Institute of Audiology and Balance Science, Xuzhou Medical University, Xuzhou, P.R. China.
The Artificial Auditory Laboratory of Jiangsu Province, Xuzhou Medical University, Xuzhou, P.R. China.
Antioxid Redox Signal. 2023 Jan;38(1-3):115-136. doi: 10.1089/ars.2021.0283. Epub 2022 Oct 20.
Noise damage to auditory hair cells is associated with oxidative stress and mitochondrial dysfunction. This study aimed to investigate the possible effect of sestrin 2 (SESN2), an endogenous antioxidant protein, on noise-induced hearing loss (NIHL) and the underlying mechanisms. We identified SESN2 as a protective factor against oxidative stress in NIHL through activation of Parkin-mediated mitophagy. Consistently, SESN2 expression was increased and mitophagy was induced during the early stage after a temporary threshold shift due to noise exposure or hydrogen peroxide(HO) stimulation; conversely, SESN2 deficiency blocked mitophagy and exacerbated acoustic trauma. Mechanistically, SESN2 interacted with Unc-51-like protein kinase 1(ULK1), promoting ULK1 protein-level stabilization by interfering with its proteasomal degradation. This stabilization is essential for mitophagy initiation, since restoring ULK1 expression in SESN2-silenced cells rescued mitophagy defects. Our results provide novel insights regarding SESN2 as a therapeutic target against noise-induced cochlear injury, possibly through improved mitophagy. . 38, 115-136.
噪声对听觉毛细胞的损伤与氧化应激和线粒体功能障碍有关。本研究旨在探讨内源性抗氧化蛋白 sestrin 2 (SESN2) 对噪声性听力损失 (NIHL) 的可能影响及其潜在机制。 我们通过 Parkin 介导的自噬发现 SESN2 是对抗 NIHL 中氧化应激的保护因素。一致地,SESN2 的表达在噪声暴露或过氧化氢 (HO) 刺激引起的暂时阈移后早期增加,并诱导自噬;相反,SESN2 缺乏会阻断自噬并加重声创伤。在机制上,SESN2 与 Unc-51 样蛋白激酶 1(ULK1) 相互作用,通过干扰其蛋白酶体降解来促进 ULK1 蛋白水平的稳定。这种稳定对于自噬的启动至关重要,因为在 SESN2 沉默的细胞中恢复 ULK1 的表达可以挽救自噬缺陷。 我们的研究结果为 SESN2 作为一种对抗噪声性耳蜗损伤的治疗靶点提供了新的见解,可能是通过改善自噬。. 38, 115-136.