...
首页> 外文期刊>BMC Genomics >Identifying components of the hair-cell interactome involved in cochlear amplification
【24h】

Identifying components of the hair-cell interactome involved in cochlear amplification

机译:识别参与耳蜗扩增的毛细胞相互作用组的成分

获取原文
           

摘要

Background Although outer hair cells (OHCs) play a key role in cochlear amplification, it is not fully understood how they amplify sound signals by more than 100 fold. Two competing or possibly complementary mechanisms, stereocilia-based and somatic electromotility-based amplification, have been considered. Lacking knowledge about the exceptionally rich protein networks in the OHC plasma membrane, as well as related protein-protein interactions, limits our understanding of cochlear function. Therefore, we focused on finding protein partners for two important membrane proteins: Cadherin 23 (cdh23) and prestin. Cdh23 is one of the tip-link proteins involved in transducer function, a key component of mechanoelectrical transduction and stereocilia-based amplification. Prestin is a basolateral membrane protein responsible for OHC somatic electromotility. Results Using the membrane-based yeast two-hybrid system to screen a newly built cDNA library made predominantly from OHCs, we identified two completely different groups of potential protein partners using prestin and cdh23 as bait. These include both membrane bound and cytoplasmic proteins with 12 being de novo gene products with unknown function(s). In addition, some of these genes are closely associated with deafness loci, implying a potentially important role in hearing. The most abundant prey for prestin (38%) is composed of a group of proteins involved in electron transport, which may play a role in OHC survival. The most abundant group of cdh23 prey (55%) contains calcium-binding domains. Since calcium performs an important role in hair cell mechanoelectrical transduction and amplification, understanding the interactions between cdh23 and calcium-binding proteins should increase our knowledge of hair cell function at the molecular level. Conclusion The results of this study shed light on some protein networks in cochlear hair cells. Not only was a group of de novo genes closely associated with known deafness loci identified, but the data also indicate that the hair cell tip link interacts directly with calcium binding proteins. The OHC motor protein, prestin, also appears to be associated with electron transport proteins. These unanticipated results open potentially fruitful lines of investigation into the molecular basis of cochlear amplification.
机译:背景技术尽管外毛细胞(OHC)在耳蜗放大中起着关键作用,但尚未完全了解它们如何将声音信号放大100倍以上。已经考虑了两种相互竞争或可能互补的机制,即基于立体纤毛和基于体细胞电动性的扩增。缺乏关于OHC质膜中异常丰富的蛋白质网络以及相关蛋白质-蛋白质相互作用的知识,限制了我们对耳蜗功能的了解。因此,我们专注于寻找两个重要膜蛋白的蛋白伴侣:钙黏着蛋白23(cdhher23)和蛋白素。 Cdh23是涉及换能器功能的尖端连接蛋白之一,它是机电转导和基于纤毛的扩增的关键成分。 Prestin是负责OHC体细胞电动性的基底外侧膜蛋白。结果使用基于膜的酵母双杂交系统筛选主要由OHC制备的新建cDNA文库,我们使用prestin和cdh23作为诱饵鉴定了两个完全不同的潜在蛋白质伴侣。这些包括膜结合蛋白和细胞质蛋白,其中12种是功能未知的从头基因产物。此外,其中一些基因与耳聋位点密切相关,这暗示着在听力中的潜在重要作用。 prestin中最丰富的猎物(38%)由一组参与电子运输的蛋白质组成,这些蛋白质可能在OHC的存活中起作用。 cdh23猎物中最丰富的一组(55%)包含钙结合结构域。由于钙在毛细胞机电转导和扩增中起着重要作用,因此了解cdh23与钙结合蛋白之间的相互作用应该在分子水平上增加我们对毛细胞功能的了解。结论这项研究的结果揭示了耳蜗毛细胞中的某些蛋白质网络。不仅鉴定出一组与已知的耳聋基因座紧密相关的从头基因,而且数据还表明,毛细胞尖端连接直接与钙结合蛋白相互作用。 OHC运动蛋白prestin也似乎与电子转运蛋白有关。这些出乎意料的结果为耳蜗扩增的分子基础打开了可能富有成果的研究方向。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号