Cargando…

A novel in vivo method to quantify slit diaphragm protein abundance in murine proteinuric kidney disease

Injury of the glomerular filter causes proteinuria by disrupting the sensitive interplay of the glomerular protein network. To date, studies of the expression and trafficking of glomerular proteins have been mostly limited to in vitro or histologic studies. Here, we report a novel in vivo biotinylat...

Descripción completa

Detalles Bibliográficos
Autores principales: Haase, Raphael, Potthoff, Sebastian Alexander, Meyer-Schwesinger, Catherine, Frosch, Clara, Wiech, Thorsten, Panzer, Ulf, Königshausen, Eva, Stegbauer, Johannes, Sellin, Lorenz, Rump, Lars Christian, Quack, Ivo, Woznowski, Magdalena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5467901/
https://www.ncbi.nlm.nih.gov/pubmed/28604827
http://dx.doi.org/10.1371/journal.pone.0179217
_version_ 1783243337792225280
author Haase, Raphael
Potthoff, Sebastian Alexander
Meyer-Schwesinger, Catherine
Frosch, Clara
Wiech, Thorsten
Panzer, Ulf
Königshausen, Eva
Stegbauer, Johannes
Sellin, Lorenz
Rump, Lars Christian
Quack, Ivo
Woznowski, Magdalena
author_facet Haase, Raphael
Potthoff, Sebastian Alexander
Meyer-Schwesinger, Catherine
Frosch, Clara
Wiech, Thorsten
Panzer, Ulf
Königshausen, Eva
Stegbauer, Johannes
Sellin, Lorenz
Rump, Lars Christian
Quack, Ivo
Woznowski, Magdalena
author_sort Haase, Raphael
collection PubMed
description Injury of the glomerular filter causes proteinuria by disrupting the sensitive interplay of the glomerular protein network. To date, studies of the expression and trafficking of glomerular proteins have been mostly limited to in vitro or histologic studies. Here, we report a novel in vivo biotinylation assay that allows the quantification of surface expression of glomerular proteins in mice. Kidneys were perfused in situ with biotin before harvest. Afterwards glomeruli were isolated and lyzed. The protein of interest was separated by immunoprecipitation and the amount of surface-expressed protein was quantified by Western blot analysis with streptavidin staining. As proof-of-concept, we examined the presence of nephrin in the slit diaphragm in two well-established murine models of proteinuric kidney disease: nephrotoxic nephritis and adriamycin nephropathy. In proteinuric animals, significantly less nephrin was detected in the slit diaphragm. When proteinuria decreased once again during the course of disease, the amount of surface nephrin returned to the baseline. Our present results suggest that our assay is a valuable tool to study the glomerular filter in proteinuric kidney diseases. Note that the assay is not limited to proteins expressed in the slit diaphragm, and all surface proteins that are accessible to biotin perfusion and immunoprecipitation qualify for this analysis.
format Online
Article
Text
id pubmed-5467901
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-54679012017-06-22 A novel in vivo method to quantify slit diaphragm protein abundance in murine proteinuric kidney disease Haase, Raphael Potthoff, Sebastian Alexander Meyer-Schwesinger, Catherine Frosch, Clara Wiech, Thorsten Panzer, Ulf Königshausen, Eva Stegbauer, Johannes Sellin, Lorenz Rump, Lars Christian Quack, Ivo Woznowski, Magdalena PLoS One Research Article Injury of the glomerular filter causes proteinuria by disrupting the sensitive interplay of the glomerular protein network. To date, studies of the expression and trafficking of glomerular proteins have been mostly limited to in vitro or histologic studies. Here, we report a novel in vivo biotinylation assay that allows the quantification of surface expression of glomerular proteins in mice. Kidneys were perfused in situ with biotin before harvest. Afterwards glomeruli were isolated and lyzed. The protein of interest was separated by immunoprecipitation and the amount of surface-expressed protein was quantified by Western blot analysis with streptavidin staining. As proof-of-concept, we examined the presence of nephrin in the slit diaphragm in two well-established murine models of proteinuric kidney disease: nephrotoxic nephritis and adriamycin nephropathy. In proteinuric animals, significantly less nephrin was detected in the slit diaphragm. When proteinuria decreased once again during the course of disease, the amount of surface nephrin returned to the baseline. Our present results suggest that our assay is a valuable tool to study the glomerular filter in proteinuric kidney diseases. Note that the assay is not limited to proteins expressed in the slit diaphragm, and all surface proteins that are accessible to biotin perfusion and immunoprecipitation qualify for this analysis. Public Library of Science 2017-06-12 /pmc/articles/PMC5467901/ /pubmed/28604827 http://dx.doi.org/10.1371/journal.pone.0179217 Text en © 2017 Haase et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Haase, Raphael
Potthoff, Sebastian Alexander
Meyer-Schwesinger, Catherine
Frosch, Clara
Wiech, Thorsten
Panzer, Ulf
Königshausen, Eva
Stegbauer, Johannes
Sellin, Lorenz
Rump, Lars Christian
Quack, Ivo
Woznowski, Magdalena
A novel in vivo method to quantify slit diaphragm protein abundance in murine proteinuric kidney disease
title A novel in vivo method to quantify slit diaphragm protein abundance in murine proteinuric kidney disease
title_full A novel in vivo method to quantify slit diaphragm protein abundance in murine proteinuric kidney disease
title_fullStr A novel in vivo method to quantify slit diaphragm protein abundance in murine proteinuric kidney disease
title_full_unstemmed A novel in vivo method to quantify slit diaphragm protein abundance in murine proteinuric kidney disease
title_short A novel in vivo method to quantify slit diaphragm protein abundance in murine proteinuric kidney disease
title_sort novel in vivo method to quantify slit diaphragm protein abundance in murine proteinuric kidney disease
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5467901/
https://www.ncbi.nlm.nih.gov/pubmed/28604827
http://dx.doi.org/10.1371/journal.pone.0179217
work_keys_str_mv AT haaseraphael anovelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease
AT potthoffsebastianalexander anovelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease
AT meyerschwesingercatherine anovelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease
AT froschclara anovelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease
AT wiechthorsten anovelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease
AT panzerulf anovelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease
AT konigshauseneva anovelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease
AT stegbauerjohannes anovelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease
AT sellinlorenz anovelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease
AT rumplarschristian anovelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease
AT quackivo anovelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease
AT woznowskimagdalena anovelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease
AT haaseraphael novelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease
AT potthoffsebastianalexander novelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease
AT meyerschwesingercatherine novelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease
AT froschclara novelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease
AT wiechthorsten novelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease
AT panzerulf novelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease
AT konigshauseneva novelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease
AT stegbauerjohannes novelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease
AT sellinlorenz novelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease
AT rumplarschristian novelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease
AT quackivo novelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease
AT woznowskimagdalena novelinvivomethodtoquantifyslitdiaphragmproteinabundanceinmurineproteinurickidneydisease