首页> 外文期刊>Frontiers in Molecular Neuroscience >Inhibition of H3K9me2 Reduces Hair Cell Regeneration after Hair Cell Loss in the Zebrafish Lateral Line by Down-Regulating the Wnt and Fgf Signaling Pathways
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Inhibition of H3K9me2 Reduces Hair Cell Regeneration after Hair Cell Loss in the Zebrafish Lateral Line by Down-Regulating the Wnt and Fgf Signaling Pathways

机译:H3K9me2的抑制作用通过下调Wnt和Fgf信号通路减少斑马鱼侧线毛细胞丢失后的毛细胞再生。

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The activation of neuromast (NM) supporting cell (SC) proliferation leads to hair cell (HC) regeneration in the zebrafish lateral line. Epigenetic mechanisms have been reported that regulate HC regeneration in the zebrafish lateral line, but the role of H3K9me2 in HC regeneration after HC loss remains poorly understood. In this study, we focused on the role of H3K9me2 in HC regeneration following neomycin-induced HC loss. To investigate the effects of H3K9me2 in HC regeneration, we took advantage of the G9a/GLP-specific inhibitor BIX01294 that significantly reduces the dimethylation of H3K9. We found that BIX01294 significantly reduced HC regeneration after neomycin-induced HC loss in the zebrafish lateral line. BIX01294 also significantly reduced the proliferation of NM cells and led to fewer SCs in the lateral line. In situ hybridization showed that BIX01294 significantly down-regulated the Wnt and Fgf signaling pathways, which resulted in reduced SC proliferation and HC regeneration in the NMs of the lateral line. Altogether, our results suggest that down-regulation of H3K9me2 significantly decreases HC regeneration after neomycin-induced HC loss through inactivation of the Wnt/β-catenin and Fgf signaling pathways. Thus H3K9me2 plays a critical role in HC regeneration.
机译:神经肥大(NM)支持细胞(SC)增殖的激活导致斑马鱼侧线中的毛细胞(HC)再生。据报道,表观遗传机制调节斑马鱼侧线中的HC再生,但对H3K9me2在HC丢失后在HC再生中的作用仍知之甚少。在这项研究中,我们专注于H3K9me2在新霉素诱导的HC丢失后在HC再生中的作用。为了研究H3K9me2在HC再生中的作用,我们利用了G9a / GLP特异性抑制剂BIX01294来显着减少H3K9的二甲基化。我们发现BIX01294在斑马鱼侧线中新霉素诱导的HC丢失后显着降低了HC再生。 BIX01294还显着减少了NM细胞的增殖,并导致侧线的SC减少。原位杂交表明,BIX01294显着下调了Wnt和Fgf信号通路,从而导致侧线NM中SC增殖和HC再生减少。总之,我们的结果表明,H3K9me2的下调通过Wnt /β-catenin和Fgf信号通路的失活,显着降低了新霉素诱导的HC丢失后的HC再生。因此,H3K9me2在HC再生中起关键作用。

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