跨小鼠器官和生命阶段的蛋白质组老化特征。

Enzo Scifo,Sarah Morsy,Ting Liu,Kan Xie,Kristina Schaaf,Daniele Bano,Dan Ehninger
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摘要

衰老与分子损伤的积累、功能衰退、疾病患病率的增加以及最终的死亡率有关。尽管我们对衰老的全系统理解在基因组和转录组学水平上取得了重大进展,但大规模蛋白质组学数据集的可用性仍然有限。为了解决这一差距,我们对雄性C57BL/6J小鼠进行了公正的定量蛋白质组学分析,检查了六个生命阶段(3、5、8、14、20和26个月大的动物)的八个关键器官(脑、心、肺、肝、肾、脾、骨骼肌和睾丸)。我们的研究结果揭示了与年龄相关的器官特异性和系统性蛋白质组学改变,在肾脏和脾脏中观察到最早和最广泛的变化,其次是肝脏和肺,而大脑、心脏、睾丸和骨骼肌的蛋白质组学特征保持更稳定。非血液相关蛋白质组的分离使我们能够识别器官特异性衰老过程,包括肾脏的氧化磷酸化和肝脏的脂质代谢,以及共同的衰老特征。轨迹和网络分析进一步揭示了与年龄相关的蛋白质组变化相关的关键蛋白质中心。这些结果提供了小鼠衰老过程中蛋白质变化的系统水平资源,并确定了与年龄相关的衰退的潜在分子调节因子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Proteomic aging signatures across mouse organs and life stages.
Aging is associated with the accumulation of molecular damage, functional decline, increasing disease prevalence, and ultimately mortality. Although our system-wide understanding of aging has significantly progressed at the genomic and transcriptomic levels, the availability of large-scale proteomic datasets remains limited. To address this gap, we have conducted an unbiased quantitative proteomic analysis in male C57BL/6J mice, examining eight key organs (brain, heart, lung, liver, kidney, spleen, skeletal muscle, and testis) across six life stages (3, 5, 8, 14, 20, and 26-month-old animals). Our results reveal age-associated organ-specific as well as systemic proteomic alterations, with the earliest and most extensive changes observed in the kidney and spleen, followed by liver and lung, while the proteomic profiles of brain, heart, testis, and skeletal muscle remain more stable. Isolation of the non-blood-associated proteome allowed us to identify organ-specific aging processes, including oxidative phosphorylation in the kidney and lipid metabolism in the liver, alongside shared aging signatures. Trajectory and network analyses further reveal key protein hubs linked to age-related proteomic shifts. These results provide a system-level resource of protein changes during aging in mice, and identify potential molecular regulators of age-related decline.
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