Cargando…

Analysis of genome instability and implications for the consequent phenotype in Plasmodium falciparum containing mutated MSH2-1 (P513T)

Malarial parasites exhibit extensive genomic plasticity, which induces the antigen diversification and the development of antimalarial drug resistance. Only a few studies have examined the genome maintenance mechanisms of parasites. The study aimed at elucidating the impact of a mutation in a DNA mi...

Descripción completa

Detalles Bibliográficos
Autores principales: Honma, Hajime, Takahashi, Nobuyuki, Arisue, Nobuko, Sugishita, Tomohiko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Microbiology Society 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10210953/
https://www.ncbi.nlm.nih.gov/pubmed/37083479
http://dx.doi.org/10.1099/mgen.0.001003
_version_ 1785047179727994880
author Honma, Hajime
Takahashi, Nobuyuki
Arisue, Nobuko
Sugishita, Tomohiko
author_facet Honma, Hajime
Takahashi, Nobuyuki
Arisue, Nobuko
Sugishita, Tomohiko
author_sort Honma, Hajime
collection PubMed
description Malarial parasites exhibit extensive genomic plasticity, which induces the antigen diversification and the development of antimalarial drug resistance. Only a few studies have examined the genome maintenance mechanisms of parasites. The study aimed at elucidating the impact of a mutation in a DNA mismatch repair gene on genome stability by maintaining the mutant and wild-type parasites through serial in vitro cultures for approximately 400 days and analysing the subsequent spontaneous mutations. A P513T mutant of the DNA mismatch repair protein PfMSH2-1 from Plasmodium falciparum 3D7 was created. The mutation did not influence the base substitution rate but significantly increased the insertion/deletion (indel) mutation rate in short tandem repeats (STRs) and minisatellite loci. STR mutability was affected by allele size, genomic category and certain repeat motifs. In the mutants, significant telomere healing and homologous recombination at chromosomal ends caused extensive gene loss and generation of chimeric genes, resulting in large-scale chromosomal alteration. Additionally, the mutant showed increased tolerance to N-methyl-Nʹ-nitro-N-nitrosoguanidine, suggesting that PfMSH2-1 was involved in recognizing DNA methylation damage. This work provides valuable insights into the role of PfMSH2-1 in genome stability and demonstrates that the genomic destabilization caused by its dysfunction may lead to antigen diversification.
format Online
Article
Text
id pubmed-10210953
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Microbiology Society
record_format MEDLINE/PubMed
spelling pubmed-102109532023-05-26 Analysis of genome instability and implications for the consequent phenotype in Plasmodium falciparum containing mutated MSH2-1 (P513T) Honma, Hajime Takahashi, Nobuyuki Arisue, Nobuko Sugishita, Tomohiko Microb Genom Research Articles Malarial parasites exhibit extensive genomic plasticity, which induces the antigen diversification and the development of antimalarial drug resistance. Only a few studies have examined the genome maintenance mechanisms of parasites. The study aimed at elucidating the impact of a mutation in a DNA mismatch repair gene on genome stability by maintaining the mutant and wild-type parasites through serial in vitro cultures for approximately 400 days and analysing the subsequent spontaneous mutations. A P513T mutant of the DNA mismatch repair protein PfMSH2-1 from Plasmodium falciparum 3D7 was created. The mutation did not influence the base substitution rate but significantly increased the insertion/deletion (indel) mutation rate in short tandem repeats (STRs) and minisatellite loci. STR mutability was affected by allele size, genomic category and certain repeat motifs. In the mutants, significant telomere healing and homologous recombination at chromosomal ends caused extensive gene loss and generation of chimeric genes, resulting in large-scale chromosomal alteration. Additionally, the mutant showed increased tolerance to N-methyl-Nʹ-nitro-N-nitrosoguanidine, suggesting that PfMSH2-1 was involved in recognizing DNA methylation damage. This work provides valuable insights into the role of PfMSH2-1 in genome stability and demonstrates that the genomic destabilization caused by its dysfunction may lead to antigen diversification. Microbiology Society 2023-04-21 /pmc/articles/PMC10210953/ /pubmed/37083479 http://dx.doi.org/10.1099/mgen.0.001003 Text en © 2023 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 Articles
Honma, Hajime
Takahashi, Nobuyuki
Arisue, Nobuko
Sugishita, Tomohiko
Analysis of genome instability and implications for the consequent phenotype in Plasmodium falciparum containing mutated MSH2-1 (P513T)
title Analysis of genome instability and implications for the consequent phenotype in Plasmodium falciparum containing mutated MSH2-1 (P513T)
title_full Analysis of genome instability and implications for the consequent phenotype in Plasmodium falciparum containing mutated MSH2-1 (P513T)
title_fullStr Analysis of genome instability and implications for the consequent phenotype in Plasmodium falciparum containing mutated MSH2-1 (P513T)
title_full_unstemmed Analysis of genome instability and implications for the consequent phenotype in Plasmodium falciparum containing mutated MSH2-1 (P513T)
title_short Analysis of genome instability and implications for the consequent phenotype in Plasmodium falciparum containing mutated MSH2-1 (P513T)
title_sort analysis of genome instability and implications for the consequent phenotype in plasmodium falciparum containing mutated msh2-1 (p513t)
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10210953/
https://www.ncbi.nlm.nih.gov/pubmed/37083479
http://dx.doi.org/10.1099/mgen.0.001003
work_keys_str_mv AT honmahajime analysisofgenomeinstabilityandimplicationsfortheconsequentphenotypeinplasmodiumfalciparumcontainingmutatedmsh21p513t
AT takahashinobuyuki analysisofgenomeinstabilityandimplicationsfortheconsequentphenotypeinplasmodiumfalciparumcontainingmutatedmsh21p513t
AT arisuenobuko analysisofgenomeinstabilityandimplicationsfortheconsequentphenotypeinplasmodiumfalciparumcontainingmutatedmsh21p513t
AT sugishitatomohiko analysisofgenomeinstabilityandimplicationsfortheconsequentphenotypeinplasmodiumfalciparumcontainingmutatedmsh21p513t