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首页> 外文期刊>American Journal of Physiology >Cochlear gap junctions coassembled from Cx26 and 30 show faster intercellular Ca2+ signaling than homomeric counterparts.
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Cochlear gap junctions coassembled from Cx26 and 30 show faster intercellular Ca2+ signaling than homomeric counterparts.

机译:从Cx26和30共组装的耳蜗间隙连接处显示出比同质对应物更快的细胞间Ca2 +信号传导。

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摘要

The importance of connexins (Cxs) in cochlear functions has been demonstrated by the finding that mutations in Cx genes cause a large proportion of sensorineural hearing loss cases. However, it is still unclear how Cxs contribute to the cochlear function. Recent data (33) obtained from Cx30 knockout mice showing that a reduction of Cx diversity in assembling gap junctions is sufficient to cause deafness suggest that functional interactions of different subtypes of Cxs may be essential in normal hearing. In this work we show that the two major forms of Cxs (Cx26 and Cx30) in the cochlea have overlapping expression patterns beginning at early embryonic stages. Cx26 and Cx30 were colocalized in most gap junction plaques in the cochlea, and their coassembly was tested by coimmunoprecipitation. To compare functional differences of gap junctions with different molecular configurations, homo- and heteromeric gap junctions composed of Cx26 and/or Cx30 were reconstituted by transfections in human embryonic kidney-293 cells. The ratio imaging technique and fluorescent tracer diffusion assays were used to assess the function of reconstituted gap junctions. Our results revealed that gap junctions with different molecular configurations show differences in biochemical coupling, and that intercellular Ca(2+) signaling across heteromeric gap junctions consisting of Cx26 and Cx30 was at least twice as fast as their homomerically assembled counterparts. Our data suggest that biochemical permeability and the dynamics of intercellular signaling through gap junction channels, in addition to gap junction-mediated intercellular ionic coupling, may be important factors to consider for studying functional roles of gap junctions in the cochlea.
机译:发现连接蛋白(Cxs)在耳蜗功能中的重要性已证明,Cx基因突变会导致很大一部分感音神经性听力损失病例。然而,仍不清楚Cxs如何促进耳蜗功能。从Cx30基因敲除小鼠获得的最新数据(33)显示,装配间隙连接处Cx多样性的降低足以引起耳聋,这表明不同类型Cxs的功能相互作用可能对正常听力至关重要。在这项工作中,我们表明耳蜗中Cx的两种主要形式(Cx26和Cx30)在早期胚胎阶段就具有重叠的表达模式。 Cx26和Cx30在耳蜗的大多数间隙连接斑中共定位,并通过共免疫沉淀测试它们的共装配。为了比较具有不同分子构型的间隙连接的功能差异,在人类胚胎肾293细胞中转染重建了由Cx26和/或Cx30组成的同型和异型间隙连接。比例成像技术和荧光示踪剂扩散测定法用于评估重构间隙连接的功能。我们的结果表明,具有不同分子构型的缝隙连接在生化偶联中显示出差异,并且跨由Cx26和Cx30组成的异质缝隙连接的细胞间Ca(2+)信号传递的速度至少是其同聚物组装对应物的两倍。我们的数据表明,除了间隙连接介导的细胞间离子偶联以外,通过间隙连接通道的生化通透性和细胞间信号传导的动力学可能是研究耳蜗中间隙连接功能作用的重要因素。

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