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长非编码 RNA RMRP 通过与 PFN1 相互作用,在 P53 依赖性方式下减轻阿霉素诱导的细胞凋亡。

Long noncoding RNA RMRP ameliorates doxorubicin-induced apoptosis by interacting with PFN1 in a P53-Dependent manner.

机构信息

Department of Cardiology, Jinshan Hospital of Fudan University, Shanghai, 201508, China; Department of Internal Medicine, Shanghai Medical College, Fudan University, Shanghai, 200032, China.

Department of Psychiatry, The First Affiliated Hospital of Chongqing Medical University, Chongqing, China.

出版信息

Mol Cell Probes. 2023 Dec;72:101937. doi: 10.1016/j.mcp.2023.101937. Epub 2023 Oct 13.

Abstract

Doxorubicin (DOX) often causes acute or chronic cardiotoxicity during its application. LncRNA RMRP has been reported to be associated with several biological processes, such as cartilage-hair hypoplasia, but the relationship between RMRP and DOX-induced cardiotoxicity and chronic heart failure remains obscure. To test this hypothesis, GSE124401 and GSE149870 were processed for bioinformatics, and differentially expressed RMRP was then verified in the peripheral blood of 21 patients with heart failure compared with 7 controls. For in vitro validation, we used AC16 and HEK-293T cells. qPCR was used to detect the mRNA expression levels. The degree of apoptosis was detected by Western blot and TUNEL staining. Furthermore, the interaction between RMRP and PFN1 mRNA was verified by dual-luciferase reporter assays. In bioinformatics, RMRP showed significant downregulation, which was verified in clinical samples (p < 0.001) and DOX-treated AC16 models (p < 0.0001). Next, overexpression of RMRP could significantly alleviate DOX-induced apoptosis, and a potential downstream molecule of RMRP, PFN1, was also negatively associated with this change. RESCUE experiments further confirmed that PFN1 could be regulated by RMRP at both the RNA and protein levels, serving as a downstream mediator of RMRP's cardioprotective effects. This interaction was then confirmed to be a direct combination (p < 0.0001). Finally, we found that overexpression of RMRP could inhibit the expression of p53 and its phosphorylation level by suppressing PFN1. In summary, RMRP could exert cardioprotective effects via the PFN1/p53 axis, holding great promise for serving as a therapeutic target and potential biomarker.

摘要

阿霉素(DOX)在应用过程中常引起急性或慢性心脏毒性。LncRNA RMRP 已被报道与多种生物学过程有关,如软骨毛发发育不全,但 RMRP 与 DOX 诱导的心脏毒性和慢性心力衰竭之间的关系仍不清楚。为了验证这一假设,对 GSE124401 和 GSE149870 进行了生物信息学处理,然后在 21 例心力衰竭患者和 7 例对照的外周血中验证了差异表达的 RMRP。为了进行体外验证,我们使用了 AC16 和 HEK-293T 细胞。qPCR 用于检测 mRNA 表达水平。Western blot 和 TUNEL 染色检测细胞凋亡程度。此外,通过双荧光素酶报告基因实验验证了 RMRP 与 PFN1 mRNA 之间的相互作用。在生物信息学中,RMRP 表现出明显的下调,在临床样本中得到验证(p<0.001)和 DOX 处理的 AC16 模型中得到验证(p<0.0001)。接下来,RMRP 的过表达可显著减轻 DOX 诱导的细胞凋亡,而 RMRP 的一个潜在下游分子 PFN1 也与这种变化呈负相关。RESCUE 实验进一步证实,PFN1 可被 RMRP 在 RNA 和蛋白水平上调节,作为 RMRP 心脏保护作用的下游介质。这种相互作用被证实是一种直接结合(p<0.0001)。最后,我们发现 RMRP 的过表达可以通过抑制 PFN1 来抑制 p53 的表达及其磷酸化水平。总之,RMRP 可以通过 PFN1/p53 轴发挥心脏保护作用,作为治疗靶点和潜在的生物标志物具有很大的潜力。

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