CD44细胞
下调和上调
信号转导
小桶
蛋白质组学
细胞生物学
计算生物学
通路分析
糖蛋白
化学
生物
生物途径
细胞信号
生物信息学
癌症研究
医学
细胞
受体
作者
Yanxin Ren,Haibin Dong,Qiqing Huang,Bowen Xu,Kaixuan Fu,Jikai Song,Lei Gong,Yiming Wang,Xiaoning Ding,Lin Zhong,Jie Yang,Wenjuan Jia
摘要
Myocardial ischemia-reperfusion injury (MIRI) is one of the leading causes of morbidity and mortality from cardiovascular diseases worldwide. Protein N-glycosylation plays an important role in MIRI. However, there is limited knowledge regarding N-glycoproteins in MIRI and their alterations during MIRI. This study aims to investigate the dynamic changes of N-glycosylation modification in MIRI and the regulatory mechanisms of key proteins in MIRI to provide new therapeutic targets for the clinical diagnosis and treatment of MIRI. This study systematically explored the dynamic changes of N-glycosylation modification in MIRI through an integrated glycoproteomic analysis, combining a clinical sample, animal models, and cell models. Differential glycoproteins were identified using quantitative N-glycoproteomic mass spectrometry. Key regulatory molecules were screened through GO functional annotation and KEGG pathway enrichment. The integrated analysis identified 698 N-glycosylated proteins. Pathway enrichment analysis showed that the differentially expressed proteins were mainly involved in the PI3K/AKT/mTOR signaling pathway. The study of differentially expressed N-glycoproteins revealed that CD44 was upregulated and could regulate AKT. One possible reason is that N-glycosylation of CD44 affects its stability.
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