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FoxO1 对于运动引起的生理性心肌肥厚是必需的,但对于组成性激活的 PI3K 则不是必需的。

FoxO1 is required for physiological cardiac hypertrophy induced by exercise but not by constitutively active PI3K.

机构信息

Baker Heart and Diabetes Institute, Melbourne, Victoria, Australia.

Department of Diabetes Central Clinical School, Monash University, Clayton, Victoria, Australia.

出版信息

Am J Physiol Heart Circ Physiol. 2021 Apr 1;320(4):H1470-H1485. doi: 10.1152/ajpheart.00838.2020. Epub 2021 Feb 12.

Abstract

The insulin-like growth factor 1 receptor (IGF1R) and phosphoinositide 3-kinase p110α (PI3K) are critical regulators of exercise-induced physiological cardiac hypertrophy and provide protection in experimental models of pathological remodeling and heart failure. Forkhead box class O1 (FoxO1) is a transcription factor that regulates cardiomyocyte hypertrophy downstream of IGF1R/PI3K activation in vitro, but its role in physiological hypertrophy in vivo was unknown. We generated cardiomyocyte-specific FoxO1 knockout (cKO) mice and assessed the phenotype under basal conditions and settings of physiological hypertrophy induced by ) swim training or ) cardiac-specific transgenic expression of constitutively active PI3K (caPI3K). Under basal conditions, male and female cKO mice displayed mild interstitial fibrosis compared with control (CON) littermates, but no other signs of cardiac pathology were present. In response to exercise training, female CON mice displayed an increase (∼21%) in heart weight normalized to tibia length vs. untrained mice. Exercise-induced hypertrophy was blunted in cKO mice. Exercise increased cardiac Akt phosphorylation and IGF1R expression but was comparable between genotypes. However, differences in Foxo3a, Hsp70, and autophagy markers were identified in hearts of exercised cKO mice. Deletion of FoxO1 did not reduce cardiac hypertrophy in male or female caPI3K mice. Cardiac Akt and FoxO1 protein expressions were significantly reduced in hearts of caPI3K mice, which may represent a negative feedback mechanism from chronic caPI3K, and negate any further effect of reducing FoxO1 in the cKO. In summary, FoxO1 contributes to exercise-induced hypertrophy. This has important implications when one is considering FoxO1 as a target for treating the diseased heart. Regulators of exercise-induced physiological cardiac hypertrophy and protection are considered promising targets for the treatment of heart failure. Unlike pathological hypertrophy, the transcriptional regulation of physiological hypertrophy has remained largely elusive. To our knowledge, this is the first study to show that the transcription factor FoxO1 is a critical mediator of exercise-induced cardiac hypertrophy. Given that exercise-induced hypertrophy is protective, this finding has important implications when one is considering FoxO1 as a target for treating the diseased heart.

摘要

胰岛素样生长因子 1 受体 (IGF1R) 和磷酸肌醇 3-激酶 p110α (PI3K) 是运动诱导的生理性心肌肥厚的关键调节因子,在病理性重构和心力衰竭的实验模型中提供保护。叉头框 O1 (FoxO1) 是一种转录因子,在体外 IGF1R/PI3K 激活的下游调节心肌细胞肥厚,但在体内生理性肥厚中的作用尚不清楚。我们生成了心肌细胞特异性 FoxO1 敲除 (cKO) 小鼠,并在基础条件下和游泳训练或心脏特异性过表达组成型激活的 PI3K (caPI3K) 诱导的生理性肥厚条件下评估表型。在基础条件下,雄性和雌性 cKO 小鼠与对照 (CON) 同窝仔相比,显示出轻度的间质纤维化,但没有其他心脏病理学迹象。在运动训练的反应中,雌性 CON 小鼠的心脏重量与胫骨长度的比值增加了约 21%,与未经训练的小鼠相比。cKO 小鼠的运动诱导性肥厚减弱。运动增加了心脏 Akt 磷酸化和 IGF1R 表达,但在基因型之间是可比的。然而,在运动的 cKO 小鼠心脏中,发现了 Foxo3a、Hsp70 和自噬标志物的差异。FoxO1 的缺失并没有减少雄性或雌性 caPI3K 小鼠的心脏肥厚。caPI3K 小鼠心脏的 Akt 和 FoxO1 蛋白表达显著降低,这可能代表慢性 caPI3K 的负反馈机制,并否定了在 cKO 中进一步降低 FoxO1 的任何作用。总之,FoxO1 有助于运动诱导的肥厚。当将 FoxO1 视为治疗患病心脏的靶点时,这具有重要意义。运动诱导的生理性心肌肥厚和保护的调节因子被认为是心力衰竭治疗的有希望的靶点。与病理性肥厚不同,生理性肥厚的转录调控在很大程度上仍然难以捉摸。据我们所知,这是第一项表明转录因子 FoxO1 是运动诱导的心脏肥厚的关键介质的研究。鉴于运动诱导的肥厚具有保护作用,当将 FoxO1 视为治疗患病心脏的靶点时,这一发现具有重要意义。

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