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The Contribution of Coevolving Residues to the Stability of KDO8P Synthase

BACKGROUND: The evolutionary tree of 3-deoxy-D-manno-octulosonate 8-phosphate (KDO8P) synthase (KDO8PS), a bacterial enzyme that catalyzes a key step in the biosynthesis of bacterial endotoxin, is evenly divided between metal and non-metal forms, both having similar structures, but diverging in vari...

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Autores principales: Ackerman, Sharon H., Gatti, Domenico L.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3052366/
https://www.ncbi.nlm.nih.gov/pubmed/21408011
http://dx.doi.org/10.1371/journal.pone.0017459
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author Ackerman, Sharon H.
Gatti, Domenico L.
author_facet Ackerman, Sharon H.
Gatti, Domenico L.
author_sort Ackerman, Sharon H.
collection PubMed
description BACKGROUND: The evolutionary tree of 3-deoxy-D-manno-octulosonate 8-phosphate (KDO8P) synthase (KDO8PS), a bacterial enzyme that catalyzes a key step in the biosynthesis of bacterial endotoxin, is evenly divided between metal and non-metal forms, both having similar structures, but diverging in various degrees in amino acid sequence. Mutagenesis, crystallographic and computational studies have established that only a few residues determine whether or not KDO8PS requires a metal for function. The remaining divergence in the amino acid sequence of KDO8PSs is apparently unrelated to the underlying catalytic mechanism. METHODOLOGY/PRINCIPAL FINDINGS: The multiple alignment of all known KDO8PS sequences reveals that several residue pairs coevolved, an indication of their possible linkage to a structural constraint. In this study we investigated by computational means the contribution of coevolving residues to the stability of KDO8PS. We found that about 1/4 of all strongly coevolving pairs probably originated from cycles of mutation (decreasing stability) and suppression (restoring it), while the remaining pairs are best explained by a succession of neutral or nearly neutral covarions. CONCLUSIONS/SIGNIFICANCE: Both sequence conservation and coevolution are involved in the preservation of the core structure of KDO8PS, but the contribution of coevolving residues is, in proportion, smaller. This is because small stability gains or losses associated with selection of certain residues in some regions of the stability landscape of KDO8PS are easily offset by a large number of possible changes in other regions. While this effect increases the tolerance of KDO8PS to deleterious mutations, it also decreases the probability that specific pairs of residues could have a strong contribution to the thermodynamic stability of the protein.
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spelling pubmed-30523662011-03-15 The Contribution of Coevolving Residues to the Stability of KDO8P Synthase Ackerman, Sharon H. Gatti, Domenico L. PLoS One Research Article BACKGROUND: The evolutionary tree of 3-deoxy-D-manno-octulosonate 8-phosphate (KDO8P) synthase (KDO8PS), a bacterial enzyme that catalyzes a key step in the biosynthesis of bacterial endotoxin, is evenly divided between metal and non-metal forms, both having similar structures, but diverging in various degrees in amino acid sequence. Mutagenesis, crystallographic and computational studies have established that only a few residues determine whether or not KDO8PS requires a metal for function. The remaining divergence in the amino acid sequence of KDO8PSs is apparently unrelated to the underlying catalytic mechanism. METHODOLOGY/PRINCIPAL FINDINGS: The multiple alignment of all known KDO8PS sequences reveals that several residue pairs coevolved, an indication of their possible linkage to a structural constraint. In this study we investigated by computational means the contribution of coevolving residues to the stability of KDO8PS. We found that about 1/4 of all strongly coevolving pairs probably originated from cycles of mutation (decreasing stability) and suppression (restoring it), while the remaining pairs are best explained by a succession of neutral or nearly neutral covarions. CONCLUSIONS/SIGNIFICANCE: Both sequence conservation and coevolution are involved in the preservation of the core structure of KDO8PS, but the contribution of coevolving residues is, in proportion, smaller. This is because small stability gains or losses associated with selection of certain residues in some regions of the stability landscape of KDO8PS are easily offset by a large number of possible changes in other regions. While this effect increases the tolerance of KDO8PS to deleterious mutations, it also decreases the probability that specific pairs of residues could have a strong contribution to the thermodynamic stability of the protein. Public Library of Science 2011-03-09 /pmc/articles/PMC3052366/ /pubmed/21408011 http://dx.doi.org/10.1371/journal.pone.0017459 Text en Ackerman, Gatti. 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
Ackerman, Sharon H.
Gatti, Domenico L.
The Contribution of Coevolving Residues to the Stability of KDO8P Synthase
title The Contribution of Coevolving Residues to the Stability of KDO8P Synthase
title_full The Contribution of Coevolving Residues to the Stability of KDO8P Synthase
title_fullStr The Contribution of Coevolving Residues to the Stability of KDO8P Synthase
title_full_unstemmed The Contribution of Coevolving Residues to the Stability of KDO8P Synthase
title_short The Contribution of Coevolving Residues to the Stability of KDO8P Synthase
title_sort contribution of coevolving residues to the stability of kdo8p synthase
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3052366/
https://www.ncbi.nlm.nih.gov/pubmed/21408011
http://dx.doi.org/10.1371/journal.pone.0017459
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