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一种基于靶向分析必需基因来鉴定miR-145-5p对足细胞毒性机制的新方法。

A novel approach to identify the mechanism of miR-145-5p toxicity to podocytes based on the essential genes targeting analysis.

作者信息

Zhang Sipan, Wu Junnan, Zhu Xiaodong, Song Hui, Ren Lu, Tang Qiaoli, Xu Xiaodong, Liu Chunbei, Zhang Jiong, Hu Weixin, Liu Zhihong, Shi Shaolin

机构信息

National Clinical Research Center of Kidney Diseases, Jinling Hospital, Nanjing University School of Medicine, Nanjing, Jiangsu 21002, China.

出版信息

Mol Ther Nucleic Acids. 2021 Sep 20;26:749-759. doi: 10.1016/j.omtn.2021.09.005. eCollection 2021 Dec 3.

Abstract

MicroRNAs (miRNAs) are emerging as effective therapeutic agents. When testing whether miR-145-5p could alleviate kidney injury, we unexpectedly found that extracellular vesicles loaded with miR-145-5p induced proteinuria and podocyte foot process effacement in normal control mice. To explore the mechanism of miR-145-5p's toxicity to podocytes, we hypothesized that miR-145-5p could enter podocytes and inhibit genes essential for podocytes. We demonstrated that systemically administered miRNA can enter podocytes. Next, we predicted 611 podocyte essential genes based on single-cell RNA sequencing (RNA-seq) and found that 32 of them are predicted to be targeted by miR-145-5p. Functional annotation of the 32 podocyte essential genes revealed small GTPase-mediated signal transduction as the top pathway. We experimentally validated that miR-145-5p targeted Arhgap24 and Srgap1, the essential regulators of the Rho family of small GTPases, increased the activity of Rac1 and Cdc42, and reduced RhoA activity, accompanied by cellular injury, in podocytes. These results explain how miR-145-5p has deleterious effect on podocytes. Most importantly, our study provides a novel approach to investigate how a miRNA affects a given cell type, allowing not only identification of the molecular mechanism underlying an observed side effect of a miRNA drug but also prediction of miRNA drug toxicity on various cell types.

摘要

微小RNA(miRNA)正逐渐成为有效的治疗剂。在测试miR-145-5p是否能减轻肾损伤时,我们意外地发现,装载有miR-145-5p的细胞外囊泡在正常对照小鼠中诱导了蛋白尿和足细胞足突消失。为了探究miR-145-5p对足细胞毒性作用的机制,我们推测miR-145-5p可以进入足细胞并抑制足细胞必需的基因。我们证明了全身给药的miRNA可以进入足细胞。接下来,我们基于单细胞RNA测序(RNA-seq)预测了611个足细胞必需基因,发现其中32个基因预计会被miR-145-5p靶向。对这32个足细胞必需基因的功能注释显示,小GTP酶介导的信号转导是最主要的信号通路。我们通过实验验证了miR-145-5p靶向小GTP酶Rho家族的必需调节因子Arhgap24和Srgap1,增加了Rac1和Cdc42的活性,并降低了RhoA的活性,同时在足细胞中伴有细胞损伤。这些结果解释了miR-145-5p如何对足细胞产生有害影响。最重要的是,我们的研究提供了一种新方法来研究miRNA如何影响特定细胞类型,不仅能够确定miRNA药物观察到的副作用背后的分子机制,还能预测miRNA药物对各种细胞类型的毒性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f351/8526908/5dd2c12f49a9/fx1.jpg

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