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Investigating the Role of Radixin in Modulation of Stereocilia Length and Stiffness

机译:探讨越芩苷在立体奇菌和刚度调节中的作用

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Mammalian hearing depends on deflection of stereocilia on the sensory outer hair cells of the inner ear. Previous data indicate that the stiffness of outer hair cell stereocilia are actively regulated. The molecular mechanism that regulate the deflection of stereocilia are presently less known. The aim of the study is to investigate the mechanistic pathway that underlie the stiffness modulation of outer hair cell stereocilia. Our hypothesis is that the membrane-cytoskeleton linker protein radixin, which is present at high concentration in stereocilia, could contribute to stiffness regulation. To test this hypothesis, we use the radixin blocker DX-52-1 which binds strongly and specifically to radixin. Time-resolved confocal imaging was used to visualize the sound-evoked motion of stereocilia in a semi-intact preparation of the guinea pig temporal bone. Cochlear microphonic potentials were also measured, using electrodes positioned in scala media. We found that the DX-52-1 inhibitor leads to an increase in stereocilia movements and decline in the amplitude of the cochlear microphonic potential. However, DX-52-1 caused a paradoxical increase in electromotility. These results suggest that radixin has a functionally important regulatory role in the mature inner ear.
机译:哺乳动物听力取决于内耳的感觉外毛细胞上立体纤胺的挠度。以前的数据表明外毛细胞立体菌的刚度被主动调节。调节立体纤条偏转的分子机制目前较少已知。该研究的目的是研究基于外毛细胞立体菌的刚度调节的机制途径。我们的假设是膜 - 细胞骨架接头蛋白,其在立体纤胺高浓度下存在,可能有助于僵硬调节。为了测试这一假设,我们使用强大且特异性地结合的radixin阻滞剂DX-52-1。时间分离的共聚焦成像用于在豚鼠颞骨的半完整制剂中可视化立体菌的声音诱发运动。还使用位于Scala介质中的电极测量耳蜗麦克约电位。我们发现DX-52-1抑制剂导致立体纤毛运动的增加和耳蜗次要仪势幅度下降。然而,DX-52-1引起了电矛盾的矛盾。这些结果表明,罗克汀在成熟内耳中具有功能重要的监管作用。

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