Institute of Life Sciences, Scuola Superiore Sant'Anna, Pisa; Fondazione Gabriele Monasterio, Pisa, Italy.
Heart Center Dresden-University Clinic, Technical University Dresden, Dresden, Germany.
J Card Fail. 2022 Apr;28(4):588-600. doi: 10.1016/j.cardfail.2021.11.011. Epub 2021 Nov 14.
Protein pool turnover is a critically important cellular homeostatic component, yet it has been little explored in the context of heart failure (HF) pathophysiology. We used in vivo H labeling/proteome dynamics for the nonbiased discovery of turnover alterations involving functionally linked cardiac and plasma proteins in canine tachypacing-induced HF, an established preclinical model of dilated cardiomyopathy. Compared with controls, dogs with congestive HF displayed bidirectional turnover changes of 28 cardiac proteins, that is, a reduced half-life of several key enzymes involved in glycolysis, homocysteine metabolism and glycogenesis, and increased half-life of proteins involved in proteolysis. Changes in plasma proteins were more modest: only 5 proteins, involved in various functions including proteolysis inhibition, hemoglobin, calcium and ferric iron binding, displayed increased or decreased turnover rates. In other dogs undergoing cardiac tachypacing, we infused for 2 weeks the myokine Follistatin-like protein 1, known for its ameliorative effects on HF-induced alterations. Proteome dynamics proved very sensitive in detecting the partial or complete prevention, by Follistatin-like protein 1, of cardiac and plasma protein turnover alterations. In conclusion, our study unveiled, for the first time in a large mammal, numerous HF-related alterations that may serve as the basis for future mechanistic research and/or as conceptually new molecular markers.
蛋白质池周转率是细胞内稳态的一个重要组成部分,但在心力衰竭 (HF) 病理生理学中却很少被研究。我们使用体内 H 标记/蛋白质组动力学,在犬心动过速诱导的 HF 中,即扩张型心肌病的一种既定临床前模型中,非偏见地发现了涉及功能相关的心脏和血浆蛋白质的周转率改变。与对照组相比,充血性 HF 犬显示出 28 种心脏蛋白质的双向周转率变化,即涉及糖酵解、同型半胱氨酸代谢和糖生成的几种关键酶的半衰期降低,以及参与蛋白水解的蛋白质的半衰期增加。血浆蛋白质的变化较小:只有 5 种蛋白质,涉及各种功能,包括蛋白水解抑制、血红蛋白、钙和铁结合,显示出周转率的增加或减少。在其他接受心脏超速起搏的犬中,我们用 2 周的肌生成素 Follistatin 样蛋白 1 进行了灌注,该蛋白因其对 HF 诱导的改变的改善作用而被熟知。蛋白质组动力学在检测 Follistatin 样蛋白 1 对心脏和血浆蛋白质周转率改变的部分或完全预防方面非常敏感。总之,我们的研究首次在大型哺乳动物中揭示了许多与 HF 相关的改变,这些改变可能为未来的机制研究和/或作为新概念性的分子标记提供基础。