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胰岛素样生长因子-1通过AKT和mTOR信号通路控制HEI-OC1听觉细胞的代谢稳态和存活。

IGF-1 Controls Metabolic Homeostasis and Survival in HEI-OC1 Auditory Cells through AKT and mTOR Signaling.

作者信息

García-Mato Ángela, Cervantes Blanca, Rodríguez-de la Rosa Lourdes, Varela-Nieto Isabel

机构信息

Neuropathology of Hearing and Myelinopathies Group, Institute for Biomedical Research "Alberto Sols", Spanish National Research Council-Autonomous University of Madrid (CSIC-UAM), 28029 Madrid, Spain.

Consorcio Centro de Investigación Biomédica en Red (CIBERER), Institute of Health Carlos III (ISCIII), 28029 Madrid, Spain.

出版信息

Antioxidants (Basel). 2023 Jan 19;12(2):233. doi: 10.3390/antiox12020233.

Abstract

Insulin-like growth factor 1 (IGF-1) is a trophic factor for the nervous system where it exerts pleiotropic effects, including the regulation of metabolic homeostasis. IGF-1 deficiency induces morphological alterations in the cochlea, apoptosis and hearing loss. While multiple studies have addressed the role of IGF-1 in hearing protection, its potential function in the modulation of otic metabolism remains unclear. Here, we report that "House Ear Institute-organ of Corti 1" (HEI-OC1) auditory cells express IGF-system genes that are regulated during their differentiation. Upon binding to its high-affinity receptor IGF1R, IGF-1 activates AKT and mTOR signaling to stimulate anabolism and, concomitantly, to reduce autophagic catabolism in HEI-OC1 progenitor cells. Notably, IGF-1 stimulation during HEI-OC1 differentiation to mature otic cells sustained both constructive metabolism and autophagic flux, possibly to favor cell remodeling. IGF1R engagement and downstream AKT signaling promoted HEI-OC1 cell survival by maintaining redox balance, even when cells were challenged with the ototoxic agent cisplatin. Our findings establish that IGF-1 not only serves an important function in otic metabolic homeostasis but also activates antioxidant defense mechanisms to promote hair cell survival during the stress response to insults.

摘要

胰岛素样生长因子1(IGF-1)是一种对神经系统具有营养作用的因子,在神经系统中发挥多效性作用,包括调节代谢稳态。IGF-1缺乏会导致耳蜗形态改变、细胞凋亡和听力丧失。虽然多项研究探讨了IGF-1在听力保护中的作用,但其在调节耳部代谢中的潜在功能仍不清楚。在此,我们报告“豪斯耳科研究所-柯蒂氏器1”(HEI-OC1)听觉细胞表达IGF系统基因,这些基因在其分化过程中受到调控。IGF-1与其高亲和力受体IGF1R结合后,激活AKT和mTOR信号通路,以刺激合成代谢,并同时减少HEI-OC1祖细胞中的自噬分解代谢。值得注意的是,在HEI-OC1向成熟耳细胞分化过程中,IGF-1刺激维持了建设性代谢和自噬通量,这可能有利于细胞重塑。即使细胞受到耳毒性药物顺铂的挑战,IGF1R的结合和下游AKT信号通路通过维持氧化还原平衡促进了HEI-OC1细胞的存活。我们的研究结果表明,IGF-1不仅在耳部代谢稳态中发挥重要作用,而且在对应激性损伤的应激反应中激活抗氧化防御机制,以促进毛细胞存活。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b7f/9952701/a52ede533246/antioxidants-12-00233-g001.jpg

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