Géléoc Gwenaëlle S G, Risner Jessica R, Holt Jeffrey R
Department of Neuroscience, University of Virginia School of Medicine, Charlottesville, Virginia 22932, USA.
J Neurosci. 2004 Dec 8;24(49):11148-59. doi: 10.1523/JNEUROSCI.2662-04.2004.
How and when sensory hair cells acquire the remarkable ability to detect and transmit mechanical information carried by sound and head movements has not been illuminated. Previously, we defined the onset of mechanotransduction in embryonic hair cells of mouse vestibular organs to be at approximately embryonic day 16 (E16). Here we examine the functional maturation of hair cells in intact sensory epithelia excised from the inner ears of embryonic mice. Hair cells were studied at stages between E14 and postnatal day 2 using the whole-cell, tight-seal recording technique. We tracked the developmental acquisition of four voltage-dependent conductances. We found a delayed rectifier potassium conductance that appeared as early as E14 and grew in amplitude over the subsequent prenatal week. Interestingly, we also found a low-voltage-activated potassium conductance present at E18, approximately 1 week earlier than reported previously. An inward rectifier conductance appeared at approximately E15 and doubled in size over the next few days. We also noted transient expression of a voltage-gated sodium conductance that peaked between E16 and E18 and then declined to near zero at birth. We propose that hair cells undergo a stereotyped developmental pattern of ion channel acquisition and that the precise pattern may underlie other developmental processes such as synaptogenesis and functional differentiation into type I and type II hair cells. In addition, we find that the developmental acquisition of basolateral conductances shapes the hair cell receptor potential and therefore comprises an important step in the signal cascade from mechanotransduction to neurotransmission.
感觉毛细胞如何以及何时获得检测并传递由声音和头部运动携带的机械信息这一非凡能力,目前尚未阐明。此前,我们将小鼠前庭器官胚胎毛细胞中机械转导的起始时间确定为大约胚胎期第16天(E16)。在此,我们研究了从胚胎小鼠内耳切除的完整感觉上皮中毛细胞的功能成熟情况。使用全细胞、紧密封接记录技术,在E14至出生后第2天的各个阶段对毛细胞进行了研究。我们追踪了四种电压依赖性电导的发育获得过程。我们发现一种延迟整流钾电导早在E14时就已出现,并在随后的产前一周内幅度不断增大。有趣的是,我们还发现一种低电压激活钾电导在E18时存在,比之前报道的时间大约早1周。内向整流电导大约在E15时出现,并在接下来的几天内大小翻倍。我们还注意到一种电压门控钠电导的瞬时表达,其在E16至E18之间达到峰值,然后在出生时降至接近零。我们提出,毛细胞经历了一种刻板的离子通道获得发育模式,而这种精确模式可能是其他发育过程(如突触形成以及向I型和II型毛细胞的功能分化)的基础。此外,我们发现基底外侧电导的发育获得塑造了毛细胞受体电位,因此在从机械转导到神经传递的信号级联中构成了重要一步。