Department of Otolaryngology-Head and Neck Surgery, Virginia Merrill Bloedel Hearing Research Center, University of Washington, Seattle, Washington 98195-7923, USA.
J Neurosci. 2010 Jan 13;30(2):478-90. doi: 10.1523/JNEUROSCI.5154-09.2010.
Humans and other mammals are highly susceptible to permanent hearing and balance deficits due to an inability to regenerate sensory hair cells lost to inner ear trauma. In contrast, nonmammalian vertebrates, such as birds, robustly regenerate replacement hair cells and restore hearing and balance functions to near-normal levels. There is considerable interest in understanding the cellular mechanisms responsible for this difference in regenerative capacity. Here we report on involvement of the TGFbeta superfamily type II activin receptors, Acvr2a and Acvr2b, in regulating proliferation in mature avian auditory sensory epithelium. Cultured, posthatch avian auditory sensory epithelium treated with Acvr2a and Acvr2b inhibitors shows decreased proliferation of support cells, the cell type that gives rise to new hair cells. Conversely, addition of activin A, an Acvr2a/b ligand, potentiates support cell proliferation. Neither treatment (inhibitor or ligand) affected hair cell survival, suggesting a specific effect of Acvr2a/b signaling on support cell mitogenicity. Using immunocytochemistry, Acvr2a, Acvr2b, and downstream Smad effector proteins were differentially localized in avian and mammalian auditory sensory epithelia. Collectively, these data suggest that signaling through Acvr2a/b promotes support cell proliferation in mature avian auditory sensory epithelium and that this signaling pathway may be incomplete, or actively blocked, in the adult mammalian ear.
由于内耳创伤导致的感觉毛细胞无法再生,人类和其他哺乳动物极易出现永久性听力和平衡缺陷。相比之下,鸟类等非哺乳动物脊椎动物能够强有力地再生替代毛细胞,并将听力和平衡功能恢复到接近正常水平。人们非常有兴趣了解导致这种再生能力差异的细胞机制。在这里,我们报告了 TGFbeta 超家族 II 型激活素受体 Acvr2a 和 Acvr2b 参与调节成熟禽类听觉感觉上皮细胞的增殖。用 Acvr2a 和 Acvr2b 抑制剂处理培养的孵化后禽类听觉感觉上皮细胞显示支持细胞(产生新毛细胞的细胞类型)增殖减少。相反,添加 Acvr2a/b 配体激活素 A 会增强支持细胞的增殖。两种处理(抑制剂或配体)均不影响毛细胞的存活,这表明 Acvr2a/b 信号对支持细胞有丝分裂原性的特异性影响。通过免疫细胞化学,Acvr2a、Acvr2b 和下游 Smad 效应蛋白在禽类和哺乳动物听觉感觉上皮中呈现不同的定位。总之,这些数据表明,Acvr2a/b 信号通路通过促进成熟禽类听觉感觉上皮中的支持细胞增殖,并且该信号通路在成年哺乳动物耳朵中可能不完整或被积极阻断。