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Harmonin-b,一种肌动蛋白结合支架蛋白,参与感觉毛细胞的机电转导适应。

Harmonin-b, an actin-binding scaffold protein, is involved in the adaptation of mechanoelectrical transduction by sensory hair cells.

机构信息

Institut Pasteur, Unité de Génétique et Physiologie de l'Audition, Paris 75015, France.

出版信息

Pflugers Arch. 2009 Nov;459(1):115-30. doi: 10.1007/s00424-009-0711-x.

Abstract

We assessed the involvement of harmonin-b, a submembranous protein containing PDZ domains, in the mechanoelectrical transduction machinery of inner ear hair cells. Harmonin-b is located in the region of the upper insertion point of the tip link that joins adjacent stereocilia from different rows and that is believed to gate transducer channel(s) located in the region of the tip link's lower insertion point. In Ush1c (dfcr-2J/dfcr-2J) mutant mice defective for harmonin-b, step deflections of the hair bundle evoked transduction currents with altered speed and extent of adaptation. In utricular hair cells, hair bundle morphology and maximal transduction currents were similar to those observed in wild-type mice, but adaptation was faster and more complete. Cochlear outer hair cells displayed reduced maximal transduction currents, which may be the consequence of moderate structural anomalies of their hair bundles. Their adaptation was slower and displayed a variable extent. The latter was positively correlated with the magnitude of the maximal transduction current, but the cells that showed the largest currents could be either hyperadaptive or hypoadaptive. To interpret our observations, we used a theoretical description of mechanoelectrical transduction based on the gating spring theory and a motor model of adaptation. Simulations could account for the characteristics of transduction currents in wild-type and mutant hair cells, both vestibular and cochlear. They led us to conclude that harmonin-b operates as an intracellular link that limits adaptation and engages adaptation motors, a dual role consistent with the scaffolding property of the protein and its binding to both actin filaments and the tip link component cadherin-23.

摘要

我们评估了含有 PDZ 结构域的亚膜蛋白 harmonin-b 在内耳毛细胞的机电转导机制中的作用。Harmonin-b 位于相邻静纤毛顶端连接点的上插入点区域,该连接点被认为是位于顶端连接点的下插入点区域的转导通道的门控。在 harmonin-b 缺陷的 Ush1c(dfcr-2J/dfcr-2J) 突变小鼠中,毛束的阶跃偏转会引起转导电流,其速度和适应程度发生改变。在椭圆囊毛细胞中,毛束形态和最大转导电流与野生型小鼠相似,但适应更快、更完全。耳蜗外毛细胞显示最大转导电流减少,这可能是其毛束结构中度异常的结果。它们的适应较慢,且具有不同程度的适应性。后者与最大转导电流的幅度呈正相关,但显示最大电流的细胞可以是超适应或低适应。为了解释我们的观察结果,我们使用了基于门控弹簧理论和适应的运动模型的机电转导的理论描述。模拟可以解释野生型和突变毛细胞的转导电流的特征,包括前庭和耳蜗。它们使我们得出结论,harmonin-b 作为一种细胞内连接物起作用,限制适应并参与适应运动,这种双重作用与该蛋白的支架特性及其与肌动蛋白丝和顶端连接点成分 cadherin-23 的结合一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6199/2767239/f6cd926bfb74/424_2009_711_Fig1_HTML.jpg

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