Abboud Cardiovascular Research Center Department of Internal Medicine Carver College of Medicine University of Iowa, Iowa City, USA.
Bavarian Center for Biomolecular Mass Spectrometry (BayBioMS@MRI) Technical University of Munich, Munich, Germany.
Oxid Med Cell Longev. 2024 Jun 26;2024:4887877. doi: 10.1155/2024/4887877. eCollection 2024.
Approximately 70% of all strokes occur in patients over 65 years old, and stroke increases the risk of developing dementia. The circle of Willis (CoW), the ring of arteries at the base of the brain, links the intracerebral arteries to one another to maintain adequate cerebral perfusion. The CoW proteome is affected in cerebrovascular and neurodegenerative diseases, but changes related to aging have not been described. Here, we report on a quantitative proteomics analysis comparing the CoW from five young (2-3-month-old) and five aged male (18-20-month-old) mice using gene ontology (GO) enrichment, ingenuity pathway analysis (IPA), and iPathwayGuide tools. This revealed 242 proteins that were significantly dysregulated with aging, among which 189 were upregulated and 53 downregulated. GO enrichment-based analysis identified blood coagulation as the top biological function that changed with age and integrin binding and extracellular matrix constituents as the top molecular functions. Consistent with these findings, iPathwayGuide-based impact analysis revealed associations between aging and the complement and coagulation, platelet activation, ECM-receptor interaction, and metabolic process pathways. Furthermore, IPA analysis revealed the enrichment of 97 canonical pathways that contribute to inflammatory responses, as well as 59 inflammation-associated upstream regulators including 39 transcription factors and 20 cytokines. Thus, aging-associated changes in the CoW proteome in male mice demonstrate increases in metabolic, thrombotic, and inflammatory processes.
大约 70%的中风发生在 65 岁以上的患者中,中风会增加痴呆的风险。大脑底部的 Willis 环(CoW)是将颅内动脉相互连接以维持足够脑灌注的动脉环。CoW 蛋白质组在脑血管和神经退行性疾病中受到影响,但与衰老相关的变化尚未描述。在这里,我们使用基因本体论 (GO) 富集、Ingenuity 通路分析 (IPA) 和 iPathwayGuide 工具,报告了一项比较 5 只年轻(2-3 个月大)和 5 只年老(18-20 个月大)雄性小鼠 CoW 的定量蛋白质组学分析。这揭示了 242 种与衰老显著失调的蛋白质,其中 189 种上调,53 种下调。基于 GO 富集的分析确定血液凝固是随年龄变化的最重要生物学功能,整合素结合和细胞外基质成分是最重要的分子功能。与这些发现一致,iPathwayGuide 基于影响的分析显示衰老与补体和凝血、血小板激活、细胞外基质受体相互作用和代谢过程途径之间存在关联。此外,IPA 分析显示了 97 条与炎症反应相关的经典途径的富集,以及 59 个与炎症相关的上游调节剂,包括 39 个转录因子和 20 个细胞因子。因此,雄性小鼠 CoW 蛋白质组与衰老相关的变化表明代谢、血栓形成和炎症过程增加。