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The mlpt/Ubr3/Svb module comprises an ancient developmental switch for embryonic patterning

Small open reading frames (smORFs) encoding ‘micropeptides’ exhibit remarkable evolutionary complexity. Conserved peptides encoded by mille-pattes (mlpt)/polished rice (pri)/tarsal less (tal) are essential for embryo segmentation in Tribolium but, in Drosophila, function in terminal epidermal differ...

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Autores principales: Ray, Suparna, Rosenberg, Miriam I, Chanut-Delalande, Hélène, Decaras, Amélie, Schwertner, Barbara, Toubiana, William, Auman, Tzach, Schnellhammer, Irene, Teuscher, Matthias, Valenti, Philippe, Khila, Abderrahman, Klingler, Martin, Payre, François
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6428570/
https://www.ncbi.nlm.nih.gov/pubmed/30896406
http://dx.doi.org/10.7554/eLife.39748
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author Ray, Suparna
Rosenberg, Miriam I
Chanut-Delalande, Hélène
Decaras, Amélie
Schwertner, Barbara
Toubiana, William
Auman, Tzach
Schnellhammer, Irene
Teuscher, Matthias
Valenti, Philippe
Khila, Abderrahman
Klingler, Martin
Payre, François
author_facet Ray, Suparna
Rosenberg, Miriam I
Chanut-Delalande, Hélène
Decaras, Amélie
Schwertner, Barbara
Toubiana, William
Auman, Tzach
Schnellhammer, Irene
Teuscher, Matthias
Valenti, Philippe
Khila, Abderrahman
Klingler, Martin
Payre, François
author_sort Ray, Suparna
collection PubMed
description Small open reading frames (smORFs) encoding ‘micropeptides’ exhibit remarkable evolutionary complexity. Conserved peptides encoded by mille-pattes (mlpt)/polished rice (pri)/tarsal less (tal) are essential for embryo segmentation in Tribolium but, in Drosophila, function in terminal epidermal differentiation and patterning of adult legs. Here, we show that a molecular complex identified in Drosophila epidermal differentiation, comprising Mlpt peptides, ubiquitin-ligase Ubr3 and transcription factor Shavenbaby (Svb), represents an ancient developmental module required for early insect embryo patterning. We find that loss of segmentation function for this module in flies evolved concomitantly with restriction of Svb expression in early Drosophila embryos. Consistent with this observation, artificially restoring early Svb expression in flies causes segmentation defects that depend on mlpt function, demonstrating enduring potency of an ancestral developmental switch despite evolving embryonic patterning modes. These results highlight the evolutionary plasticity of conserved molecular complexes under the constraints of essential genetic networks. Editorial note: This article has been through an editorial process in which the authors decide how to respond to the issues raised during peer review. The Reviewing Editor's assessment is that all the issues have been addressed (see decision letter).
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spelling pubmed-64285702019-03-25 The mlpt/Ubr3/Svb module comprises an ancient developmental switch for embryonic patterning Ray, Suparna Rosenberg, Miriam I Chanut-Delalande, Hélène Decaras, Amélie Schwertner, Barbara Toubiana, William Auman, Tzach Schnellhammer, Irene Teuscher, Matthias Valenti, Philippe Khila, Abderrahman Klingler, Martin Payre, François eLife Developmental Biology Small open reading frames (smORFs) encoding ‘micropeptides’ exhibit remarkable evolutionary complexity. Conserved peptides encoded by mille-pattes (mlpt)/polished rice (pri)/tarsal less (tal) are essential for embryo segmentation in Tribolium but, in Drosophila, function in terminal epidermal differentiation and patterning of adult legs. Here, we show that a molecular complex identified in Drosophila epidermal differentiation, comprising Mlpt peptides, ubiquitin-ligase Ubr3 and transcription factor Shavenbaby (Svb), represents an ancient developmental module required for early insect embryo patterning. We find that loss of segmentation function for this module in flies evolved concomitantly with restriction of Svb expression in early Drosophila embryos. Consistent with this observation, artificially restoring early Svb expression in flies causes segmentation defects that depend on mlpt function, demonstrating enduring potency of an ancestral developmental switch despite evolving embryonic patterning modes. These results highlight the evolutionary plasticity of conserved molecular complexes under the constraints of essential genetic networks. Editorial note: This article has been through an editorial process in which the authors decide how to respond to the issues raised during peer review. The Reviewing Editor's assessment is that all the issues have been addressed (see decision letter). eLife Sciences Publications, Ltd 2019-03-21 /pmc/articles/PMC6428570/ /pubmed/30896406 http://dx.doi.org/10.7554/eLife.39748 Text en © 2019, Ray et al http://creativecommons.org/licenses/by/4.0/ http://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Developmental Biology
Ray, Suparna
Rosenberg, Miriam I
Chanut-Delalande, Hélène
Decaras, Amélie
Schwertner, Barbara
Toubiana, William
Auman, Tzach
Schnellhammer, Irene
Teuscher, Matthias
Valenti, Philippe
Khila, Abderrahman
Klingler, Martin
Payre, François
The mlpt/Ubr3/Svb module comprises an ancient developmental switch for embryonic patterning
title The mlpt/Ubr3/Svb module comprises an ancient developmental switch for embryonic patterning
title_full The mlpt/Ubr3/Svb module comprises an ancient developmental switch for embryonic patterning
title_fullStr The mlpt/Ubr3/Svb module comprises an ancient developmental switch for embryonic patterning
title_full_unstemmed The mlpt/Ubr3/Svb module comprises an ancient developmental switch for embryonic patterning
title_short The mlpt/Ubr3/Svb module comprises an ancient developmental switch for embryonic patterning
title_sort mlpt/ubr3/svb module comprises an ancient developmental switch for embryonic patterning
topic Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6428570/
https://www.ncbi.nlm.nih.gov/pubmed/30896406
http://dx.doi.org/10.7554/eLife.39748
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