基于全基因组可变剪接谱解析电针抗心肌缺血再灌注损伤的新机制OA
Genome-wide analysis of electroacupuncture in restoring splicing regulation after myocardial ischemia-reperfusion injury
[背景]前体mRNA选择性剪接(AS)是一种重要的转录后调控机制.基因的异常剪接可导致心血管疾病.针灸已被证明可缓解心肌缺血再灌注损伤(MIRI),但大多数研究集中于针灸对基因表达的调控.我们先前报道过电针(EA)可通过调控GABARG2基因的AS来缓解心绞痛,但EA在全基因组范围内对AS的调控作用尚不清楚.[方法]研究探讨了EA对MIRI的保护作用.随后,研究了从基因表达综合数据库(GEO)获取的AS谱,并使用重复多元转录本剪接分析(rMATS)工具对数据进行分析.接着,对通过生物信息学分析鉴定出的、受EA调控的剪接调控因子及其靶基因进行了验证实验.[结果]研究显示,在内关穴(PC6)施加EA能有效缓解MIRI.MIRI发生后,有200多个差异性可变剪接事件(ASEs)发生了改变.对这些差异性ASEs进行蛋白质-蛋白质相互作用(PPI)网络分析、基因本体论(GO)富集和通路分析,表明它们参与了不同的生物学功能,尤其是在突触结构的维持方面.富集分析还鉴定了几个可能与MIRI进展相关的通路.重要的是,发现了可被EA治疗完全挽救的关键ASEs和通路.在验证实验中发现,与突触功能相关的关键基因CAMK2G的AS,受到EA调控的MBNL1蛋白表达水平的调节.[结论]研究表明,EA不仅通过挽救基因表达来有效保护机体免受MIRI的伤害,还能挽救异常的ASEs.本研究是对EA在MIRI中调控AS的全基因组综合性分析的一项重要贡献.
Objective:Pre-mRNA alternative splicing(AS)is an important post-transcriptional regulation mechanism.The abnormal splicing of genes can lead to cardiovascular diseases.Acupuncture has been shown to alleviate myocardial ischemia-reperfusion injury(MIRI),but most studies have focused on the regulation of gene expression by acupuncture.Previously,we reported that electroacupuncture(EA)can relieve angina by regulating the AS of GABARG2;however,the genome-wide regulation of AS by EA remains unknown. Methods:We explored the protective effects of EA on MIRI.We then studied the AS profiles retrieved from the previously submitted to Gene Expression Omnibus(GEO)database and analyzed the data using the replicate multivariate analysis of transcript splicing(rMATS)tool.Subsequently,we conducted validation experiments on splicing regulatory factors and their target genes modulated by EA,as identified through bioinformatics analysis. Results:The results showed that EA at PC6 point could effectively alleviate MIRI.More than 200 differential alternative splicing events(ASEs)changed following MIRI.The differential ASEs underwent protein-protein interaction(PPI)network analysis,gene ontology(GO)enrichment,and pathway analysis,and were shown to be involved in distinct biological functions,especially in the maintenance of synaptic structure.Enrichment analysis also identified several pathways that are potentially associated with the progression of MIRI.Importantly,we identified critical ASEs and pathways that could be completely rescued by EA treatment.In the validation experiments,we found that AS of the key gene CAMK2G,associated with synaptic function,is regulated by the expression level of the MBNL1 protein modulated by EA. Conclusions:Our results indicate that EA is not only an effective procedure to protect against MIRI by rescuing gene expression but also rescues abnormal ASEs.This study is a major contribution to a genome-wide comprehensive analysis of the regulation of AS by EA in MIRI.
齐文川;熊坚;孙睿睿;梁繁荣;王益达;Vadphimai Sitthichock;王潇;闫紫璇;李静雯;李成华;胡金群;刘渝
成都中医药大学针灸推拿学院 成都||针灸防治老年病教育部重点实验室成都中医药大学 成都成都中医药大学针灸推拿学院 成都成都中医药大学针灸推拿学院 成都||针灸防治老年病教育部重点实验室成都中医药大学 成都成都中医药大学针灸推拿学院 成都||针灸防治老年病教育部重点实验室成都中医药大学 成都四川大学生命科学学院,生物资源与生态环境教育部重点实验室 成都泰国清莱皇太后大学整合医学院,泰国成都中医药大学针灸推拿学院 成都||针灸防治老年病教育部重点实验室成都中医药大学 成都成都中医药大学针灸推拿学院 成都成都中医药大学针灸推拿学院 成都成都中医药大学针灸推拿学院 成都成都中医药大学针灸推拿学院 成都成都中医药大学针灸推拿学院 成都
心肌缺血再灌注损伤(MIRI)选择性剪接可变剪接事件(ASEs)电针rMATS
Alternative splicingAlternative splicing eventsElectroacupunctureMIRIrMATS
《针灸和草药(英文)》 2026 (1)
91-104,14
This work was funded by the Natural Science Foundation of Sichuan Province(No.2026NSFSC0636)the National Natural Science Foundation of China(No.82205286)the Regional Cooperation Program of the National Natural Science Foundation of China(No.U21A20404)and the Program of China Scholarship Council(No.202508510146).
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