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Effect on DNA relaxation of the single Thr718Ala mutation in human topoisomerase I: a functional and molecular dynamics study

The functional and dynamical properties of the human topoisomerase I Thr718Ala mutant have been compared to that of the wild-type enzyme using functional assays and molecular dynamics (MD) simulations. At physiological ionic strength, the cleavage and religation rates, evaluated on oligonucleotides...

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Autores principales: Chillemi, Giovanni, Fiorani, Paola, Castelli, Silvia, Bruselles, Alessandro, Benedetti, Piero, Desideri, Alessandro
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1145191/
https://www.ncbi.nlm.nih.gov/pubmed/15944452
http://dx.doi.org/10.1093/nar/gki642
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author Chillemi, Giovanni
Fiorani, Paola
Castelli, Silvia
Bruselles, Alessandro
Benedetti, Piero
Desideri, Alessandro
author_facet Chillemi, Giovanni
Fiorani, Paola
Castelli, Silvia
Bruselles, Alessandro
Benedetti, Piero
Desideri, Alessandro
author_sort Chillemi, Giovanni
collection PubMed
description The functional and dynamical properties of the human topoisomerase I Thr718Ala mutant have been compared to that of the wild-type enzyme using functional assays and molecular dynamics (MD) simulations. At physiological ionic strength, the cleavage and religation rates, evaluated on oligonucleotides containing the preferred topoisomerase I DNA sequence, are almost identical for the wild-type and the mutated enzymes, as is the cleavage/religation equilibrium. On the other hand, the Thr718Ala mutant shows a decreased efficiency in a DNA plasmid relaxation assay. The MD simulation, carried out on the enzyme complexed with its preferred DNA substrate, indicates that the mutant has a different dynamic behavior compared to the wild-type enzyme. Interestingly, no changes are observed in the proximity of the mutation site, whilst a different flexibility is detected in regions contacting the DNA scissile strand, such as the linker and the V-shaped α helices. Taken together, the functional and simulation results indicate a direct communication between the mutation site and regions located relatively far away, such as the linker domain, that with their altered flexibility confer a reduced DNA relaxation efficiency. These results provide evidence that the comprehension of the topoisomerase I dynamical properties are an important element in the understanding of its complex catalytic cycle.
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spelling pubmed-11451912005-06-09 Effect on DNA relaxation of the single Thr718Ala mutation in human topoisomerase I: a functional and molecular dynamics study Chillemi, Giovanni Fiorani, Paola Castelli, Silvia Bruselles, Alessandro Benedetti, Piero Desideri, Alessandro Nucleic Acids Res Article The functional and dynamical properties of the human topoisomerase I Thr718Ala mutant have been compared to that of the wild-type enzyme using functional assays and molecular dynamics (MD) simulations. At physiological ionic strength, the cleavage and religation rates, evaluated on oligonucleotides containing the preferred topoisomerase I DNA sequence, are almost identical for the wild-type and the mutated enzymes, as is the cleavage/religation equilibrium. On the other hand, the Thr718Ala mutant shows a decreased efficiency in a DNA plasmid relaxation assay. The MD simulation, carried out on the enzyme complexed with its preferred DNA substrate, indicates that the mutant has a different dynamic behavior compared to the wild-type enzyme. Interestingly, no changes are observed in the proximity of the mutation site, whilst a different flexibility is detected in regions contacting the DNA scissile strand, such as the linker and the V-shaped α helices. Taken together, the functional and simulation results indicate a direct communication between the mutation site and regions located relatively far away, such as the linker domain, that with their altered flexibility confer a reduced DNA relaxation efficiency. These results provide evidence that the comprehension of the topoisomerase I dynamical properties are an important element in the understanding of its complex catalytic cycle. Oxford University Press 2005 2005-06-08 /pmc/articles/PMC1145191/ /pubmed/15944452 http://dx.doi.org/10.1093/nar/gki642 Text en © The Author 2005. Published by Oxford University Press. All rights reserved
spellingShingle Article
Chillemi, Giovanni
Fiorani, Paola
Castelli, Silvia
Bruselles, Alessandro
Benedetti, Piero
Desideri, Alessandro
Effect on DNA relaxation of the single Thr718Ala mutation in human topoisomerase I: a functional and molecular dynamics study
title Effect on DNA relaxation of the single Thr718Ala mutation in human topoisomerase I: a functional and molecular dynamics study
title_full Effect on DNA relaxation of the single Thr718Ala mutation in human topoisomerase I: a functional and molecular dynamics study
title_fullStr Effect on DNA relaxation of the single Thr718Ala mutation in human topoisomerase I: a functional and molecular dynamics study
title_full_unstemmed Effect on DNA relaxation of the single Thr718Ala mutation in human topoisomerase I: a functional and molecular dynamics study
title_short Effect on DNA relaxation of the single Thr718Ala mutation in human topoisomerase I: a functional and molecular dynamics study
title_sort effect on dna relaxation of the single thr718ala mutation in human topoisomerase i: a functional and molecular dynamics study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1145191/
https://www.ncbi.nlm.nih.gov/pubmed/15944452
http://dx.doi.org/10.1093/nar/gki642
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