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YTHDF1 通过促进 ATG14 翻译来激活自噬,从而保护听觉毛细胞免受顺铂诱导的损伤。

YTHDF1 Protects Auditory Hair Cells from Cisplatin-Induced Damage by Activating Autophagy via the Promotion of ATG14 Translation.

机构信息

Department of Otorhinolaryngology-Head and Neck Surgery, Xinhua Hospital, Shanghai Jiaotong University School of Medicine, Shanghai, China.

Shanghai Jiaotong University School of Medicine Ear Institute, Shanghai, China.

出版信息

Mol Neurobiol. 2022 Dec;59(12):7134-7151. doi: 10.1007/s12035-022-03021-z. Epub 2022 Sep 13.

Abstract

N6-methyladenosine (m6A) has been recognized as a common type of post-transcriptional epigenetic modification. m6A modification and YTHDF1, one of its reader proteins, have been documented to play a pivotal role in numerous human diseases via regulating mRNA splicing, translation, stability, and subcellular localization. The chemotherapeutic drug cisplatin (CDP) can damage sensory hair cells (HCs) and result in permanent sensorineural hearing loss. However, whether YTHDF1-mediated modification of mRNA is potentially involved in CDP-induced injury in sensory hair cells was not fully clarified. This study investigated the potential mechanisms for the modification of YTHDF1 in CDP-induced damage in HCs. Here, we discovered that YTHDF1's expression level statistically increased significantly after treating with CDP. Apoptosis and cell death of HCs induced by CDP were exacerbated after the knockdown of YTHDF1, while overexpression of YTHDF1 in HCs alleviated their injury induced by CDP. Moreover, YTHDF1 expression correlated with cisplatin-induced autophagy with statistical significance in HCs; namely, YTHDF1's overexpression enhanced the activation of autophagy, while its deficiency suppressed autophagy and, at the same time, increased the loss of HCs after CDP damage. WB analysis and qRT-PCR results of autophagy-related genes indicated that YTHDF1 promoted the translation of autophagy-related genes ATG14, thus boosting autophagy. Therefore, CDP-induced YTHDF1 expression protected HCs against CDP-induced apoptosis by upregulating the translation of autophagy-related genes ATG14, along with enhancing autophagy. Based on these findings, it can be inferred that YTHDF1 is potentially a target for ameliorating drug-induced HCs damage through m6A modification.

摘要

N6-甲基腺苷(m6A)已被认为是一种常见的转录后表观遗传修饰。m6A 修饰及其阅读器蛋白 YTHDF1 已被证明通过调节 mRNA 的剪接、翻译、稳定性和亚细胞定位,在许多人类疾病中发挥关键作用。化疗药物顺铂(CDP)可损伤感觉毛细胞(HCs),导致永久性感觉神经性听力损失。然而,YTHDF1 介导的 mRNA 修饰是否潜在参与了 CDP 诱导的感觉毛细胞损伤尚未完全阐明。本研究探讨了 YTHDF1 在 CDP 诱导的 HCs 损伤中的修饰的潜在机制。在这里,我们发现 YTHDF1 的表达水平在用 CDP 处理后显著增加。YTHDF1 敲低后,CDP 诱导的 HCs 凋亡和细胞死亡加剧,而 YTHDF1 在 HCs 中的过表达减轻了 CDP 诱导的损伤。此外,YTHDF1 的表达与 CDP 诱导的 HCs 中的自噬相关,具有统计学意义;即 YTHDF1 的过表达增强了自噬的激活,而其缺失抑制了自噬,同时增加了 CDP 损伤后 HCs 的丢失。WB 分析和自噬相关基因的 qRT-PCR 结果表明,YTHDF1 促进了自噬相关基因 ATG14 的翻译,从而促进了自噬。因此,CDP 诱导的 YTHDF1 表达通过上调自噬相关基因 ATG14 的翻译来保护 HCs 免受 CDP 诱导的细胞凋亡,同时增强自噬。基于这些发现,可以推断 YTHDF1 可能是通过 m6A 修饰改善药物诱导的 HCs 损伤的靶点。

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