Blice-Baum Anna C, Zambon Alexander C, Kaushik Gaurav, Viswanathan Meera C, Engler Adam J, Bodmer Rolf, Cammarato Anthony
Division of Cardiology, Department of Medicine, Johns Hopkins University, Baltimore, MD, 21205, USA.
Department of Biopharmaceutical Sciences, Keck Graduate Institute, Claremont, CA, 91711, USA.
Aging Cell. 2017 Feb;16(1):93-103. doi: 10.1111/acel.12543.
Heart performance declines with age. Impaired protein quality control (PQC), due to reduced ubiquitin-proteasome system (UPS) activity, autophagic function, and/or chaperone-mediated protein refolding, contributes to cardiac deterioration. The transcription factor FOXO participates in regulating genes involved in PQC, senescence, and numerous other processes. Here, a comprehensive approach, involving molecular genetics, novel assays to probe insect cardiac physiology, and bioinformatics, was utilized to investigate the influence of heart-restricted manipulation of dFOXO expression in the rapidly aging Drosophila melanogaster model. Modest dFOXO overexpression was cardioprotective, ameliorating nonpathological functional decline with age. This was accompanied by increased expression of genes associated predominantly with the UPS, relative to other PQC components, which was validated by a significant decrease in ubiquitinated proteins. RNAi knockdown of UPS candidates accordingly compromised myocardial physiology in young flies. Conversely, excessive dFOXO overexpression or suppression proved detrimental to heart function and/or organismal development. This study highlights D. melanogaster as a model of cardiac aging and FOXO as a tightly regulated mediator of proteostasis and heart performance over time.
心脏功能会随着年龄的增长而衰退。由于泛素-蛋白酶体系统(UPS)活性降低、自噬功能以及/或者伴侣介导的蛋白质重折叠作用受损,蛋白质质量控制(PQC)功能出现障碍,进而导致心脏功能恶化。转录因子FOXO参与调控与PQC、衰老以及许多其他过程相关的基因。在此,我们采用了一种综合方法,包括分子遗传学、用于探究昆虫心脏生理学的新型检测方法以及生物信息学,来研究在快速衰老的黑腹果蝇模型中,心脏特异性操纵dFOXO表达所产生的影响。适度过表达dFOXO具有心脏保护作用,可改善随着年龄增长出现的非病理性功能衰退。相对于其他PQC组分,这伴随着主要与UPS相关的基因表达增加,泛素化蛋白显著减少证实了这一点。相应地,对UPS候选基因进行RNA干扰敲低会损害年轻果蝇的心肌生理功能。相反,过度过表达或抑制dFOXO被证明对心脏功能和/或机体发育有害。这项研究突出了黑腹果蝇作为心脏衰老模型的作用,以及FOXO作为随着时间推移蛋白质稳态和心脏功能的严格调控介质的作用。