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首页> 外文期刊>Cell death & disease. >Bone-derived mesenchymal stem cells alleviate compression-induced apoptosis of nucleus pulposus cells by N6 methyladenosine of autophagy
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Bone-derived mesenchymal stem cells alleviate compression-induced apoptosis of nucleus pulposus cells by N6 methyladenosine of autophagy

机译:骨衍生的间充质干细胞通过N6自噬通过N6甲基喹啉来缓解压缩诱导的细胞核髓鞘细胞凋亡

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N6 methyladenosine (m6A) is one of the most prevalent epitranscriptomic modifications of mRNAs, and plays a critical role in various bioprocesses. Bone-derived mesenchymal stem cells (BMSCs) can attenuate apoptosis of nucleus pulposus cells (NPCs) under compression; however, the underlying mechanisms are poorly understood. This study showed that the level of m6A mRNA modifications was decreased, and the autophagic flux was increased in NPCs under compression when they were cocultured with BMSCs. We report that under coculture conditions, RNA demethylase ALKBH5-mediated FIP200 mRNA demethylation enhanced autophagic flux and attenuated the apoptosis of NPCs under compression. Specific silencing of ALKBH5 results in impaired autophagic flux and a higher proportion of apoptotic NPCs under compression, even when cocultured with BMSCs. Mechanistically, we further identify that the m6A "reader" YTHDF2 is likely to be involved in the regulation of autophagy, and lower m6A levels in the coding region of FIP200 lead to a reduction in YTHDF2-mediated mRNA degradation of FIP200, a core molecular component of the ULK1 complex that participates in the initiating process of autophagy. Taken together, our study reveals the roles of ALKBH5-mediated FIP200 mRNA demethylation in enhancing autophagy and reducing apoptosis in NPCs when cocultured with BMSCs.
机译:N6甲基腺苷(M6A)是MRNA最普遍的闰组修饰之一,在各种生物过程中发挥着关键作用。骨衍生的间充质干细胞(BMSCs)可以在压缩下衰减核脉搏细胞(NPC)的凋亡;然而,潜在机制明白很差。该研究表明,当它们与BMSC共有链致时,在压缩时,均匀的M6A mRNA修饰水平降低,并且在压缩时,在压缩下增加了自噬助焊剂。我们报告说,在共培养条件下,RNA脱甲基酶ALKBH5介导的FIP200 mRNA去甲基化增强的自噬助焊剂并在压制下衰减NPC的凋亡。 CALLBH5的特异性沉默导致自噬磁通量受损和较高比例的凋亡NPC在压缩下,即使用BMSC与BMSC共同化。机械地,我们进一步鉴定M6A“读者”YTHDF2可能参与自噬的调节,并且FIP200的编码区域中的较低M6A水平导致YTHDF2介导的FIP200的MRNA劣化,核心分子组分ulk1复合体参与自噬的启动过程。在一起,我们的研究揭示了AlcBH5介导的FIP200 mRNA去甲基化在通过BMSC与BMSC共同化时提高NPC的自噬和降低凋亡的作用。

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