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青蛙两栖乳头毛细胞中的缓慢运动:钙离子依赖性形状变化。

Slow motility in hair cells of the frog amphibian papilla: Ca2+-dependent shape changes.

作者信息

Farahbakhsh Nasser A, Narins Peter M

机构信息

Department of Physiological Science, 621 Charles E. Young Drive S. University of California, Los Angeles, CA 90095-1606, USA.

出版信息

Hear Res. 2006 Feb;212(1-2):140-59. doi: 10.1016/j.heares.2005.11.004. Epub 2006 Jan 19.

Abstract

We investigated the process of slow motility in non-mammalian auditory hair cells by recording the time course of shape change in hair cells of the frog amphibian papilla. The tall hair cells in the rostral segment of this organ, reported to be the sole recipients of efferent innervation, were found to shorten in response to an increase in the concentration of the intracellular free calcium. These shortenings are composed of two partially-overlapping phases: an initial rapid iso-volumetric contraction, followed by a slower length decrease accompanied with swelling. It is possible to unmask the iso-volumetric contraction by delaying the cell swelling with the help of K+ or Cl- channel inhibitors, quinine or furosemide. Furthermore, it appears that the longitudinal contraction in these cells is Ca2+-calmodulin-dependent: in the presence of W-7, a calmodulin inhibitor, only a slow, swelling phase could be observed. These findings suggest that amphibian rostral AP hair cells resemble their mammalian counterparts in expressing both a Ca2+-calmodulin-dependent contractile structure and an "osmotic" mechanism capable of mediating length change in response to extracellular stimuli. Such a mechanism might be utilized by the efferent neurotransmitters for adaptive modulation of mechano-electrical transduction, sensitivity enhancement, frequency selectivity, and protection against over-stimulation.

摘要

我们通过记录青蛙两栖乳头体毛细胞形状变化的时间进程,研究了非哺乳动物听觉毛细胞中的慢速运动过程。据报道,该器官前端的高毛细胞是传出神经支配的唯一接受者,我们发现这些细胞会随着细胞内游离钙浓度的增加而缩短。这些缩短过程由两个部分重叠的阶段组成:最初是快速的等容收缩,随后是较慢的长度减少并伴有肿胀。借助钾离子或氯离子通道抑制剂奎宁或呋塞米延迟细胞肿胀,就有可能揭示等容收缩。此外,这些细胞中的纵向收缩似乎依赖于钙调蛋白:在钙调蛋白抑制剂W-7存在的情况下,只能观察到缓慢的肿胀阶段。这些发现表明,两栖动物前端的两栖乳头体毛细胞在表达钙调蛋白依赖性收缩结构和能够介导长度变化以响应细胞外刺激的“渗透”机制方面,与哺乳动物的对应细胞相似。传出神经递质可能利用这种机制对机械电转导进行适应性调节、增强敏感性、提高频率选择性以及防止过度刺激。

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