NFAT3-FasL axis synchronously regulates apoptosis and necroptosis in murine cochlear outer hair cells after noise trauma

Wenlun Wang, Lisheng Yu, Shichang Li, Lin Han, Hongwei Zheng
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Abstract

Existing studies have indicated that noise induces apoptosis and necroptosis in cochlear outer hair cells (OHCs). However, the role of the extrinsic cell death pathway, initiated by death ligands in the cochlea, remains unknown. In this study, we hypothesized that noise could induce the NFAT3/FasL axis-mediated extrinsic death pathway in the cochlea. We found that NFAT3/FasL signaling was silent in normal OHCs. Noise exposure induced apoptosis and necroptosis in OHCs with specifically high FasL expression. Multiplex immunofluorescence staining revealed that NFAT3 nuclear translocation and FasL upregulation were colocalized in the apoptotic and necroptotic OHCs following noise trauma. Administration of FK506 or 11R-vivit (an specific NFAT inhibitor) blocked NFAT3 nuclear translocation, inhibited FasL expression, mitigated apoptosis and necroptosis, and protected against noise-induced hearing loss (NIHL). Finally, FasL knockdown by delivering siRNA intratympanically attenuated apoptosis and necroptosis in OHCs and alleviated NIHL, confirming the role of FasL in OHC death. Collectively, our study demonstrates that the NFAT3/FasL axis mediates noise-induced extrinsic death pathway in OHCs, leading to their apoptosis and necroptosis.
NFAT3-FasL轴同步调节噪声创伤后小鼠耳蜗外毛细胞的凋亡和坏死
现有研究表明,噪声会诱导耳蜗外毛细胞(OHC)的凋亡和坏死。然而,耳蜗中由死亡配体启动的细胞外死亡途径的作用仍然未知。在本研究中,我们假设噪声可诱导耳蜗中由 NFAT3/FasL 轴介导的细胞外死亡途径。我们发现,NFAT3/FasL 信号在正常耳蜗细胞中是沉默的。噪声暴露可诱导FasL特异性高表达的耳蜗细胞发生凋亡和坏死。多重免疫荧光染色显示,NFAT3核转位和FasL上调在噪声创伤后凋亡和坏死的OHC中共定位。给予 FK506 或 11R-vivit(一种特异性 NFAT 抑制剂)可阻断 NFAT3 核转位,抑制 FasL 的表达,减轻细胞凋亡和坏死,并防止噪声诱导的听力损失(NIHL)。最后,通过耳内注射 siRNA 敲除 FasL 可减轻 OHC 的凋亡和坏死,减轻 NIHL,从而证实了 FasL 在 OHC 死亡中的作用。总之,我们的研究表明,NFAT3/FasL轴介导了噪声诱导的OHC外源性死亡途径,导致其凋亡和坏死。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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