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Insights into Hox Protein Function from a Large Scale Combinatorial Analysis of Protein Domains

Protein function is encoded within protein sequence and protein domains. However, how protein domains cooperate within a protein to modulate overall activity and how this impacts functional diversification at the molecular and organism levels remains largely unaddressed. Focusing on three domains of...

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Autores principales: Merabet, Samir, Litim-Mecheri, Isma, Karlsson, Daniel, Dixit, Richa, Saadaoui, Mehdi, Monier, Bruno, Brun, Christine, Thor, Stefan, Vijayraghavan, K., Perrin, Laurent, Pradel, Jacques, Graba, Yacine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3203194/
https://www.ncbi.nlm.nih.gov/pubmed/22046139
http://dx.doi.org/10.1371/journal.pgen.1002302
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author Merabet, Samir
Litim-Mecheri, Isma
Karlsson, Daniel
Dixit, Richa
Saadaoui, Mehdi
Monier, Bruno
Brun, Christine
Thor, Stefan
Vijayraghavan, K.
Perrin, Laurent
Pradel, Jacques
Graba, Yacine
author_facet Merabet, Samir
Litim-Mecheri, Isma
Karlsson, Daniel
Dixit, Richa
Saadaoui, Mehdi
Monier, Bruno
Brun, Christine
Thor, Stefan
Vijayraghavan, K.
Perrin, Laurent
Pradel, Jacques
Graba, Yacine
author_sort Merabet, Samir
collection PubMed
description Protein function is encoded within protein sequence and protein domains. However, how protein domains cooperate within a protein to modulate overall activity and how this impacts functional diversification at the molecular and organism levels remains largely unaddressed. Focusing on three domains of the central class Drosophila Hox transcription factor AbdominalA (AbdA), we used combinatorial domain mutations and most known AbdA developmental functions as biological readouts to investigate how protein domains collectively shape protein activity. The results uncover redundancy, interactivity, and multifunctionality of protein domains as salient features underlying overall AbdA protein activity, providing means to apprehend functional diversity and accounting for the robustness of Hox-controlled developmental programs. Importantly, the results highlight context-dependency in protein domain usage and interaction, allowing major modifications in domains to be tolerated without general functional loss. The non-pleoitropic effect of domain mutation suggests that protein modification may contribute more broadly to molecular changes underlying morphological diversification during evolution, so far thought to rely largely on modification in gene cis-regulatory sequences.
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spelling pubmed-32031942011-11-01 Insights into Hox Protein Function from a Large Scale Combinatorial Analysis of Protein Domains Merabet, Samir Litim-Mecheri, Isma Karlsson, Daniel Dixit, Richa Saadaoui, Mehdi Monier, Bruno Brun, Christine Thor, Stefan Vijayraghavan, K. Perrin, Laurent Pradel, Jacques Graba, Yacine PLoS Genet Research Article Protein function is encoded within protein sequence and protein domains. However, how protein domains cooperate within a protein to modulate overall activity and how this impacts functional diversification at the molecular and organism levels remains largely unaddressed. Focusing on three domains of the central class Drosophila Hox transcription factor AbdominalA (AbdA), we used combinatorial domain mutations and most known AbdA developmental functions as biological readouts to investigate how protein domains collectively shape protein activity. The results uncover redundancy, interactivity, and multifunctionality of protein domains as salient features underlying overall AbdA protein activity, providing means to apprehend functional diversity and accounting for the robustness of Hox-controlled developmental programs. Importantly, the results highlight context-dependency in protein domain usage and interaction, allowing major modifications in domains to be tolerated without general functional loss. The non-pleoitropic effect of domain mutation suggests that protein modification may contribute more broadly to molecular changes underlying morphological diversification during evolution, so far thought to rely largely on modification in gene cis-regulatory sequences. Public Library of Science 2011-10-27 /pmc/articles/PMC3203194/ /pubmed/22046139 http://dx.doi.org/10.1371/journal.pgen.1002302 Text en Merabet 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
Merabet, Samir
Litim-Mecheri, Isma
Karlsson, Daniel
Dixit, Richa
Saadaoui, Mehdi
Monier, Bruno
Brun, Christine
Thor, Stefan
Vijayraghavan, K.
Perrin, Laurent
Pradel, Jacques
Graba, Yacine
Insights into Hox Protein Function from a Large Scale Combinatorial Analysis of Protein Domains
title Insights into Hox Protein Function from a Large Scale Combinatorial Analysis of Protein Domains
title_full Insights into Hox Protein Function from a Large Scale Combinatorial Analysis of Protein Domains
title_fullStr Insights into Hox Protein Function from a Large Scale Combinatorial Analysis of Protein Domains
title_full_unstemmed Insights into Hox Protein Function from a Large Scale Combinatorial Analysis of Protein Domains
title_short Insights into Hox Protein Function from a Large Scale Combinatorial Analysis of Protein Domains
title_sort insights into hox protein function from a large scale combinatorial analysis of protein domains
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3203194/
https://www.ncbi.nlm.nih.gov/pubmed/22046139
http://dx.doi.org/10.1371/journal.pgen.1002302
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