Department of Surgery, Morsani College of Medicine, Tampa, Florida, USA.
Department of Medical Engineering, College of Engineering and Morsani College of Medicine, University of South Florida, Tampa, Florida, USA.
Aging Cell. 2023 Apr;22(4):e13800. doi: 10.1111/acel.13800. Epub 2023 Feb 16.
Ischemic heart disease (IHD) is the leading cause of death, with age range being the primary factor for development. The mechanisms by which aging increases vulnerability to ischemic insult are not well understood. We aim to use single-cell RNA sequencing to discover transcriptional differences in various cell types between aged and young mice, which may contribute to aged-related vulnerability to ischemic insult. Utilizing 10× Genomics Single-Cell RNA sequencing, we were able to complete bioinformatic analysis to identity novel differential gene expression. During the analysis of our collected samples, we detected Pyruvate Dehydrogenase Kinase 4 (Pdk4) expression to be remarkably differentially expressed. Particularly in cardiomyocyte cell populations, Pdk4 was found to be significantly upregulated in the young mouse population compared to the aged mice under ischemic/reperfusion conditions. Pdk4 is responsible for inhibiting the enzyme pyruvate dehydrogenase, resulting in the regulation of glucose metabolism. Due to decreased Pdk4 expression in aged cardiomyocytes, there may be an increased reliance on glucose oxidization for energy. Through biochemical metabolomics analysis, it was observed that there is a greater abundance of pyruvate in young hearts in contrast to their aged counterparts, indicating less glycolytic activity. We believe that Pdk4 response provides valuable insight towards mechanisms that allow for the young heart to handle ischemic insult stress more effectively than the aged heart.
缺血性心脏病(IHD)是主要死因,年龄范围是发病的主要因素。衰老增加对缺血性损伤易感性的机制尚不清楚。我们旨在使用单细胞 RNA 测序来发现老年和年轻小鼠各种细胞类型之间的转录差异,这些差异可能导致与年龄相关的对缺血性损伤的易感性。我们利用 10× Genomics 单细胞 RNA 测序,完成了生物信息学分析,以确定新的差异基因表达。在分析我们收集的样本时,我们检测到丙酮酸脱氢酶激酶 4(Pdk4)的表达明显不同。特别是在心肌细胞群体中,与缺血/再灌注条件下的老年小鼠相比,年轻小鼠群体中的 Pdk4 表达显著上调。Pdk4 负责抑制丙酮酸脱氢酶,从而调节葡萄糖代谢。由于衰老心肌细胞中 Pdk4 表达减少,可能会增加对葡萄糖氧化的依赖以获取能量。通过生化代谢组学分析,观察到年轻心脏中丙酮酸的丰度明显高于老年心脏,表明糖酵解活性较低。我们认为 Pdk4 的反应为年轻心脏比老年心脏更有效地应对缺血性损伤应激的机制提供了有价值的见解。