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Segment-Specific Neuronal Subtype Specification by the Integration of Anteroposterior and Temporal Cues

The generation of distinct neuronal subtypes at different axial levels relies upon both anteroposterior and temporal cues. However, the integration between these cues is poorly understood. In the Drosophila central nervous system, the segmentally repeated neuroblast 5–6 generates a unique group of n...

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Autores principales: Karlsson, Daniel, Baumgardt, Magnus, Thor, Stefan
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2867937/
https://www.ncbi.nlm.nih.gov/pubmed/20485487
http://dx.doi.org/10.1371/journal.pbio.1000368
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author Karlsson, Daniel
Baumgardt, Magnus
Thor, Stefan
author_facet Karlsson, Daniel
Baumgardt, Magnus
Thor, Stefan
author_sort Karlsson, Daniel
collection PubMed
description The generation of distinct neuronal subtypes at different axial levels relies upon both anteroposterior and temporal cues. However, the integration between these cues is poorly understood. In the Drosophila central nervous system, the segmentally repeated neuroblast 5–6 generates a unique group of neurons, the Apterous (Ap) cluster, only in thoracic segments. Recent studies have identified elaborate genetic pathways acting to control the generation of these neurons. These insights, combined with novel markers, provide a unique opportunity for addressing how anteroposterior and temporal cues are integrated to generate segment-specific neuronal subtypes. We find that Pbx/Meis, Hox, and temporal genes act in three different ways. Posteriorly, Pbx/Meis and posterior Hox genes block lineage progression within an early temporal window, by triggering cell cycle exit. Because Ap neurons are generated late in the thoracic 5–6 lineage, this prevents generation of Ap cluster cells in the abdomen. Thoracically, Pbx/Meis and anterior Hox genes integrate with late temporal genes to specify Ap clusters, via activation of a specific feed-forward loop. In brain segments, “Ap cluster cells” are present but lack both proper Hox and temporal coding. Only by simultaneously altering Hox and temporal gene activity in all segments can Ap clusters be generated throughout the neuroaxis. This study provides the first detailed analysis, to our knowledge, of an identified neuroblast lineage along the entire neuroaxis, and confirms the concept that lineal homologs of truncal neuroblasts exist throughout the developing brain. We furthermore provide the first insight into how Hox/Pbx/Meis anteroposterior and temporal cues are integrated within a defined lineage, to specify unique neuronal identities only in thoracic segments. This study reveals a surprisingly restricted, yet multifaceted, function of both anteroposterior and temporal cues with respect to lineage control and cell fate specification.
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spelling pubmed-28679372010-05-19 Segment-Specific Neuronal Subtype Specification by the Integration of Anteroposterior and Temporal Cues Karlsson, Daniel Baumgardt, Magnus Thor, Stefan PLoS Biol Research Article The generation of distinct neuronal subtypes at different axial levels relies upon both anteroposterior and temporal cues. However, the integration between these cues is poorly understood. In the Drosophila central nervous system, the segmentally repeated neuroblast 5–6 generates a unique group of neurons, the Apterous (Ap) cluster, only in thoracic segments. Recent studies have identified elaborate genetic pathways acting to control the generation of these neurons. These insights, combined with novel markers, provide a unique opportunity for addressing how anteroposterior and temporal cues are integrated to generate segment-specific neuronal subtypes. We find that Pbx/Meis, Hox, and temporal genes act in three different ways. Posteriorly, Pbx/Meis and posterior Hox genes block lineage progression within an early temporal window, by triggering cell cycle exit. Because Ap neurons are generated late in the thoracic 5–6 lineage, this prevents generation of Ap cluster cells in the abdomen. Thoracically, Pbx/Meis and anterior Hox genes integrate with late temporal genes to specify Ap clusters, via activation of a specific feed-forward loop. In brain segments, “Ap cluster cells” are present but lack both proper Hox and temporal coding. Only by simultaneously altering Hox and temporal gene activity in all segments can Ap clusters be generated throughout the neuroaxis. This study provides the first detailed analysis, to our knowledge, of an identified neuroblast lineage along the entire neuroaxis, and confirms the concept that lineal homologs of truncal neuroblasts exist throughout the developing brain. We furthermore provide the first insight into how Hox/Pbx/Meis anteroposterior and temporal cues are integrated within a defined lineage, to specify unique neuronal identities only in thoracic segments. This study reveals a surprisingly restricted, yet multifaceted, function of both anteroposterior and temporal cues with respect to lineage control and cell fate specification. Public Library of Science 2010-05-11 /pmc/articles/PMC2867937/ /pubmed/20485487 http://dx.doi.org/10.1371/journal.pbio.1000368 Text en Karlsson 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
Karlsson, Daniel
Baumgardt, Magnus
Thor, Stefan
Segment-Specific Neuronal Subtype Specification by the Integration of Anteroposterior and Temporal Cues
title Segment-Specific Neuronal Subtype Specification by the Integration of Anteroposterior and Temporal Cues
title_full Segment-Specific Neuronal Subtype Specification by the Integration of Anteroposterior and Temporal Cues
title_fullStr Segment-Specific Neuronal Subtype Specification by the Integration of Anteroposterior and Temporal Cues
title_full_unstemmed Segment-Specific Neuronal Subtype Specification by the Integration of Anteroposterior and Temporal Cues
title_short Segment-Specific Neuronal Subtype Specification by the Integration of Anteroposterior and Temporal Cues
title_sort segment-specific neuronal subtype specification by the integration of anteroposterior and temporal cues
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2867937/
https://www.ncbi.nlm.nih.gov/pubmed/20485487
http://dx.doi.org/10.1371/journal.pbio.1000368
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