5'tiRNA-33-CysACA-1 promotes septic cardiomyopathy by targeting PGC-1α-mediated mitochondrial biogenesis.

IF 3.4 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY International Journal of Biochemistry & Cell Biology Pub Date : 2025-02-01 Epub Date: 2024-12-02 DOI:10.1016/j.biocel.2024.106714
Ludong Yuan, Jing Li, Leijing Yin, Xiaofang Lin, Dan Ni, Chuanhuan Deng, Pengfei Liang, Bimei Jiang
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Abstract

Background: We revealed for the first time that the expression of 158 tRNA-derived small RNAs (tsRNAs) was altered in septic cardiomyopathy (SCM) by microarray analysis, and we selected 5'tiRNA-33-CysACA-1, which was the most significantly up-regulated, as a representative to explore the roles and mechanisms of tsRNAs in SCM.

Methods: We constructed a sepsis model by cecum ligation and puncture (CLP) in mice and detected the expression of 5'tiRNA-33-CysACA-1 using quantitative real-time PCR (qRT-PCR). The supernatant generated after LPS stimulation of macrophages was used as the conditional medium (CM) to stimulate H9C2 and established the injured cell model. CCK-8 and LDH release assays were used to detect cell viability and cell death. Mitochondrial membrane potential (MMP), ATP production, ROS production, and Mitotracker Red mitochondrial morphology were assayed to assess mitochondrial function. Expression of mRNA for molecules related to the mitochondrial quality control system was verified by qRT-PCR. The mechanism by which 5'tiRNA-33-CysACA-1 regulates peroxisome proliferator-activated receptor gamma coactivator-1 alpha (PGC-1α) expression was examined by western blot, mRNA stability analysis, and rescue experiments.

Results: Expression of 5'tiRNA-33-CysACA-1 was elevated in cardiac tissue and H9C2 cells during septic myocardial injury. Stimulation of the CM resulted in cardiomyocyte injury and impaired mitochondrial function. Transfection of 5'tiRNA-33-CysACA-1 mimic in CM further downregulated PGC-1α expression, inhibited mitochondrial biogenesis thereby impairing mitochondrial function and leading to decreased cardiomyocyte activity and increased cell death. In contrast, transfection of the inhibitor ameliorated the above biological processes. In addition, mRNA stability assay and bioinformatics analysis showed that 5'tiRNA-33-CysACA-1 led to a decrease in the stability of PGC-1α mRNA, which in turn downregulated the expression of PGC-1α and promoted the development of SCM.

Conclusions: 5'tiRNA-33-CysACA-1 expression is upregulated in SCM and inhibits mitochondrial biogenesis by targeting PGC-1α and decreasing the stability of PGC-1α mRNA, leading to mitochondrial dysfunction and promoting the development of SCM.

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5'tiRNA-33-CysACA-1通过靶向pgc -1α介导的线粒体生物发生促进脓毒性心肌病。
背景:我们首次通过芯片分析发现感染性心肌病(SCM)中有158个trna来源的小rna (tsRNAs)表达改变,并选择上调最明显的5’tirna -33- cysaca -1作为代表,探讨tsRNAs在SCM中的作用和机制。方法:采用盲肠结扎穿刺法(CLP)建立小鼠脓毒症模型,采用实时荧光定量PCR (qRT-PCR)检测5’tirna -33- cysaca -1的表达。将LPS刺激巨噬细胞后产生的上清液作为条件培养基(CM)刺激H9C2,建立损伤细胞模型。CCK-8和LDH释放法检测细胞活力和细胞死亡。检测线粒体膜电位(MMP)、ATP生成、ROS生成和Mitotracker Red线粒体形态以评估线粒体功能。qRT-PCR验证了线粒体质量控制系统相关分子mRNA的表达。通过western blot、mRNA稳定性分析和救援实验检测5’tirna -33- cysaca -1调控过氧化物酶体增殖物激活受体γ -辅激活物-1α (PGC-1α)表达的机制。结果:5’tirna -33- cysaca -1在脓毒性心肌损伤心肌组织和H9C2细胞中表达升高。CM的刺激导致心肌细胞损伤和线粒体功能受损。在CM中转染5'tiRNA-33-CysACA-1 mimic进一步下调PGC-1α表达,抑制线粒体生物发生,从而损害线粒体功能,导致心肌细胞活性降低,细胞死亡增加。相比之下,转染抑制剂改善了上述生物过程。此外,mRNA稳定性分析和生物信息学分析表明,5'tiRNA-33-CysACA-1导致PGC-1α mRNA稳定性降低,从而下调PGC-1α的表达,促进SCM的发展。结论:5’tirna -33- cysaca -1在SCM中表达上调,通过靶向PGC-1α,降低PGC-1α mRNA的稳定性,抑制线粒体生物发生,导致线粒体功能障碍,促进SCM的发生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
8.10
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0.00%
发文量
124
审稿时长
19 days
期刊介绍: IJBCB publishes original research articles, invited reviews and in-focus articles in all areas of cell and molecular biology and biomedical research. Topics of interest include, but are not limited to: -Mechanistic studies of cells, cell organelles, sub-cellular molecular pathways and metabolism -Novel insights into disease pathogenesis -Nanotechnology with implication to biological and medical processes -Genomics and bioinformatics
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