. Intriguingly, ischemic AMPK activation was blunted in aged WT and young Sesn2 KO hearts as compared with young WT hearts. In addition, the AMPK downstream PGC-1α was down-regulated in the aged and Sestrin2 KO hearts during post myocardial infarction. To further determine the regulation of AMPK on mitochondrial functions in aging, the downstream of mitochondrial biogenesis PGC-1α transcriptional factor were measured. The results demonstrated that the PGC-1α downstream effectors TFAM and UCP2 were impaired in the aged and Sestrin2 KO post-MI hearts as compared to the young hearts. While the apoptotic flux markers such as AIF, Bax/Bcl-2 were up-regulated in both aged and Sestrin2 KO hearts versus young hearts. Furthermore, both Sestrin2 KO and aged hearts demonstrated more susceptible to ischemic insults as compared to young hearts. Additionally, the adeno-associated virus (AAV9)-Sestrin2 delivered to the aged hearts via a coronary delivery approach significantly rescued the ischemic tolerance of aged hearts. Taken together, the decreased Sestrin2 levels in aging lead to an impaired AMPK/PGC-1α signaling cascade and an increased sensitivity to ischemic insults.
机译:我们发现,一种新型的压力诱导蛋白Sestrin2随着衰老而在心脏中下降。此外,响应于缺血应激,心脏中的Sestrin2和能量传感器AMPK之间存在相互作用。这项研究的目的是确定Sestrin2-AMPK复合物是否能调节心脏中的PGC-1α并保护心脏免受缺血性损伤。为了表征心脏Sestrin2-AMPK信号级联在衰老中的作用,对C57BL / 6野生型幼鼠(3-4个月),老年鼠(24-26个月)和Sestrin2 KO幼鼠进行了左前降支动脉闭塞用于体内局部缺血。有趣的是,与年轻的WT心脏相比,老年WT和年轻的Sesn2 KO心脏的缺血性AMPK激活减弱。此外,在心肌梗塞后,老年和Sestrin2 KO心脏中的AMPK下游PGC-1α被下调。为了进一步确定AMPK对衰老中线粒体功能的调节,测量了线粒体生物发生PGC-1α转录因子的下游。结果表明,与年轻心脏相比,老年心脏和Sestrin2 KO MI后心脏的PGC-1α下游效应子TFAM和UCP2受损。尽管凋亡的通量标记物(例如AIF,Bax / Bcl-2)在老年和Sestrin2 KO心脏与年轻心脏中均被上调。此外,与年轻心脏相比,Sestrin2 KO和老年心脏均表现出更易受缺血性损伤。此外,腺相关病毒(AAV9)-Sestrin2通过冠状动脉递送方法递送至老年心脏,显着挽救了老年心脏的缺血耐受性。综上所述,衰老过程中Sestrin2水平的降低导致AMPK /PGC-1α信号传导级联受损,并且对缺血性损伤的敏感性增加。

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