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BK通道在哺乳动物耳蜗毛细胞中的定位及发育表达

Localization and developmental expression of BK channels in mammalian cochlear hair cells.

作者信息

Hafidi A, Beurg M, Dulon D

机构信息

Laboratoire de Biologie Cellulaire et Moléculaire de l'Audition, EA 3665, Université de Bordeaux 2, Laboratoire de Biologie Cellulaire et Moléculaire de l'Audition, CHU Hôpital Pellegrin, 33076 Bordeaux, France.

出版信息

Neuroscience. 2005;130(2):475-84. doi: 10.1016/j.neuroscience.2004.09.038.

Abstract

The expression of Slo channels (alpha subunits of BK channels) was investigated in the developing mouse cochlea using a polyclonal antibody against the C-terminal part of the protein (residues 1098-1196). The first BK channel immunoreactivity was observed in the cochlea at E18, where it was localized within the cytoplasm of cells lining the area of the organ of Corti and the spiral ganglion. There was an increase of immunoreactivity in all cells bordering the scala media (supporting and hair cells of the organ of Corti, the stria vascularis and the Reissner's membrane) in the following stages (postnatal day [P] 0 and P6). From P12 to adult, a strong membranous labeling, increasing with age, appeared in inner hair cells. The distribution of BK channels was mainly observed as dense elongated plaques localized in the lateral membrane below the cuticular plate. In addition, a more discrete immunolabeling for BK channels, as punctuated dots, was observed in the synaptic area of inner hair cells. This dual localization of BK channels within inner hair cells was confirmed by a different technique using a fluorescently labeled high-affinity ligand of these channels: IbTX-D19C-Alexa488. We demonstrated under patch clamp experiments that this fluorescent toxin conserved its native property, i.e. to reversibly inhibit BK currents in isolated inner hair cells. The fluorescent toxin, both in living or fixed tissues, also showed a preferential binding to mature inner hair cells with a similar subcellular distribution described above using immunocytochemical technique. Overall, our present results confirm the appearance of membranous BK channels around P12 in mouse inner hair cells, an age at which the auditory system becomes functional. The expression of BK channels in mature inner hair cells, near the site of mechanical-transduction, might serve to limit receptor potential attenuation due to the space constant, and thus permitting these sensory cells to function as fast and sensitive transducers.

摘要

使用针对该蛋白C末端部分(第1098 - 1196位氨基酸残基)的多克隆抗体,研究了发育中小鼠耳蜗中Slo通道(大电导钙激活钾通道的α亚基)的表达情况。在胚胎第18天首次在耳蜗中观察到BK通道免疫反应性,其位于柯蒂氏器区域和螺旋神经节内衬细胞的细胞质内。在随后的阶段(出生后第[P]0天和P6天),与中阶相邻的所有细胞(柯蒂氏器的支持细胞和毛细胞、血管纹和Reissner膜)中的免疫反应性均增加。从P12到成年,在内毛细胞中出现了随年龄增加的强烈膜标记。BK通道的分布主要表现为位于表皮板下方侧膜中的密集细长斑块。此外,在内毛细胞的突触区域观察到更离散的BK通道免疫标记,呈点状。使用这些通道的荧光标记高亲和力配体的不同技术证实了BK通道在内毛细胞内的这种双重定位:IbTX - D19C - Alexa488。我们在膜片钳实验中证明,这种荧光毒素保留了其天然特性,即在分离的内毛细胞中可逆地抑制BK电流。无论是在活组织还是固定组织中,这种荧光毒素也显示出优先结合成熟内毛细胞,其亚细胞分布与上述免疫细胞化学技术描述的相似。总体而言,我们目前的结果证实了小鼠内毛细胞在P12左右出现膜性BK通道,此时听觉系统开始发挥功能。成熟内毛细胞中靠近机械转导部位的BK通道表达可能有助于限制由于空间常数导致的受体电位衰减,从而使这些感觉细胞能够作为快速且敏感的换能器发挥作用。

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