Center for Metabolic Disease Research (V.0.C.R., R.C.H., J.K., C.Z., M.B., I.B., J.P., T.P., M.K.), Lewis Katz School of Medicine, Temple University, Philadelphia, PA.
Center for Cardiovascular Research (T.W., J.J., L.M.K., S.M., S.R.H.), Lewis Katz School of Medicine, Temple University, Philadelphia, PA.
Circulation. 2023 Jan 24;147(4):324-337. doi: 10.1161/CIRCULATIONAHA.122.059346. Epub 2022 Oct 31.
Developmental cardiac tissue holds remarkable capacity to regenerate after injury and consists of regenerative mononuclear diploid cardiomyocytes. On maturation, mononuclear diploid cardiomyocytes become binucleated or polyploid and exit the cell cycle. Cardiomyocyte metabolism undergoes a profound shift that coincides with cessation of regeneration in the postnatal heart. However, whether reprogramming metabolism promotes persistence of regenerative mononuclear diploid cardiomyocytes enhancing cardiac function and repair after injury is unknown. Here, we identify a novel role for RNA-binding protein LIN28a, a master regulator of cellular metabolism in cardiac repair after injury.
LIN28a overexpression was tested using mouse transgenesis on postnatal cardiomyocyte numbers, cell cycle, and response to apical resection injury. With the use of neonatal and adult cell culture systems and adult and Mosaic Analysis with Double Markers myocardial injury models in mice, the effect of LIN28a overexpression on cardiomyocyte cell cycle and metabolism was tested. Last, isolated adult cardiomyocytes from LIN28a and wild-type mice 4 days after myocardial injury were used for RNA-immunoprecipitation sequencing.
LIN28a was found to be active primarily during cardiac development and rapidly decreases after birth. LIN28a reintroduction at postnatal day (P) 1, P3, P5, and P7 decreased maturation-associated polyploidization, nucleation, and cell size, enhancing cardiomyocyte cell cycle activity in LIN28a transgenic pups compared with wild-type littermates. Moreover, LIN28a overexpression extended cardiomyocyte cell cycle activity beyond P7 concurrent with increased cardiac function 30 days after apical resection. In the adult heart, LIN28a overexpression attenuated cardiomyocyte apoptosis, enhanced cell cycle activity, cardiac function, and survival in mice 12 weeks after myocardial infarction compared with wild-type littermate controls. Instead, LIN28a small molecule inhibitor attenuated the proreparative effects of LIN28a on the heart. Neonatal rat ventricular myocytes overexpressing LIN28a mechanistically showed increased glycolysis, ATP production, and levels of metabolic enzymes compared with control. LIN28a immunoprecipitation followed by RNA-immunoprecipitation sequencing in cardiomyocytes isolated from LIN28a-overexpressing hearts after injury identified long noncoding RNA-H19 as its most significantly altered target. Ablation of long noncoding RNA-H19 blunted LIN28a-induced enhancement on cardiomyocyte metabolism and cell cycle activity.
Collectively, LIN28a reprograms cardiomyocyte metabolism and promotes persistence of mononuclear diploid cardiomyocytes in the injured heart, enhancing proreparative processes, thereby linking cardiomyocyte metabolism to regulation of ploidy/nucleation and repair in the heart.
发育中的心脏组织在受伤后具有显著的再生能力,其由具有再生能力的单核二倍体心肌细胞组成。在成熟过程中,单核二倍体心肌细胞变为双核或多倍体,并退出细胞周期。心肌细胞代谢发生深刻转变,与出生后心脏的再生停止同时发生。然而,重编程代谢是否促进具有再生能力的单核二倍体心肌细胞的持续存在,从而增强心脏功能和损伤后的修复,目前尚不清楚。在这里,我们确定了 RNA 结合蛋白 LIN28a 的一个新作用,LIN28a 是心脏损伤后细胞修复的细胞代谢的主要调节因子。
使用小鼠转基因技术,在出生后检测 LIN28a 过表达对心肌细胞数量、细胞周期和心尖切除术损伤的反应。利用新生和成年细胞培养系统以及成年和双标记心肌损伤模型,检测 LIN28a 过表达对心肌细胞细胞周期和代谢的影响。最后,在心肌损伤后 4 天,从 LIN28a 和野生型小鼠中分离成年心肌细胞,进行 RNA 免疫沉淀测序。
发现 LIN28a 主要在心脏发育过程中活跃,并在出生后迅速减少。在 P1、P3、P5 和 P7 时,LIN28a 的重新引入减少了与成熟相关的多倍体化、核形成和细胞大小,与野生型同窝仔相比,LIN28a 转基因幼鼠的心肌细胞周期活性增强。此外,LIN28a 过表达将心肌细胞周期活性延长至 P7 之后,同时在心尖切除术 30 天后增强了心脏功能。在成年心脏中,与野生型同窝仔对照相比,LIN28a 过表达在心肌梗死 12 周后减少了心肌细胞凋亡、增强了细胞周期活性、心脏功能和存活率。相反,LIN28a 小分子抑制剂减弱了 LIN28a 对心脏的促修复作用。与对照相比,过表达 LIN28a 的新生大鼠心室肌细胞表现出增强的糖酵解、ATP 产生和代谢酶水平。在损伤后从 LIN28a 过表达心脏中分离的心肌细胞中进行 LIN28a 免疫沉淀,然后进行 RNA 免疫沉淀测序,确定长非编码 RNA-H19 是其最显著改变的靶标。长非编码 RNA-H19 的缺失削弱了 LIN28a 诱导的对心肌细胞代谢和细胞周期活性的增强作用。
总之,LIN28a 重编程心肌细胞代谢,并促进受伤心脏中单核二倍体心肌细胞的持续存在,增强促修复过程,从而将心肌细胞代谢与心脏中倍性/核形成和修复的调节联系起来。