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Point mutation in the stop codon of MAV_RS14660 increases the growth rate of Mycobacterium avium subspecies hominissuis

Mycobacterium avium subspecies hominissuis (MAH) is a pathogen that causes various non-tuberculous mycobacterial diseases in humans and animals worldwide. Among the genus, MAH is characterized by relatively slow growth. Here, we isolated a rapidly growing variant of the MAH 104 strain. The variant s...

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Autores principales: Kawakita, Tomomi, Mukai, Tetsu, Yoshida, Mitsunori, Yamada, Hiroyuki, Nakayama, Masaaki, Miyamoto, Yuji, Suzuki, Masato, Nakata, Noboru, Takii, Takemasa, Ryo, Akihide, Ohara, Naoya, Ato, Manabu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Microbiology Society 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8131024/
https://www.ncbi.nlm.nih.gov/pubmed/33357282
http://dx.doi.org/10.1099/mic.0.001007
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author Kawakita, Tomomi
Mukai, Tetsu
Yoshida, Mitsunori
Yamada, Hiroyuki
Nakayama, Masaaki
Miyamoto, Yuji
Suzuki, Masato
Nakata, Noboru
Takii, Takemasa
Ryo, Akihide
Ohara, Naoya
Ato, Manabu
author_facet Kawakita, Tomomi
Mukai, Tetsu
Yoshida, Mitsunori
Yamada, Hiroyuki
Nakayama, Masaaki
Miyamoto, Yuji
Suzuki, Masato
Nakata, Noboru
Takii, Takemasa
Ryo, Akihide
Ohara, Naoya
Ato, Manabu
author_sort Kawakita, Tomomi
collection PubMed
description Mycobacterium avium subspecies hominissuis (MAH) is a pathogen that causes various non-tuberculous mycobacterial diseases in humans and animals worldwide. Among the genus, MAH is characterized by relatively slow growth. Here, we isolated a rapidly growing variant of the MAH 104 strain. The variant strain (named N104) exhibited an enhanced growth rate and higher motility compared to the parent MAH 104 strain (P104). Whole-genome sequencing analysis of N104 revealed the loss of the stop codon of MAV_RS14660 due to a single nucleotide replacement, resulting in the substitution of the codon for tryptophan. Notably, exclusion of the stop codon ligated the open reading frames and caused the fusion of two adjacent proteins. A revertant parent strain, in which a mutation was introduced to restore the stop codon, revealed that elimination of the stop codon in MAV_RS14660 was responsible for the N104 phenotype. Furthermore, we analysed the phenotypes of the parent and mutated strains by determining the functions of the MAV_RS14660 and MAV_RS14655 coding regions flanking the stop codon. The mutant strains, expected to express a fusion protein, exhibited increased resistance to antimicrobial drugs and exogenous copper toxicity compared to that of the parent strains. These findings suggest that the fusion of the MAV_RS14660- and MAV_RS14655-encoding regions in the mutant N104 strain could be related to the modified functions of these intrinsic proteins.
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spelling pubmed-81310242021-05-26 Point mutation in the stop codon of MAV_RS14660 increases the growth rate of Mycobacterium avium subspecies hominissuis Kawakita, Tomomi Mukai, Tetsu Yoshida, Mitsunori Yamada, Hiroyuki Nakayama, Masaaki Miyamoto, Yuji Suzuki, Masato Nakata, Noboru Takii, Takemasa Ryo, Akihide Ohara, Naoya Ato, Manabu Microbiology (Reading) Research Article Mycobacterium avium subspecies hominissuis (MAH) is a pathogen that causes various non-tuberculous mycobacterial diseases in humans and animals worldwide. Among the genus, MAH is characterized by relatively slow growth. Here, we isolated a rapidly growing variant of the MAH 104 strain. The variant strain (named N104) exhibited an enhanced growth rate and higher motility compared to the parent MAH 104 strain (P104). Whole-genome sequencing analysis of N104 revealed the loss of the stop codon of MAV_RS14660 due to a single nucleotide replacement, resulting in the substitution of the codon for tryptophan. Notably, exclusion of the stop codon ligated the open reading frames and caused the fusion of two adjacent proteins. A revertant parent strain, in which a mutation was introduced to restore the stop codon, revealed that elimination of the stop codon in MAV_RS14660 was responsible for the N104 phenotype. Furthermore, we analysed the phenotypes of the parent and mutated strains by determining the functions of the MAV_RS14660 and MAV_RS14655 coding regions flanking the stop codon. The mutant strains, expected to express a fusion protein, exhibited increased resistance to antimicrobial drugs and exogenous copper toxicity compared to that of the parent strains. These findings suggest that the fusion of the MAV_RS14660- and MAV_RS14655-encoding regions in the mutant N104 strain could be related to the modified functions of these intrinsic proteins. Microbiology Society 2020-12-23 /pmc/articles/PMC8131024/ /pubmed/33357282 http://dx.doi.org/10.1099/mic.0.001007 Text en © 2021 The Authors https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License.
spellingShingle Research Article
Kawakita, Tomomi
Mukai, Tetsu
Yoshida, Mitsunori
Yamada, Hiroyuki
Nakayama, Masaaki
Miyamoto, Yuji
Suzuki, Masato
Nakata, Noboru
Takii, Takemasa
Ryo, Akihide
Ohara, Naoya
Ato, Manabu
Point mutation in the stop codon of MAV_RS14660 increases the growth rate of Mycobacterium avium subspecies hominissuis
title Point mutation in the stop codon of MAV_RS14660 increases the growth rate of Mycobacterium avium subspecies hominissuis
title_full Point mutation in the stop codon of MAV_RS14660 increases the growth rate of Mycobacterium avium subspecies hominissuis
title_fullStr Point mutation in the stop codon of MAV_RS14660 increases the growth rate of Mycobacterium avium subspecies hominissuis
title_full_unstemmed Point mutation in the stop codon of MAV_RS14660 increases the growth rate of Mycobacterium avium subspecies hominissuis
title_short Point mutation in the stop codon of MAV_RS14660 increases the growth rate of Mycobacterium avium subspecies hominissuis
title_sort point mutation in the stop codon of mav_rs14660 increases the growth rate of mycobacterium avium subspecies hominissuis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8131024/
https://www.ncbi.nlm.nih.gov/pubmed/33357282
http://dx.doi.org/10.1099/mic.0.001007
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