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哺乳动物耳蜗中的 HCN 通道:表达模式、亚细胞定位和年龄依赖性变化。

HCN channels in the mammalian cochlea: Expression pattern, subcellular location, and age-dependent changes.

机构信息

Department of Otorhinolaryngology, Medical University of Innsbruck, Innsbruck, Austria.

Department of Anatomy, Histology & Embryology, Division of Clinical & Functional Anatomy, Medical University of Innsbruck, Innsbruck, Austria.

出版信息

J Neurosci Res. 2021 Feb;99(2):699-728. doi: 10.1002/jnr.24754. Epub 2020 Nov 12.

Abstract

Neuronal diversity in the cochlea is largely determined by ion channels. Among voltage-gated channels, hyperpolarization-activated cyclic nucleotide-gated (HCN) channels open with hyperpolarization and depolarize the cell until the resting membrane potential. The functions for hearing are not well elucidated and knowledge about localization is controversial. We created a detailed map of subcellular location and co-expression of all four HCN subunits across different mammalian species including CBA/J, C57Bl/6N, Ly5.1 mice, guinea pigs, cats, and human subjects. We correlated age-related hearing deterioration in CBA/J and C57Bl/6N with expression levels of HCN1, -2, and -4 in individual auditory neurons from the same cohort. Spatiotemporal expression during murine postnatal development exposed HCN2 and HCN4 involvement in a critical phase of hair cell innervation. The huge diversity of subunit composition, but lack of relevant heteromeric pairing along the perisomatic membrane and axon initial segments, highlighted an active role for auditory neurons. Neuron clusters were found to be the hot spots of HCN1, -2, and -4 immunostaining. HCN channels were also located in afferent and efferent fibers of the sensory epithelium. Age-related changes on HCN subtype expression were not uniform among mice and could not be directly correlated with audiometric data. The oldest mice groups revealed HCN channel up- or downregulation, depending on the mouse strain. The unexpected involvement of HCN channels in outer hair cell function where HCN3 overlaps prestin location emphasized the importance for auditory function. A better understanding may open up new possibilities to tune neuronal responses evoked through electrical stimulation by cochlear implants.

摘要

耳蜗中的神经元多样性在很大程度上取决于离子通道。在电压门控通道中,超极化激活环核苷酸门控 (HCN) 通道随着超极化而开放,并使细胞去极化,直到静息膜电位。其与听觉的功能尚未得到充分阐明,而且其定位知识存在争议。我们创建了一个详细的亚细胞定位图谱,并对包括 CBA/J、C57Bl/6N、Ly5.1 小鼠、豚鼠、猫和人类在内的不同哺乳动物物种的所有四个 HCN 亚基的共表达进行了描绘。我们将 CBA/J 和 C57Bl/6N 中的年龄相关性听力下降与来自同一队列的单个听觉神经元中 HCN1、-2 和-4 的表达水平相关联。在小鼠出生后的发育过程中的时空表达揭示了 HCN2 和 HCN4 参与了毛细胞神经支配的关键阶段。亚基组成的巨大多样性,但缺乏相关的异聚体配对,突出了听觉神经元的积极作用。发现神经元簇是 HCN1、-2 和-4 免疫染色的热点。HCN 通道也位于感觉上皮的传入和传出纤维中。不同小鼠中 HCN 亚型表达的年龄相关性变化并不均匀,并且不能直接与听力数据相关联。最年长的小鼠组显示 HCN 通道的上调或下调,具体取决于小鼠品系。HCN 通道在 HCN3 与 prestin 位置重叠的外毛细胞功能中的意外参与强调了其对听觉功能的重要性。更好的理解可能会为通过耳蜗植入物的电刺激引起的神经元反应的调谐开辟新的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45a9/7839784/f695064c56c9/JNR-99-699-g001.jpg

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