Unité de Génétique et Physiologie de l'Audition, Institut Pasteur, 75015 Paris, France; email:
Institut National de la Santé et de la Recherche Médicale, UMRS 1120, 75015 Paris, France.
Annu Rev Neurosci. 2019 Jul 8;42:67-86. doi: 10.1146/annurev-neuro-070918-050428. Epub 2019 Jan 30.
The genetic approach, based on the study of inherited forms of deafness, has proven to be particularly effective for deciphering the molecular mechanisms underlying the development of the peripheral auditory system, the cochlea and its afferent auditory neurons, and how this system extracts the physical parameters of sound. Although this genetic dissection has provided little information about the central auditory system, scattered data suggest that some genes may have a critical role in both the peripheral and central auditory systems. Here, we review the genes controlling the development and function of the peripheral and central auditory systems, focusing on those with demonstrated intrinsic roles in both systems and highlighting the current underappreciation of these genes. Their encoded products are diverse, from transcription factors to ion channels, as are their roles in the central auditory system, mostly evaluated in brainstem nuclei. We examine the ontogenetic and evolutionary mechanisms that may underlie their expression at different sites.
基于遗传性耳聋研究的遗传方法已被证明对于解析外围听觉系统、耳蜗及其传入听觉神经元的发育以及该系统如何提取声音的物理参数的分子机制特别有效。尽管这种遗传剖析几乎没有提供有关中枢听觉系统的信息,但分散的数据表明,一些基因可能在外围和中枢听觉系统中都具有关键作用。在这里,我们回顾了控制外围和中枢听觉系统发育和功能的基因,重点介绍了那些在两个系统中都具有内在作用的基因,并强调了目前对这些基因的认识不足。它们编码的产物从转录因子到离子通道各不相同,其在中枢听觉系统中的作用也多种多样,主要在脑干核中进行评估。我们研究了可能导致它们在不同部位表达的个体发生和进化机制。