首页> 外文期刊>Journal of Electron Microscopy >Localization of the two constitutively expressed nitric oxide synthase isoforms (nNOS and eNOS) in the same cell types in the saccule maculae of the frog Rana pipiens by immunoelectron microscopy: evidence for a back-up system?
【24h】

Localization of the two constitutively expressed nitric oxide synthase isoforms (nNOS and eNOS) in the same cell types in the saccule maculae of the frog Rana pipiens by immunoelectron microscopy: evidence for a back-up system?

机译:通过免疫电子显微镜,在青蛙蛙皮瓣的黄斑部的同一细胞类型中两种组成型表达的一氧化氮合酶同工型(nNOS和eNOS)的定位。

获取原文
获取原文并翻译 | 示例
           

摘要

There is growing evidence for a nitric oxide/cyclic GMP pathway of signal transduction in the vestibular system. Recently, two isoforms of nitric oxide (NO) synthase (nNOS and eNOS) and NO itself have been identified at the light microscopic level in the vestibulocochlear system of mice using specific antibodies and a new fluorescence indicator. In order to acquire more information about signal transduction and tissue modulation in this neuroepithelium at the cellular and subcellular levels, ultrathin sections of London Resin White-embedded saccule maculae of the frog Rana pipiens were incubated with various concentrations of commercially available antibodies to nNOS and eNOS. The immunoreactivity was visualized by a gold-labelled secondary antibody and the amount of the immunoreactions per microm2 was quantified for the different cell types and subcellular regions. Significant eNOS immunoreactivity was identified in the hair bundles, cuticular plates and the rest of the cytoplasm of the hair cells as well as in different subcellular regions of the supporting cells. Gold-labelled anti-nNOS antibodies stained mainly stereovilli and cuticular structures of hair cells and supporting cells, whereas the number of the immunoreactions in the remaining cytoplasm of both cell types was near the background level. The spatial co-localization of the two NOS isotypes in the same cell regions of hair cells and supporting cells was confirmed in double-labelling experiments. The immunocytochemical findings are suggestive of a redundant system in which one NOS isoform can (partially) replace the other. The different subcellular localization of the NOS isoforms may allow for isoform specific regulation of NOS activity by different Ca2+ currents at the subcellular level, underlining the importance of NO-regulated processes in neuroepithelia of the inner ear.
机译:越来越多的证据表明前庭系统中的一氧化氮/环状GMP信号转导途径。最近,使用特异性抗体和新的荧光指示剂,在小鼠前庭球静脉系统的光学显微镜下鉴定出一氧化氮(NO)合酶(nNOS和eNOS)和NO本身的两种同工型。为了获得有关该神经上皮细胞在细胞和亚细胞水平上的信号转导和组织调节的更多信息,将伦敦蛙蛙皮piens的白色包埋的小囊黄斑的超薄切片与各种浓度的针对nNOS和eNOS的市售抗体一起孵育。免疫反应通过金标记的二抗可视化,并针对不同的细胞类型和亚细胞区域定量每微平方米的免疫反应量。在毛发束,表皮板和毛细胞的其余细胞质以及支持细胞的不同亚细胞区域中发现了重要的eNOS免疫反应性。金标记的抗nNOS抗体主要染色毛细胞和支持细胞的立体绒毛和表皮结构,而两种细胞类型的其余细胞质中的免疫反应数均接近背景水平。在双重标记实验中证实了两种NOS同种型在毛细胞和支持细胞的相同细胞区域中的空间共定位。免疫细胞化学结果提示存在一个冗余系统,其中一个NOS亚型可以(部分)替代另一个。 NOS亚型的不同亚细胞定位可能允许亚细胞水平上不同的Ca2 +电流对NOS活性的亚型特异性调节,从而强调了NO调节内耳神经上皮细胞的重要性。

著录项

相似文献

  • 外文文献
  • 中文文献
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