Piekna-Przybylska Dorota, Na Daxiang, Zhang Jingyuan, Baker Cameron, Ashton John M, White Patricia M
Department of Neuroscience, University of Rochester School of Medicine and Dentistry, Rochester, NY, United States.
Department of Biology, University of Rochester, Rochester, NY, United States.
Front Cell Neurosci. 2023 Jan 6;16:1096872. doi: 10.3389/fncel.2022.1096872. eCollection 2022.
Hearing loss caused by the death of cochlear hair cells (HCs) might be restored through regeneration from supporting cells (SCs) dedifferentiation and proliferation, as observed in birds. In a previous report, ERBB2 activation in a subset of cochlear SCs promoted widespread down-regulation of SOX2 in neighboring cells, proliferation, and the differentiation of HC-like cells. Here we analyze single cell transcriptomes from neonatal mouse cochlear SCs with activated ERBB2, with the goal of identifying potential secreted effectors. ERBB2 induction generated a new population of cells with expression of a gene network. Called small integrin-binding ligand n-linked glycoproteins (SIBLINGs), these ligands and their regulators can alter NOTCH signaling and promote cell survival, proliferation, and differentiation in other systems. We validated mRNA expression of network members, and then extended our analysis to older stages. ERBB2 signaling in young adult SCs also promoted protein expression of gene network members. Furthermore, we found proliferating cochlear cell aggregates in the organ of Corti. Our results suggest that ectopic activation of ERBB2 signaling in cochlear SCs can alter the microenvironment, promoting proliferation and cell rearrangements. Together these results suggest a novel mechanism for inducing stem cell-like activity in the adult mammalian cochlea.
如在鸟类中观察到的那样,由耳蜗毛细胞(HCs)死亡引起的听力损失可能通过支持细胞(SCs)去分化和增殖实现再生而得以恢复。在之前的一份报告中,耳蜗SCs的一个亚群中的ERBB2激活促进了相邻细胞中SOX2的广泛下调、增殖以及类HC细胞的分化。在此,我们分析了具有激活的ERBB2的新生小鼠耳蜗SCs的单细胞转录组,目的是识别潜在的分泌效应物。ERBB2诱导产生了一群表达基因网络的新细胞。这些配体被称为小整合素结合配体N-连接糖蛋白(SIBLINGs),它们及其调节因子可以改变NOTCH信号,并在其他系统中促进细胞存活、增殖和分化。我们验证了网络成员的mRNA表达,然后将分析扩展到更老的阶段。年轻成年SCs中的ERBB2信号传导也促进了基因网络成员的蛋白质表达。此外,我们在柯蒂氏器中发现了增殖的耳蜗细胞聚集体。我们的结果表明,耳蜗SCs中ERBB2信号的异位激活可以改变微环境,促进增殖和细胞重排。这些结果共同提示了一种在成年哺乳动物耳蜗中诱导干细胞样活性的新机制。