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Double homozygous waltzer and Ames waltzer mice provide no evidence of retinal degeneration

PURPOSE: To determine whether cadherin 23 and protocadherin 15 can substitute for one another in the maintenance of the retina and other tissues in the mouse. Does homozygosity for both v and av mutant alleles (i.e., a double homozygous mouse) cause retinal degeneration or an obvious retinal histopa...

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Autores principales: Ahmed, Zubair M., Kjellstrom, Sten, Haywood-Watson, Ricky J. L., Bush, Ronald A., Hampton, Lori L., Battey, James F., Riazuddin, Saima, Frolenkov, Gregory, Sieving, Paul A., Friedman, Thomas B.
Formato: Texto
Lenguaje:English
Publicado: Molecular Vision 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2593751/
https://www.ncbi.nlm.nih.gov/pubmed/19057657
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author Ahmed, Zubair M.
Kjellstrom, Sten
Haywood-Watson, Ricky J. L.
Bush, Ronald A.
Hampton, Lori L.
Battey, James F.
Riazuddin, Saima
Frolenkov, Gregory
Sieving, Paul A.
Friedman, Thomas B.
author_facet Ahmed, Zubair M.
Kjellstrom, Sten
Haywood-Watson, Ricky J. L.
Bush, Ronald A.
Hampton, Lori L.
Battey, James F.
Riazuddin, Saima
Frolenkov, Gregory
Sieving, Paul A.
Friedman, Thomas B.
author_sort Ahmed, Zubair M.
collection PubMed
description PURPOSE: To determine whether cadherin 23 and protocadherin 15 can substitute for one another in the maintenance of the retina and other tissues in the mouse. Does homozygosity for both v and av mutant alleles (i.e., a double homozygous mouse) cause retinal degeneration or an obvious retinal histopathology? METHODS: We generated mice homozygous for both Cdh23(v-6J) and Pcdh15(av-Jfb) alleles. The retinal phenotypes of double heterozygous and double homozygous mutant mice were determined by light microscopy and electroretinography (ERG). Histology on 32 different tissues, scanning electron microscopy of organ of Corti hair cells as well as serum biochemical and hematological examinations were evaluated. RESULTS: ERG waves of double heterozygous and double homozygous mice showed similar shape, growth of the amplitude with intensity, and implicit time for both rod and cone pathway mediated responses. Mice homozygous for both Cdh23(v-6J) and Pcdh15(av-Jfb) mutations showed no sign of retinitis pigmentosa or photoreceptor degeneration but, as expected, were deaf and had disorganized hair cell sensory bundles. CONCLUSIONS: The simultaneous presence of homozygous mutant alleles of cadherin 23 and protocadherin 15 results only in deafness, not retinal degeneration or any other additional obvious phenotype of the major organ systems. We conclude that in the mouse cadherin 23 or protocadherin 15 appear not to compensate for one another to maintain the retina.
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spelling pubmed-25937512008-12-04 Double homozygous waltzer and Ames waltzer mice provide no evidence of retinal degeneration Ahmed, Zubair M. Kjellstrom, Sten Haywood-Watson, Ricky J. L. Bush, Ronald A. Hampton, Lori L. Battey, James F. Riazuddin, Saima Frolenkov, Gregory Sieving, Paul A. Friedman, Thomas B. Mol Vis Research Article PURPOSE: To determine whether cadherin 23 and protocadherin 15 can substitute for one another in the maintenance of the retina and other tissues in the mouse. Does homozygosity for both v and av mutant alleles (i.e., a double homozygous mouse) cause retinal degeneration or an obvious retinal histopathology? METHODS: We generated mice homozygous for both Cdh23(v-6J) and Pcdh15(av-Jfb) alleles. The retinal phenotypes of double heterozygous and double homozygous mutant mice were determined by light microscopy and electroretinography (ERG). Histology on 32 different tissues, scanning electron microscopy of organ of Corti hair cells as well as serum biochemical and hematological examinations were evaluated. RESULTS: ERG waves of double heterozygous and double homozygous mice showed similar shape, growth of the amplitude with intensity, and implicit time for both rod and cone pathway mediated responses. Mice homozygous for both Cdh23(v-6J) and Pcdh15(av-Jfb) mutations showed no sign of retinitis pigmentosa or photoreceptor degeneration but, as expected, were deaf and had disorganized hair cell sensory bundles. CONCLUSIONS: The simultaneous presence of homozygous mutant alleles of cadherin 23 and protocadherin 15 results only in deafness, not retinal degeneration or any other additional obvious phenotype of the major organ systems. We conclude that in the mouse cadherin 23 or protocadherin 15 appear not to compensate for one another to maintain the retina. Molecular Vision 2008-12-08 /pmc/articles/PMC2593751/ /pubmed/19057657 Text en http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Ahmed, Zubair M.
Kjellstrom, Sten
Haywood-Watson, Ricky J. L.
Bush, Ronald A.
Hampton, Lori L.
Battey, James F.
Riazuddin, Saima
Frolenkov, Gregory
Sieving, Paul A.
Friedman, Thomas B.
Double homozygous waltzer and Ames waltzer mice provide no evidence of retinal degeneration
title Double homozygous waltzer and Ames waltzer mice provide no evidence of retinal degeneration
title_full Double homozygous waltzer and Ames waltzer mice provide no evidence of retinal degeneration
title_fullStr Double homozygous waltzer and Ames waltzer mice provide no evidence of retinal degeneration
title_full_unstemmed Double homozygous waltzer and Ames waltzer mice provide no evidence of retinal degeneration
title_short Double homozygous waltzer and Ames waltzer mice provide no evidence of retinal degeneration
title_sort double homozygous waltzer and ames waltzer mice provide no evidence of retinal degeneration
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2593751/
https://www.ncbi.nlm.nih.gov/pubmed/19057657
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