Tarchini Basile
The Jackson Laboratory, Bar Harbor, ME, United States.
Department of Medicine, Tufts University, Boston, MA, United States.
Front Neurosci. 2021 Sep 27;15:695914. doi: 10.3389/fnins.2021.695914. eCollection 2021.
Sensory hair cells detect mechanical stimuli with their hair bundle, an asymmetrical brush of actin-based membrane protrusions, or stereocilia. At the single cell level, stereocilia are organized in rows of graded heights that confer the hair bundle with intrinsic directional sensitivity. At the organ level, each hair cell is precisely oriented so that its intrinsic directional sensitivity matches the direction of mechanical stimuli reaching the sensory epithelium. Coordinated orientation among neighboring hair cells usually ensures the delivery of a coherent local group response. Accordingly, hair cell orientation is locally uniform in the auditory and vestibular cristae epithelia in birds and mammals. However, an exception to this rule is found in the vestibular macular organs, and in fish lateral line neuromasts, where two hair cell populations show opposing orientations. This mirror-image hair cell organization confers bidirectional sensitivity at the organ level. Here I review our current understanding of the molecular machinery that produces mirror-image organization through a regional reversal of hair cell orientation. Interestingly, recent evidence suggests that auditory hair cells adopt their normal uniform orientation through a global reversal mechanism similar to the one at work regionally in macular and neuromast organs. Macular and auditory organs thus appear to be patterned more similarly than previously appreciated during inner ear development.
感觉毛细胞通过其毛束来检测机械刺激,毛束是一种由肌动蛋白构成的不对称膜突起刷状结构,即静纤毛。在单细胞水平上,静纤毛按高度分级排列成行,赋予毛束内在的方向敏感性。在器官水平上,每个毛细胞都精确地定向,使其内在的方向敏感性与到达感觉上皮的机械刺激方向相匹配。相邻毛细胞之间的协调定向通常可确保传递连贯的局部群体反应。因此,在鸟类和哺乳动物的听觉和前庭嵴上皮中,毛细胞的定向在局部是均匀的。然而,在椭圆囊斑和球囊斑器官以及鱼类侧线神经丘中发现了这一规律的例外情况,其中两个毛细胞群体呈现相反的定向。这种镜像毛细胞组织在器官水平赋予了双向敏感性。在这里,我回顾了我们目前对通过毛细胞定向的区域反转产生镜像组织的分子机制的理解。有趣的是,最近的证据表明,听觉毛细胞通过一种类似于在椭圆囊斑和神经丘器官中局部起作用的全局反转机制来采用其正常的均匀定向。因此,在胚胎内耳发育过程中,椭圆囊斑和听觉器官的模式似乎比以前认为的更为相似。