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Differences Between the Raw Material and the Products of de Novo Gene Birth Can Result from Mutational Biases

Proteins are among the most important constituents of biological systems. Because all protein-coding genes have a noncoding ancestral form, the properties of noncoding sequences and how they shape the birth of novel proteins may influence the structure and function of all proteins. Differences betwe...

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Detalles Bibliográficos
Autores principales: Nielly-Thibault, Lou, Landry, Christian R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Genetics Society of America 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6707459/
https://www.ncbi.nlm.nih.gov/pubmed/31227545
http://dx.doi.org/10.1534/genetics.119.302187
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author Nielly-Thibault, Lou
Landry, Christian R.
author_facet Nielly-Thibault, Lou
Landry, Christian R.
author_sort Nielly-Thibault, Lou
collection PubMed
description Proteins are among the most important constituents of biological systems. Because all protein-coding genes have a noncoding ancestral form, the properties of noncoding sequences and how they shape the birth of novel proteins may influence the structure and function of all proteins. Differences between the properties of young proteins and random expectations from noncoding sequences have previously been interpreted as the result of natural selection. However, interpreting such deviations requires a yet-unattained understanding of the raw material of de novo gene birth and its relation to novel functional proteins. We mathematically show that the average properties and selective filtering of the “junk” polypeptides of which this raw material is composed are not the only factors influencing the properties of novel functional proteins. We find that in some biological scenarios, they also depend on the variance of the properties of junk polypeptides and their correlation with the rate of allelic turnover, which may itself depend on mutational biases. This suggests for instance that any property of polypeptides that accelerates their exploration of the sequence space could be overrepresented in novel functional proteins, even if it has a limited effect on adaptive value. To exemplify the use of our general theoretical results, we build a simple model that predicts the mean length and mean intrinsic disorder of novel functional proteins from the genomic GC content and a single evolutionary parameter. This work provides a theoretical framework that can guide the prediction and interpretation of results when studying the de novo emergence of protein-coding genes.
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spelling pubmed-67074592019-09-05 Differences Between the Raw Material and the Products of de Novo Gene Birth Can Result from Mutational Biases Nielly-Thibault, Lou Landry, Christian R. Genetics Investigations Proteins are among the most important constituents of biological systems. Because all protein-coding genes have a noncoding ancestral form, the properties of noncoding sequences and how they shape the birth of novel proteins may influence the structure and function of all proteins. Differences between the properties of young proteins and random expectations from noncoding sequences have previously been interpreted as the result of natural selection. However, interpreting such deviations requires a yet-unattained understanding of the raw material of de novo gene birth and its relation to novel functional proteins. We mathematically show that the average properties and selective filtering of the “junk” polypeptides of which this raw material is composed are not the only factors influencing the properties of novel functional proteins. We find that in some biological scenarios, they also depend on the variance of the properties of junk polypeptides and their correlation with the rate of allelic turnover, which may itself depend on mutational biases. This suggests for instance that any property of polypeptides that accelerates their exploration of the sequence space could be overrepresented in novel functional proteins, even if it has a limited effect on adaptive value. To exemplify the use of our general theoretical results, we build a simple model that predicts the mean length and mean intrinsic disorder of novel functional proteins from the genomic GC content and a single evolutionary parameter. This work provides a theoretical framework that can guide the prediction and interpretation of results when studying the de novo emergence of protein-coding genes. Genetics Society of America 2019-08 2019-06-21 /pmc/articles/PMC6707459/ /pubmed/31227545 http://dx.doi.org/10.1534/genetics.119.302187 Text en Copyright © 2019 by the Genetics Society of America Available freely online through the author-supported open access option.
spellingShingle Investigations
Nielly-Thibault, Lou
Landry, Christian R.
Differences Between the Raw Material and the Products of de Novo Gene Birth Can Result from Mutational Biases
title Differences Between the Raw Material and the Products of de Novo Gene Birth Can Result from Mutational Biases
title_full Differences Between the Raw Material and the Products of de Novo Gene Birth Can Result from Mutational Biases
title_fullStr Differences Between the Raw Material and the Products of de Novo Gene Birth Can Result from Mutational Biases
title_full_unstemmed Differences Between the Raw Material and the Products of de Novo Gene Birth Can Result from Mutational Biases
title_short Differences Between the Raw Material and the Products of de Novo Gene Birth Can Result from Mutational Biases
title_sort differences between the raw material and the products of de novo gene birth can result from mutational biases
topic Investigations
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6707459/
https://www.ncbi.nlm.nih.gov/pubmed/31227545
http://dx.doi.org/10.1534/genetics.119.302187
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