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CCA-addition in the cold: Structural characterization of the psychrophilic CCA-adding enzyme from the permafrost bacterium Planococcus halocryophilus

CCA-adding enzymes are highly specific RNA polymerases that add and maintain the sequence C-C-A at tRNA 3‘-ends. Recently, we could reveal that cold adaptation of such a polymerase is not only achieved at the expense of enzyme stability, but also at the cost of polymerization fidelity. Enzymes from...

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Autores principales: de Wijn, Raphaël, Rollet, Kévin, Ernst, Felix G.M., Wellner, Karolin, Betat, Heike, Mörl, Mario, Sauter, Claude
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Research Network of Computational and Structural Biotechnology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8563995/
https://www.ncbi.nlm.nih.gov/pubmed/34765099
http://dx.doi.org/10.1016/j.csbj.2021.10.018
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author de Wijn, Raphaël
Rollet, Kévin
Ernst, Felix G.M.
Wellner, Karolin
Betat, Heike
Mörl, Mario
Sauter, Claude
author_facet de Wijn, Raphaël
Rollet, Kévin
Ernst, Felix G.M.
Wellner, Karolin
Betat, Heike
Mörl, Mario
Sauter, Claude
author_sort de Wijn, Raphaël
collection PubMed
description CCA-adding enzymes are highly specific RNA polymerases that add and maintain the sequence C-C-A at tRNA 3‘-ends. Recently, we could reveal that cold adaptation of such a polymerase is not only achieved at the expense of enzyme stability, but also at the cost of polymerization fidelity. Enzymes from psychrophilic organisms usually show an increased structural flexibility to enable catalysis at low temperatures. Here, polymerases face a dilemma, as there is a discrepancy between the need for a tightly controlled flexibility during polymerization and an increased flexibility as strategy for cold adaptation. Based on structural and biochemical analyses, we contribute to clarify the cold adaptation strategy of the psychrophilic CCA-adding enzyme from Planococcus halocryophilus, a gram-positive bacterium thriving in the arctic permafrost at low temperatures down to −15 °C. A comparison with the closely related enzyme from the thermophilic bacterium Geobacillus stearothermophilus reveals several features of cold adaptation - a significantly reduced amount of alpha-helical elements in the C-terminal tRNA-binding region and a structural adaptation in one of the highly conserved catalytic core motifs located in the N-terminal catalytic core of the enzyme.
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spelling pubmed-85639952021-11-10 CCA-addition in the cold: Structural characterization of the psychrophilic CCA-adding enzyme from the permafrost bacterium Planococcus halocryophilus de Wijn, Raphaël Rollet, Kévin Ernst, Felix G.M. Wellner, Karolin Betat, Heike Mörl, Mario Sauter, Claude Comput Struct Biotechnol J Research Article CCA-adding enzymes are highly specific RNA polymerases that add and maintain the sequence C-C-A at tRNA 3‘-ends. Recently, we could reveal that cold adaptation of such a polymerase is not only achieved at the expense of enzyme stability, but also at the cost of polymerization fidelity. Enzymes from psychrophilic organisms usually show an increased structural flexibility to enable catalysis at low temperatures. Here, polymerases face a dilemma, as there is a discrepancy between the need for a tightly controlled flexibility during polymerization and an increased flexibility as strategy for cold adaptation. Based on structural and biochemical analyses, we contribute to clarify the cold adaptation strategy of the psychrophilic CCA-adding enzyme from Planococcus halocryophilus, a gram-positive bacterium thriving in the arctic permafrost at low temperatures down to −15 °C. A comparison with the closely related enzyme from the thermophilic bacterium Geobacillus stearothermophilus reveals several features of cold adaptation - a significantly reduced amount of alpha-helical elements in the C-terminal tRNA-binding region and a structural adaptation in one of the highly conserved catalytic core motifs located in the N-terminal catalytic core of the enzyme. Research Network of Computational and Structural Biotechnology 2021-10-21 /pmc/articles/PMC8563995/ /pubmed/34765099 http://dx.doi.org/10.1016/j.csbj.2021.10.018 Text en © 2021 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
de Wijn, Raphaël
Rollet, Kévin
Ernst, Felix G.M.
Wellner, Karolin
Betat, Heike
Mörl, Mario
Sauter, Claude
CCA-addition in the cold: Structural characterization of the psychrophilic CCA-adding enzyme from the permafrost bacterium Planococcus halocryophilus
title CCA-addition in the cold: Structural characterization of the psychrophilic CCA-adding enzyme from the permafrost bacterium Planococcus halocryophilus
title_full CCA-addition in the cold: Structural characterization of the psychrophilic CCA-adding enzyme from the permafrost bacterium Planococcus halocryophilus
title_fullStr CCA-addition in the cold: Structural characterization of the psychrophilic CCA-adding enzyme from the permafrost bacterium Planococcus halocryophilus
title_full_unstemmed CCA-addition in the cold: Structural characterization of the psychrophilic CCA-adding enzyme from the permafrost bacterium Planococcus halocryophilus
title_short CCA-addition in the cold: Structural characterization of the psychrophilic CCA-adding enzyme from the permafrost bacterium Planococcus halocryophilus
title_sort cca-addition in the cold: structural characterization of the psychrophilic cca-adding enzyme from the permafrost bacterium planococcus halocryophilus
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8563995/
https://www.ncbi.nlm.nih.gov/pubmed/34765099
http://dx.doi.org/10.1016/j.csbj.2021.10.018
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