首页> 外文OA文献 >Actin filaments, stereocilia, and hair cells of the bird cochlea. I. Length, number, width, and distribution of stereocilia of each hair cell are related to the position of the hair cell on the cochlea
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Actin filaments, stereocilia, and hair cells of the bird cochlea. I. Length, number, width, and distribution of stereocilia of each hair cell are related to the position of the hair cell on the cochlea

机译:鸟耳蜗的肌动蛋白丝,立体纤毛和毛细胞。一,每个毛细胞的立体纤毛的长度,数量,宽度和分布与毛细胞在耳蜗上的位置有关

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摘要

Located on the sensory epithelium of the sickle-shaped cochlea of a 7- to 10-d-old chick are approximately 5,000 hair cells. When the apical surface of these cell is examined by scanning microscopy, we find that the length, number, width, and distribution of the stereocilia on each hair cell are predetermined. Thus, a hair cell located at the distal end of the cochlea has 50 stereocilia, the longest of which are 5.5 microns in length and 0.12 microns in width, while those at the proximal end number 300 and are maximally 1.5 microns in length and 0.2 micron in width. In fact, if we travel along the cochlea from its distal to proximal end, we see that the stereocilia on successive hair cells gradually increase in number and width, yet decrease in length. Also, if we look transversely across the cochlea where adjacent hair cells have the same length and number of stereocilia (they are the same distance from the distal end of the cochlea), we find that the stereocilia of successive hair cells become thinner and that the apical surface area of the hair cell proper, not including the stereocilia, decreases from a maximum of 80 microns2 to 15 microns2. Thus, if we are told the length of the longest stereocilium on a hair cell and the width of that stereocilium, we can pinpoint the position of that hair cell on the cochlea in two axes. Likewise, if we are told the number of stereocilia and the apical surface of a hair cell, we can pinpoint the location of that cell in two axes. The distribution of the stereocilia on the apical surface of the cell is also precisely determined. More specifically, the stereocilia are hexagonally packed and this hexagonal lattice is precisely positioned relative to the kinocilium. Because of the precision with which individual hair cells regulate the length, width, number, and distribution of their cell extensions, we have a magnificent object with which to ask questions about how actin filaments that are present within the cell are regulated. Equally interesting is that the gradient in stereociliary length, number, width, and distribution may play an important role in frequency discrimination in the cochlea. This conclusion is amplified by the information presented in the accompanying paper (Tilney, L.G., E.H. Egelman, D.J. DeRosier, and J.C. Saunders, 1983, J. Cell Biol., 96:822- 834) on the packing of actin filaments in this stereocilia.
机译:在7至10日龄小鸡的镰刀状耳蜗的感觉上皮中,大约有5,000个毛细胞。当通过扫描显微镜检查这些细胞的顶表面时,我们发现每个毛细胞上的纤毛的长度,数量,宽度和分布都是预先确定的。因此,位于耳蜗远端的毛细胞具有50个纤毛,其中最长的毛毛长度为5.5微米,宽度为0.12微米,而近端的毛细胞长度为300微米,最大长度为1.5微米,最大为0.2微米。在宽度上。实际上,如果我们沿着耳蜗从远端到近端旅行,我们会发现连续毛细胞上的立体纤毛的数量和宽度逐渐增加,而长度却逐渐减少。同样,如果我们横向观察整个相邻的毛细胞具有相同长度和数量的立体纤毛(距耳蜗远端的距离相同)的耳蜗,我们发现连续毛细胞的立体纤毛变薄,并且不包括立体纤毛的毛细胞固有的顶表面积从最大80微米2减少到15微米2。因此,如果告诉我们毛细胞上最长的立体纤毛的长度和该立体纤毛的宽度,我们可以在两个轴上查明那个毛细胞在耳蜗上的位置。同样,如果告诉我们毛细血管的数目和毛细胞的顶端表面,我们可以在两个轴上查明该细胞的位置。立体纤毛在细胞顶表面的分布也可以精确确定。更具体地,立体纤毛被六边形堆积,并且该六边形晶格相对于动囊精确定位。由于单个毛细胞可以精确地调节其细胞延伸的长度,宽度,数量和分布,因此我们提出了一个宏伟的目标,要问如何调节细胞内存在的肌动蛋白丝。同样有趣的是,立体声纤毛的长度,数量,宽度和分布的梯度可能在耳蜗的频率鉴别中起重要作用。随附论文(Tilney,LG,EH Egelman,DJ DeRosier,and JC Saunders,1983,J. Cell Biol。,96:822-834)中提供的有关该立体纤毛中肌动蛋白丝堆积的信息进一步放大了这一结论。 。

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