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小鼠的听觉转导

Auditory transduction in the mouse.

作者信息

Grant Lisa, Fuchs Paul A

机构信息

Otolaryngology, Head and Neck Surgery, The Center for Sensory Biology, Johns Hopkins University School of Medicine, Baltimore, MD, USA.

出版信息

Pflugers Arch. 2007 Aug;454(5):793-804. doi: 10.1007/s00424-007-0253-z. Epub 2007 May 30.

Abstract

The sensory hair cells of the mammalian cochlea transduce acoustic stimuli into auditory nerve activity. The biomechanical and molecular details of hair cell mechanotransduction are being acquired at an ever-finer level of resolution. In this review, we discuss how selected mouse mutants and transgenic models have contributed to, and will continue to shape, our understanding of the molecular basis of hair cell mechanotransduction. Functional and structural discoveries made originally in hair cells of nonmammalian vertebrates have been further pursued in the mouse inner ear, where transgenic manipulation can be applied to test molecular mechanisms. Additional insights have been obtained from mice bearing mutations in genes underlying deafness in humans. Taken together, these studies emphasize the elegance of mechanotransduction, enlarge the team of molecular players, and begin to reveal the remarkable adaptations that provide the sensitivity and temporal resolution required for mammalian hearing.

摘要

哺乳动物耳蜗的感觉毛细胞将声刺激转化为听神经活动。毛细胞机械转导的生物力学和分子细节正以越来越精细的分辨率被揭示。在这篇综述中,我们讨论了选定的小鼠突变体和转基因模型如何促进并将继续塑造我们对毛细胞机械转导分子基础的理解。最初在非哺乳动物脊椎动物毛细胞中取得的功能和结构发现,在小鼠内耳中得到了进一步研究,在那里可以应用转基因操作来测试分子机制。从人类耳聋相关基因突变的小鼠中也获得了更多见解。这些研究共同强调了机械转导的精妙之处,扩充了分子作用因子的队伍,并开始揭示为哺乳动物听力提供所需灵敏度和时间分辨率的显著适应性变化。

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