首页> 美国卫生研究院文献>Frontiers in Molecular Neuroscience >L-type CaV1.2 deletion in the cochlea but not in the brainstem reduces noise vulnerability: implication for CaV1.2-mediated control of cochlear BDNF expression
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L-type CaV1.2 deletion in the cochlea but not in the brainstem reduces noise vulnerability: implication for CaV1.2-mediated control of cochlear BDNF expression

机译:耳蜗中的L型CaV1.2缺失而不是脑干中的L型CaV1.2缺失降低了噪声易感性:对CaV1.2介导的耳蜗BDNF表达控制的意义

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摘要

Voltage-gated L-type Ca2+ channels (L-VGCCs) like CaV1.2 are assumed to play a crucial role for controlling release of trophic peptides including brain-derived neurotrophic factor (BDNF). In the inner ear of the adult mouse, besides the well-described L-VGCC CaV1.3, CaV1.2 is also expressed. Due to lethality of constitutive CaV1.2 knock-out mice, the function of this ion channel as well as its putative relationship to BDNF in the auditory system is entirely elusive. We recently described that BDNF plays a differential role for inner hair cell (IHC) vesicles release in normal and traumatized condition. To elucidate a presumptive role of CaV1.2 during this process, two tissue-specific conditional mouse lines were generated. To distinguish the impact of CaV1.2 on the cochlea from that on feedback loops from higher auditory centers CaV1.2 was deleted, in one mouse line, under the Pax2 promoter (CaV1.2Pax2) leading to a deletion in the spiral ganglion neurons, dorsal cochlear nucleus, and inferior colliculus. In the second mouse line, the Egr2 promoter was used for deleting CaV1.2 (CaV1.2Egr2) in auditory brainstem nuclei. In both mouse lines, normal hearing threshold and equal number of IHC release sites were observed. We found a slight reduction of auditory brainstem response wave I amplitudes in the CaV1.2Pax2 mice, but not in the CaV1.2Egr2 mice. After noise exposure, CaV1.2Pax2 mice had less-pronounced hearing loss that correlated with maintenance of ribbons in IHCs and less reduced activity in auditory nerve fibers, as well as in higher brain centers at supra-threshold sound stimulation. As reduced cochlear BDNF mRNA levels were found in CaV1.2Pax2 mice, we suggest that a CaV1.2-dependent step may participate in triggering part of the beneficial and deteriorating effects of cochlear BDNF in intact systems and during noise exposure through a pathway that is independent of CaV1.2 function in efferent circuits.
机译:电压门控的L型Ca 2 + 通道(L-VGCC)如CaV1.2被认为在控制包括脑源性神经营养因子(BDNF)在内的营养肽的释放中起着关键作用。在成年小鼠的内耳中,除了众所周知的L-VGCC CaV1.3,还表达了CaV1.2。由于组成型CaV1.2敲除小鼠的致死性,该离子通道的功能及其与听觉系统中BDNF的推测关系完全是难以捉摸的。我们最近描述了BDNF在正常和受创伤的情况下为内部毛细胞(IHC)囊泡释放起着不同的作用。为了阐明CaV1.2在此过程中的推定作用,产生了两个组织特异性条件小鼠品系。为了区分CaV1.2对耳蜗的影响与对来自较高听觉中心的反馈回路的影响,在一只小鼠系中,在Pax2启动子(CaV1.2 Pax2 )下删除了CaV1.2螺旋神经节神经元,背侧耳蜗核和下丘的缺失。在第二只小鼠系中,使用Egr2启动子删除听觉脑干核中的CaV1.2(CaV1.2 Egr2 )。在两种小鼠系中,均观察到正常的听力阈值和相等数量的IHC释放位点。我们发现CaV1.2 Pax2 小鼠的听觉脑干反应波I幅度略有降低,但CaV1.2 Egr2 小鼠却没有。噪声暴露后,CaV1.2 Pax2 小鼠的发音较轻,与IHC中的色带保持相关,听觉神经纤维以及超阈值的较高大脑中枢活动减少。声音刺激。由于在CaV1.2 Pax2 小鼠中发现了耳蜗BDNF mRNA水平降低,因此我们认为,依赖CaV1.2的步骤可能参与了完整系统中耳蜗BDNF有益和恶化作用的触发部分。通过独立于传出电路中CaV1.2功能的途径进行噪声暴露期间。

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