Na/K-ATPase Gene Expression in the Human Cochlea: A Study Using mRNA in situ Hybridization and Super-Resolution Structured Illumination Microscopy

BackgroundThe pervasive Na/K-ATPase pump is highly expressed in the human cochlea and is involved in the generation of the endocochlear potential as well as auditory nerve signaling and relay. Its distribution, molecular organization and gene regulation are essential to establish to better understan...

Full description

Bibliographic Details
Published in:Frontiers in Molecular Neuroscience
Main Authors: Wei Liu, Helge Rask-Andersen
Format: Article
Language:English
Published: Frontiers Media S.A. 2022-03-01
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fnmol.2022.857216/full
_version_ 1852765090894315520
author Wei Liu
Helge Rask-Andersen
author_facet Wei Liu
Helge Rask-Andersen
author_sort Wei Liu
collection DOAJ
container_title Frontiers in Molecular Neuroscience
description BackgroundThe pervasive Na/K-ATPase pump is highly expressed in the human cochlea and is involved in the generation of the endocochlear potential as well as auditory nerve signaling and relay. Its distribution, molecular organization and gene regulation are essential to establish to better understand inner ear function and disease. Here, we analyzed the expression and distribution of the ATP1A1, ATP1B1, and ATP1A3 gene transcripts encoding the Na/K-ATPase α1, α3, and β1 isoforms in different domains of the human cochlea using RNA in situ hybridization.Materials and MethodsArchival paraformaldehyde-fixed sections derived from surgically obtained human cochleae were used to label single mRNA gene transcripts using the highly sensitive multiplex RNAscope® technique. Localization of gene transcripts was performed by super-resolution structured illumination microscopy (SR-SIM) using fluorescent-tagged probes. GJB6 encoding of the protein connexin30 served as an additional control.ResultsSingle mRNA gene transcripts were seen as brightly stained puncta. Positive and negative controls verified the specificity of the labeling. ATP1A1 and ATP1B1 gene transcripts were demonstrated in the organ of Corti, including the hair and supporting cells. In the stria vascularis, these transcripts were solely expressed in the marginal cells. A large number of ATP1B1 gene transcripts were found in the spiral ganglion cell soma, outer sulcus, root cells, and type II fibrocytes. The ATP1B1 and ATP1A3 gene transcripts were rarely detected in axons.DiscussionSurgically obtained inner ear tissue can be used to identify single mRNA gene transcripts using high-resolution fluorescence microscopy after prompt formaldehyde fixation and chelate decalcification. A large number of Na/K-ATPase gene transcripts were localized in selected areas of the cochlear wall epithelium, fibrocyte networks, and spiral ganglion, confirming the enzyme’s essential role for human cochlear function.
format Article
id doaj-art-ebe68f4a493c4bb2958a3931fadf7c0b
institution Directory of Open Access Journals
issn 1662-5099
language English
publishDate 2022-03-01
publisher Frontiers Media S.A.
record_format Article
spelling doaj-art-ebe68f4a493c4bb2958a3931fadf7c0b2025-08-19T20:54:06ZengFrontiers Media S.A.Frontiers in Molecular Neuroscience1662-50992022-03-011510.3389/fnmol.2022.857216857216Na/K-ATPase Gene Expression in the Human Cochlea: A Study Using mRNA in situ Hybridization and Super-Resolution Structured Illumination MicroscopyWei LiuHelge Rask-AndersenBackgroundThe pervasive Na/K-ATPase pump is highly expressed in the human cochlea and is involved in the generation of the endocochlear potential as well as auditory nerve signaling and relay. Its distribution, molecular organization and gene regulation are essential to establish to better understand inner ear function and disease. Here, we analyzed the expression and distribution of the ATP1A1, ATP1B1, and ATP1A3 gene transcripts encoding the Na/K-ATPase α1, α3, and β1 isoforms in different domains of the human cochlea using RNA in situ hybridization.Materials and MethodsArchival paraformaldehyde-fixed sections derived from surgically obtained human cochleae were used to label single mRNA gene transcripts using the highly sensitive multiplex RNAscope® technique. Localization of gene transcripts was performed by super-resolution structured illumination microscopy (SR-SIM) using fluorescent-tagged probes. GJB6 encoding of the protein connexin30 served as an additional control.ResultsSingle mRNA gene transcripts were seen as brightly stained puncta. Positive and negative controls verified the specificity of the labeling. ATP1A1 and ATP1B1 gene transcripts were demonstrated in the organ of Corti, including the hair and supporting cells. In the stria vascularis, these transcripts were solely expressed in the marginal cells. A large number of ATP1B1 gene transcripts were found in the spiral ganglion cell soma, outer sulcus, root cells, and type II fibrocytes. The ATP1B1 and ATP1A3 gene transcripts were rarely detected in axons.DiscussionSurgically obtained inner ear tissue can be used to identify single mRNA gene transcripts using high-resolution fluorescence microscopy after prompt formaldehyde fixation and chelate decalcification. A large number of Na/K-ATPase gene transcripts were localized in selected areas of the cochlear wall epithelium, fibrocyte networks, and spiral ganglion, confirming the enzyme’s essential role for human cochlear function.https://www.frontiersin.org/articles/10.3389/fnmol.2022.857216/fullhumaninner earNa/K-ATPase geneRNAscopestructured illumination microscopy
spellingShingle Wei Liu
Helge Rask-Andersen
Na/K-ATPase Gene Expression in the Human Cochlea: A Study Using mRNA in situ Hybridization and Super-Resolution Structured Illumination Microscopy
human
inner ear
Na/K-ATPase gene
RNAscope
structured illumination microscopy
title Na/K-ATPase Gene Expression in the Human Cochlea: A Study Using mRNA in situ Hybridization and Super-Resolution Structured Illumination Microscopy
title_full Na/K-ATPase Gene Expression in the Human Cochlea: A Study Using mRNA in situ Hybridization and Super-Resolution Structured Illumination Microscopy
title_fullStr Na/K-ATPase Gene Expression in the Human Cochlea: A Study Using mRNA in situ Hybridization and Super-Resolution Structured Illumination Microscopy
title_full_unstemmed Na/K-ATPase Gene Expression in the Human Cochlea: A Study Using mRNA in situ Hybridization and Super-Resolution Structured Illumination Microscopy
title_short Na/K-ATPase Gene Expression in the Human Cochlea: A Study Using mRNA in situ Hybridization and Super-Resolution Structured Illumination Microscopy
title_sort na k atpase gene expression in the human cochlea a study using mrna in situ hybridization and super resolution structured illumination microscopy
topic human
inner ear
Na/K-ATPase gene
RNAscope
structured illumination microscopy
url https://www.frontiersin.org/articles/10.3389/fnmol.2022.857216/full
work_keys_str_mv AT weiliu nakatpasegeneexpressioninthehumancochleaastudyusingmrnainsituhybridizationandsuperresolutionstructuredilluminationmicroscopy
AT helgeraskandersen nakatpasegeneexpressioninthehumancochleaastudyusingmrnainsituhybridizationandsuperresolutionstructuredilluminationmicroscopy