Department of Pathophysiology, Osaka Metropolitan University, Graduate School of Medicine, Osaka, Japan.
Proteomic Core Facility, EMBL Heidelberg, Heidelberg, Germany.
Nat Commun. 2024 Oct 2;15(1):8520. doi: 10.1038/s41467-024-52845-x.
To what extent and how post-transcriptional dysregulation affects aging proteome remains unclear. Here, we provide proteomic data of whole-tissue lysates (WTL) and low-solubility protein-enriched fractions (LSF) of major tissues collected from mice of 6, 15, 24, and 30 months of age. Low-solubility proteins are preferentially affected by age and the analysis of LSF doubles the number of proteins identified to be differentially expressed with age. Simultaneous analysis of proteome and transcriptome using the same tissue homogenates reveals the features of age-related post-transcriptional dysregulation. Post-transcriptional dysregulation becomes evident especially after 24 months of age and age-related post-transcriptional dysregulation leads to accumulation of core matrisome proteins and reduction of mitochondrial membrane proteins in multiple tissues. Based on our in-depth proteomic data and sample-matched transcriptome data of adult, middle-aged, old, and geriatric mice, we construct the Mouse aging proteomic atlas ( https://aging-proteomics.info/ ), which provides a thorough and integrative view of age-related gene expression changes.
转录后失调在多大程度上以及如何影响衰老蛋白质组尚不清楚。在这里,我们提供了从小鼠 6、15、24 和 30 个月大的主要组织中收集的全组织裂解物(WTL)和低可溶性蛋白富集部分(LSF)的蛋白质组学数据。低可溶性蛋白优先受到年龄的影响,对 LSF 的分析将随年龄变化而表达差异的蛋白数量增加一倍。使用相同的组织匀浆同时分析蛋白质组和转录组,揭示了与年龄相关的转录后失调的特征。转录后失调在 24 个月后变得明显,与年龄相关的转录后失调导致核心基质蛋白在多个组织中的积累和线粒体膜蛋白的减少。基于我们对成年、中年、老年和老年小鼠的深入蛋白质组学数据和样本匹配的转录组数据,我们构建了小鼠衰老蛋白质组图谱(https://aging-proteomics.info/),该图谱提供了与年龄相关的基因表达变化的全面和综合视图。