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A Novel Mouse Dscam Mutation Inhibits Localization and Shedding of DSCAM

The differential adhesion hypothesis of development states that patterning of organisms, organs and tissues is mediated in large part by expression of cell adhesion molecules. The cues provided by cell adhesion molecules are also hypothesized to facilitate specific connectivity within the nervous sy...

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Autores principales: Schramm, R. Dee, Li, Shuai, Harris, Belinda S., Rounds, Ryan P., Burgess, Robert W., Ytreberg, F. Marty, Fuerst, Peter G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3530462/
https://www.ncbi.nlm.nih.gov/pubmed/23300735
http://dx.doi.org/10.1371/journal.pone.0052652
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author Schramm, R. Dee
Li, Shuai
Harris, Belinda S.
Rounds, Ryan P.
Burgess, Robert W.
Ytreberg, F. Marty
Fuerst, Peter G.
author_facet Schramm, R. Dee
Li, Shuai
Harris, Belinda S.
Rounds, Ryan P.
Burgess, Robert W.
Ytreberg, F. Marty
Fuerst, Peter G.
author_sort Schramm, R. Dee
collection PubMed
description The differential adhesion hypothesis of development states that patterning of organisms, organs and tissues is mediated in large part by expression of cell adhesion molecules. The cues provided by cell adhesion molecules are also hypothesized to facilitate specific connectivity within the nervous system. In this study we characterize a novel mouse mutation in the gene Dscam (Down Syndrome Cell Adhesion Molecule). Vertebrate DSCAM is required for normal development of the central nervous system and has been best characterized in the visual system. In the visual system DSCAM is required for regulation of cell number, mosaic formation, laminar specificity, and refinement of retinal-tectal projections. We have identified a novel mutation in Dscam that results in a single amino acid substitution, R1018P, in the extracellular domain of the DSCAM protein. Mice homozygous for the R1018P mutation develop a subset of defects observed in Dscam null mice. In vitro analysis identified defects in DSCAM(R1018P) localization to filopodia. We also find that wild type DSCAM protein is constitutively cleaved and shed from transfected cells. This secretion is inhibited by the R1018P mutation. We also characterized a novel splice isoform of Dscam and identified defects in lamination of type 2 and type 6 cone bipolar cells in Dscam mutant mice. The identification and characterization of partial loss of function mutations in genes such as Dscam will be helpful in predicting signs and symptoms that may be observed in human patients with partial loss of DSCAM function.
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spelling pubmed-35304622013-01-08 A Novel Mouse Dscam Mutation Inhibits Localization and Shedding of DSCAM Schramm, R. Dee Li, Shuai Harris, Belinda S. Rounds, Ryan P. Burgess, Robert W. Ytreberg, F. Marty Fuerst, Peter G. PLoS One Research Article The differential adhesion hypothesis of development states that patterning of organisms, organs and tissues is mediated in large part by expression of cell adhesion molecules. The cues provided by cell adhesion molecules are also hypothesized to facilitate specific connectivity within the nervous system. In this study we characterize a novel mouse mutation in the gene Dscam (Down Syndrome Cell Adhesion Molecule). Vertebrate DSCAM is required for normal development of the central nervous system and has been best characterized in the visual system. In the visual system DSCAM is required for regulation of cell number, mosaic formation, laminar specificity, and refinement of retinal-tectal projections. We have identified a novel mutation in Dscam that results in a single amino acid substitution, R1018P, in the extracellular domain of the DSCAM protein. Mice homozygous for the R1018P mutation develop a subset of defects observed in Dscam null mice. In vitro analysis identified defects in DSCAM(R1018P) localization to filopodia. We also find that wild type DSCAM protein is constitutively cleaved and shed from transfected cells. This secretion is inhibited by the R1018P mutation. We also characterized a novel splice isoform of Dscam and identified defects in lamination of type 2 and type 6 cone bipolar cells in Dscam mutant mice. The identification and characterization of partial loss of function mutations in genes such as Dscam will be helpful in predicting signs and symptoms that may be observed in human patients with partial loss of DSCAM function. Public Library of Science 2012-12-26 /pmc/articles/PMC3530462/ /pubmed/23300735 http://dx.doi.org/10.1371/journal.pone.0052652 Text en © 2012 Schramm 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Schramm, R. Dee
Li, Shuai
Harris, Belinda S.
Rounds, Ryan P.
Burgess, Robert W.
Ytreberg, F. Marty
Fuerst, Peter G.
A Novel Mouse Dscam Mutation Inhibits Localization and Shedding of DSCAM
title A Novel Mouse Dscam Mutation Inhibits Localization and Shedding of DSCAM
title_full A Novel Mouse Dscam Mutation Inhibits Localization and Shedding of DSCAM
title_fullStr A Novel Mouse Dscam Mutation Inhibits Localization and Shedding of DSCAM
title_full_unstemmed A Novel Mouse Dscam Mutation Inhibits Localization and Shedding of DSCAM
title_short A Novel Mouse Dscam Mutation Inhibits Localization and Shedding of DSCAM
title_sort novel mouse dscam mutation inhibits localization and shedding of dscam
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3530462/
https://www.ncbi.nlm.nih.gov/pubmed/23300735
http://dx.doi.org/10.1371/journal.pone.0052652
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