Ringström Nathalie, Edling Charlotte, Nalesso Giovanna, Barallobre-Barreiro Javier, Jeevaratnam Kamalan
School of Veterinary Medicine, Faculty of Health and Medical Sciences, University of Surrey, Guildford, UK.
James Black Centre, King's College London, London, UK.
Ann N Y Acad Sci. 2025 Jun;1548(1):206-217. doi: 10.1111/nyas.15341. Epub 2025 Apr 28.
The cardiac atrial extracellular matrix (ECM) is central to age-associated cardiac remodeling and subsequent decline in cardiac functioning. Despite this, the composition of the atrial ECM and how it changes with age is not yet known. This study utilized mass spectrometry to evaluate the composition of murine atria in young (12 weeks) and old (77 weeks) C57BL/6J mice. The tissue was decellularized, ECM and ECM-associated proteins were extracted with GuHCl, and proteins were deglycosylated to enable identification of glycosylated peptides. Two hundred and thirty-seven ECM and ECM-associated proteins were found to be significantly differentially expressed with age. Some proteins (MMP9, S100A9, VWA3A, CTSD, CCL8) were more than threefold increased with age, proteoglycans were modestly decreased, while the overall collagen content was markedly decreased. STRING network mapping of physical associations predicted that both PLOD3 and PDGFA interact with the collagens that decreased with age. The results suggest that the mechanism behind age-associated atrial stiffness is not due to an increase in collagen content as previously believed, but an increase in cross-linking, potentially facilitated by PLOD3. Additionally, several of the significant proteins have not previously been associated with cardiac aging and thus are potential drug targets for age-associated cardiac fibrosis and other age-associated conditions.
心脏心房细胞外基质(ECM)在与年龄相关的心脏重塑及随后的心功能衰退中起核心作用。尽管如此,心房ECM的组成及其随年龄的变化尚不清楚。本研究利用质谱法评估了年轻(12周)和年老(77周)C57BL/6J小鼠心房的组成。将组织去细胞化,用盐酸胍提取ECM和与ECM相关的蛋白质,并对蛋白质进行去糖基化处理以鉴定糖基化肽段。发现有237种ECM和与ECM相关的蛋白质随年龄有显著差异表达。一些蛋白质(基质金属蛋白酶9、S100A9、血管性血友病因子A3、组织蛋白酶D、趋化因子CCL8)随年龄增加超过三倍,蛋白聚糖适度减少,而总体胶原蛋白含量显著降低。STRING物理关联网络图谱预测赖氨酰氧化酶样蛋白3(PLOD3)和血小板衍生生长因子A(PDGFA)都与随年龄减少的胶原蛋白相互作用。结果表明,与年龄相关的心房僵硬背后的机制并非如先前认为的那样是由于胶原蛋白含量增加,而是交联增加,可能由PLOD3促成。此外,一些显著的蛋白质以前未与心脏衰老相关联,因此是与年龄相关的心脏纤维化和其他与年龄相关病症的潜在药物靶点。