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首页> 外文期刊>Hearing Research: An International Journal >Molecularly and structurally distinct synapses mediate reliable encoding and processing of auditory information
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Molecularly and structurally distinct synapses mediate reliable encoding and processing of auditory information

机译:分子和结构上不同的突触介导听觉信息的可靠编码和处理

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摘要

Hearing impairment is the most common human sensory deficit. Considering the sophisticated anatomy and physiology of the auditory system, disease-related failures frequently occur. To meet the demands of the neuronal circuits responsible for processing auditory information, the synapses of the lower auditory pathway are anatomically and functionally specialized to process acoustic information indefatigably with utmost temporal precision. Despite sharing some functional properties, the afferent synapses of the cochlea and of auditory brainstem differ greatly in their morphology and employ distinct molecular mechanisms for regulating synaptic vesicle release. Calyceal synapses of the endbulb of Held and the calyx of Held profit from a large number of release sites that project onto one principal cell. Cochlear inner hair cell ribbon synapses exhibit a unique one-to-one relation of the presynaptic active zone to the postsynaptic cell and use hair-cell-specific proteins such as otoferlin for vesicle release. The understanding of the molecular physiology of the hair cell ribbon synapse has been advanced by human genetics studies of sensorineural hearing impairment, revealing human auditory synaptopathy as a new nosological entity. (C) 2015 Elsevier B.V. All rights reserved.
机译:听力障碍是人类最常见的感觉缺陷。考虑到听觉系统的复杂解剖结构和生理学,经常会发生与疾病相关的衰竭。为了满足负责处理听觉信息的神经元回路的需求,下听觉通路的突触在解剖学和功能上都经过专门处理,可以以最大的时间精度无休止地处理声音信息。尽管具有某些功能特性,但耳蜗和听觉脑干的传入突触在形态上有很大差异,并采用不同的分子机制来调节突触小泡的释放。 Held尾部的萼状突触和Held的萼状从投射到一个主细胞上的大量释放位点获利。耳蜗内部毛细胞带状突触显示出突触前活性区与突触后细胞的独特一对一关系,并使用毛细胞特有的蛋白质(如otoferlin)进行囊泡释放。人类对感音神经性听力障碍的遗传学研究已经提高了对毛细胞带状突触分子生理的理解,揭示了人类听觉突触病是一种新的疾病学实体。 (C)2015 Elsevier B.V.保留所有权利。

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