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Genetically-Directed, Cell Type-Specific Sparse Labeling for the Analysis of Neuronal Morphology

BACKGROUND: In mammals, genetically-directed cell labeling technologies have not yet been applied to the morphologic analysis of neurons with very large and complex arbors, an application that requires extremely sparse labeling and that is only rendered practical by limiting the labeled population t...

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Autores principales: Rotolo, Thomas, Smallwood, Philip M., Williams, John, Nathans, Jeremy
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2605552/
https://www.ncbi.nlm.nih.gov/pubmed/19116659
http://dx.doi.org/10.1371/journal.pone.0004099
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author Rotolo, Thomas
Smallwood, Philip M.
Williams, John
Nathans, Jeremy
author_facet Rotolo, Thomas
Smallwood, Philip M.
Williams, John
Nathans, Jeremy
author_sort Rotolo, Thomas
collection PubMed
description BACKGROUND: In mammals, genetically-directed cell labeling technologies have not yet been applied to the morphologic analysis of neurons with very large and complex arbors, an application that requires extremely sparse labeling and that is only rendered practical by limiting the labeled population to one or a few predetermined neuronal subtypes. METHODS AND FINDINGS: In the present study we have addressed this application by using CreER technology to non-invasively label very small numbers of neurons so that their morphologies can be fully visualized. Four lines of IRES-CreER knock-in mice were constructed to permit labeling selectively in cholinergic or catecholaminergic neurons [choline acetyltransferase (ChAT)-IRES-CreER or tyrosine hydroxylase (TH)-IRES-CreER], predominantly in projection neurons [neurofilament light chain (NFL)-IRES-CreER], or broadly in neurons and some glia [vesicle-associated membrane protein2 (VAMP2)-IRES-CreER]. When crossed to the Z/AP reporter and exposed to 4-hydroxytamoxifen in the early postnatal period, the number of neurons expressing the human placental alkaline phosphatase reporter can be reproducibly lowered to fewer than 50 per brain. Sparse Cre-mediated recombination in ChAT-IRES-CreER;Z/AP mice shows the full axonal and dendritic arbors of individual forebrain cholinergic neurons, the first time that the complete morphologies of these very large neurons have been revealed in any species. CONCLUSIONS: Sparse genetically-directed, cell type-specific neuronal labeling with IRES-creER lines should prove useful for studying a wide variety of questions in neuronal development and disease.
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spelling pubmed-26055522008-12-31 Genetically-Directed, Cell Type-Specific Sparse Labeling for the Analysis of Neuronal Morphology Rotolo, Thomas Smallwood, Philip M. Williams, John Nathans, Jeremy PLoS One Research Article BACKGROUND: In mammals, genetically-directed cell labeling technologies have not yet been applied to the morphologic analysis of neurons with very large and complex arbors, an application that requires extremely sparse labeling and that is only rendered practical by limiting the labeled population to one or a few predetermined neuronal subtypes. METHODS AND FINDINGS: In the present study we have addressed this application by using CreER technology to non-invasively label very small numbers of neurons so that their morphologies can be fully visualized. Four lines of IRES-CreER knock-in mice were constructed to permit labeling selectively in cholinergic or catecholaminergic neurons [choline acetyltransferase (ChAT)-IRES-CreER or tyrosine hydroxylase (TH)-IRES-CreER], predominantly in projection neurons [neurofilament light chain (NFL)-IRES-CreER], or broadly in neurons and some glia [vesicle-associated membrane protein2 (VAMP2)-IRES-CreER]. When crossed to the Z/AP reporter and exposed to 4-hydroxytamoxifen in the early postnatal period, the number of neurons expressing the human placental alkaline phosphatase reporter can be reproducibly lowered to fewer than 50 per brain. Sparse Cre-mediated recombination in ChAT-IRES-CreER;Z/AP mice shows the full axonal and dendritic arbors of individual forebrain cholinergic neurons, the first time that the complete morphologies of these very large neurons have been revealed in any species. CONCLUSIONS: Sparse genetically-directed, cell type-specific neuronal labeling with IRES-creER lines should prove useful for studying a wide variety of questions in neuronal development and disease. Public Library of Science 2008-12-31 /pmc/articles/PMC2605552/ /pubmed/19116659 http://dx.doi.org/10.1371/journal.pone.0004099 Text en This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Rotolo, Thomas
Smallwood, Philip M.
Williams, John
Nathans, Jeremy
Genetically-Directed, Cell Type-Specific Sparse Labeling for the Analysis of Neuronal Morphology
title Genetically-Directed, Cell Type-Specific Sparse Labeling for the Analysis of Neuronal Morphology
title_full Genetically-Directed, Cell Type-Specific Sparse Labeling for the Analysis of Neuronal Morphology
title_fullStr Genetically-Directed, Cell Type-Specific Sparse Labeling for the Analysis of Neuronal Morphology
title_full_unstemmed Genetically-Directed, Cell Type-Specific Sparse Labeling for the Analysis of Neuronal Morphology
title_short Genetically-Directed, Cell Type-Specific Sparse Labeling for the Analysis of Neuronal Morphology
title_sort genetically-directed, cell type-specific sparse labeling for the analysis of neuronal morphology
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2605552/
https://www.ncbi.nlm.nih.gov/pubmed/19116659
http://dx.doi.org/10.1371/journal.pone.0004099
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