Research Center on Aging, Centre Intégré Universitaire de Santé et Services Sociaux de l'Estrie-Centre Hospitalier Universitaire de Sherbrooke, Sherbrooke, QC J1H 4C4, Canada.
Department of Biochemistry and Functional Genomics, Faculty of Medicine and Health Sciences, Université de Sherbrooke, Sherbrooke, QC J1H 5N4, Canada.
Cells. 2023 Feb 14;12(4):615. doi: 10.3390/cells12040615.
During aging, changes in gene expression are associated with a decline in physical and cognitive abilities. Here, we investigate the connection between changes in mRNA and protein expression in the brain by comparing the transcriptome and proteome of the mouse cortex during aging. Our transcriptomic analysis revealed that aging mainly triggers gene activation in the cortex. We showed that an increase in mRNA expression correlates with protein expression, specifically in the anterior cingulate cortex, where we also observed an increase in cortical thickness during aging. Genes exhibiting an aging-dependent increase of mRNA and protein levels are involved in sensory perception and immune functions. Our proteomic analysis also identified changes in protein abundance in the aging cortex and highlighted a subset of proteins that were differentially enriched but exhibited stable mRNA levels during aging, implying the contribution of aging-related post- transcriptional and post-translational mechanisms. These specific genes were associated with general biological processes such as translation, ribosome assembly and protein degradation, and also important brain functions related to neuroplasticity. By decoupling mRNA and protein expression, we have thus characterized distinct subsets of genes that differentially adjust to cellular aging in the cerebral cortex.
随着年龄的增长,基因表达的变化与身体和认知能力的下降有关。在这里,我们通过比较衰老过程中小鼠大脑皮层的转录组和蛋白质组,研究了大脑中 mRNA 和蛋白质表达变化之间的联系。我们的转录组分析表明,衰老主要触发大脑皮层中的基因激活。我们表明,mRNA 表达的增加与蛋白质表达相关,特别是在前扣带皮层,我们还观察到随着年龄的增长,皮质厚度增加。表现出 mRNA 水平随年龄增长而增加的基因参与感觉感知和免疫功能。我们的蛋白质组分析还鉴定出衰老大脑皮层中蛋白质丰度的变化,并突出了一组差异丰富但在衰老过程中 mRNA 水平稳定的蛋白质,暗示了与衰老相关的转录后和翻译后机制的贡献。这些特定基因与翻译、核糖体组装和蛋白质降解等一般生物学过程以及与神经可塑性相关的重要大脑功能有关。通过分离 mRNA 和蛋白质表达,我们因此描绘了大脑皮层中对细胞衰老有不同适应能力的不同基因子集。