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ATP-Dependent Ligases and AEP Primases Affect the Profile and Frequency of Mutations in Mycobacteria under Oxidative Stress

The mycobacterial nonhomologous end-joining pathway (NHEJ) involved in double-strand break (DSB) repair consists of the multifunctional ATP-dependent ligase LigD and the DNA bridging protein Ku. The other ATP-dependent ligases LigC and AEP-primase PrimC are considered as backup in this process. The...

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Autores principales: Brzostek, Anna, Gąsior, Filip, Lach, Jakub, Żukowska, Lidia, Lechowicz, Ewelina, Korycka-Machała, Małgorzata, Strapagiel, Dominik, Dziadek, Jarosław
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8068969/
https://www.ncbi.nlm.nih.gov/pubmed/33918798
http://dx.doi.org/10.3390/genes12040547
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author Brzostek, Anna
Gąsior, Filip
Lach, Jakub
Żukowska, Lidia
Lechowicz, Ewelina
Korycka-Machała, Małgorzata
Strapagiel, Dominik
Dziadek, Jarosław
author_facet Brzostek, Anna
Gąsior, Filip
Lach, Jakub
Żukowska, Lidia
Lechowicz, Ewelina
Korycka-Machała, Małgorzata
Strapagiel, Dominik
Dziadek, Jarosław
author_sort Brzostek, Anna
collection PubMed
description The mycobacterial nonhomologous end-joining pathway (NHEJ) involved in double-strand break (DSB) repair consists of the multifunctional ATP-dependent ligase LigD and the DNA bridging protein Ku. The other ATP-dependent ligases LigC and AEP-primase PrimC are considered as backup in this process. The engagement of LigD, LigC, and PrimC in the base excision repair (BER) process in mycobacteria has also been postulated. Here, we evaluated the sensitivity of Mycolicibacterium smegmatis mutants defective in the synthesis of Ku, Ku-LigD, and LigC(1)-LigC(2)-PrimC, as well as mutants deprived of all these proteins to oxidative and nitrosative stresses, with the most prominent effect observed in mutants defective in the synthesis of Ku protein. Mutants defective in the synthesis of LigD or PrimC/LigC presented a lower frequency of spontaneous mutations than the wild-type strain or the strain defective in the synthesis of Ku protein. As identified by whole-genome sequencing, the most frequent substitutions in all investigated strains were T→G and A→C. Double substitutions, as well as insertions of T or CG, were exclusively identified in the strains carrying functional Ku and LigD proteins. On the other hand, the inactivation of Ku/LigD increased the efficiency of the deletion of G in the mutant strain.
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spelling pubmed-80689692021-04-26 ATP-Dependent Ligases and AEP Primases Affect the Profile and Frequency of Mutations in Mycobacteria under Oxidative Stress Brzostek, Anna Gąsior, Filip Lach, Jakub Żukowska, Lidia Lechowicz, Ewelina Korycka-Machała, Małgorzata Strapagiel, Dominik Dziadek, Jarosław Genes (Basel) Article The mycobacterial nonhomologous end-joining pathway (NHEJ) involved in double-strand break (DSB) repair consists of the multifunctional ATP-dependent ligase LigD and the DNA bridging protein Ku. The other ATP-dependent ligases LigC and AEP-primase PrimC are considered as backup in this process. The engagement of LigD, LigC, and PrimC in the base excision repair (BER) process in mycobacteria has also been postulated. Here, we evaluated the sensitivity of Mycolicibacterium smegmatis mutants defective in the synthesis of Ku, Ku-LigD, and LigC(1)-LigC(2)-PrimC, as well as mutants deprived of all these proteins to oxidative and nitrosative stresses, with the most prominent effect observed in mutants defective in the synthesis of Ku protein. Mutants defective in the synthesis of LigD or PrimC/LigC presented a lower frequency of spontaneous mutations than the wild-type strain or the strain defective in the synthesis of Ku protein. As identified by whole-genome sequencing, the most frequent substitutions in all investigated strains were T→G and A→C. Double substitutions, as well as insertions of T or CG, were exclusively identified in the strains carrying functional Ku and LigD proteins. On the other hand, the inactivation of Ku/LigD increased the efficiency of the deletion of G in the mutant strain. MDPI 2021-04-09 /pmc/articles/PMC8068969/ /pubmed/33918798 http://dx.doi.org/10.3390/genes12040547 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Brzostek, Anna
Gąsior, Filip
Lach, Jakub
Żukowska, Lidia
Lechowicz, Ewelina
Korycka-Machała, Małgorzata
Strapagiel, Dominik
Dziadek, Jarosław
ATP-Dependent Ligases and AEP Primases Affect the Profile and Frequency of Mutations in Mycobacteria under Oxidative Stress
title ATP-Dependent Ligases and AEP Primases Affect the Profile and Frequency of Mutations in Mycobacteria under Oxidative Stress
title_full ATP-Dependent Ligases and AEP Primases Affect the Profile and Frequency of Mutations in Mycobacteria under Oxidative Stress
title_fullStr ATP-Dependent Ligases and AEP Primases Affect the Profile and Frequency of Mutations in Mycobacteria under Oxidative Stress
title_full_unstemmed ATP-Dependent Ligases and AEP Primases Affect the Profile and Frequency of Mutations in Mycobacteria under Oxidative Stress
title_short ATP-Dependent Ligases and AEP Primases Affect the Profile and Frequency of Mutations in Mycobacteria under Oxidative Stress
title_sort atp-dependent ligases and aep primases affect the profile and frequency of mutations in mycobacteria under oxidative stress
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8068969/
https://www.ncbi.nlm.nih.gov/pubmed/33918798
http://dx.doi.org/10.3390/genes12040547
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