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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Phosphoinositol-4,5-Bisphosphate Regulates Auditory Hair-Cell Mechanotransduction-Channel Pore Properties and Fast Adaptation
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Phosphoinositol-4,5-Bisphosphate Regulates Auditory Hair-Cell Mechanotransduction-Channel Pore Properties and Fast Adaptation

机译:磷酸肌醇-4,5-双磷酸盐调节听觉毛细胞机械调节沟道孔隙性能和快速适应

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摘要

Membrane proteins, such as ion channels, interact dynamically with their lipid environment. Phosphoinositol-4,5-bisphosphate (PIP2) can directly or indirectly modify ion-channel properties. In auditory sensory hair cells of rats (Sprague Dawley) of either sex, PIP2 localizes within stereocilia, near stereocilia tips. Modulating the amount of free PIP2 in inner hair-cell stereocilia resulted in the following: (1) the loss of a fast component of mechanoelectric-transduction current adaptation, (2) an increase in the number of channels open at the hair bundle's resting position, (3) a reduction of single-channel conductance, (4) a change in ion selectivity, and (5) a reduction in calcium pore blocking effects. These changes occur without altering hair-bundle compliance or the number of functional stereocilia within a given hair bundle. Although the specific molecular mechanism for PIP2 action remains to be uncovered, data support a hypothesis for PIP2 directly regulating channel conformation to alter calcium permeation and single-channel conductance.
机译:膜蛋白质,例如离子通道,相互作用动态地与他们的脂质环境。磷酸肌醇-4,5-二磷酸(PIP2)可以直接或间接修改离子通道的性质。在任一性别的大鼠(斯普拉格Dawley)的听觉感觉毛细胞,纤毛PIP2,近纤毛技巧本地化内。调制在内毛细胞纤毛游离PIP2的量导致了以下情况:(1)mechanoelectric转导的电流适应的快组分的损失,(2)增加在信道的数目在发束的静止位置打开,(3)减少单通道电导的,(4)在离子选择性的改变,和(5)的钙孔封闭效果的降低。发生这些变化不改变一个给定的发束中毛束顺应性或功能纤毛的数量。尽管对于被发现为PIP2动作遗体的特定分子机制,数据,支持了PIP2直接调节通道的构象以改变钙渗透和单通道电导假设。

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