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Role of DNA modifications in Mycoplasma gallisepticum
by
Arzamasov, Alexander A.
, Garanina, Irina A.
, Govorun, Vadim M.
, Evsyutina, Daria V.
, Fisunov, Gleb Y.
, Matyushkina, Daria S.
, Ladygina, Valentina G.
, Semashko, Tatiana A.
, Pobeguts, Olga V.
in
Analysis
/ Bacteria
/ Biology and life sciences
/ Cell cycle
/ Cell size
/ Cell walls
/ Deoxyribonucleic acid
/ DNA
/ DNA Methylation
/ DNA Restriction-Modification Enzymes - genetics
/ DNA, Bacterial - genetics
/ DNA, Bacterial - metabolism
/ Enzymes
/ Epigenetics
/ Gene expression
/ Genetic aspects
/ Genomes
/ Methylation
/ Microbial genetic engineering
/ Mycoplasma
/ Mycoplasma gallisepticum
/ Mycoplasma gallisepticum - genetics
/ N6-methyladenosine
/ Phenotypes
/ Prokaryotes
/ Protein interaction
/ Research and Analysis Methods
/ Restriction-modification
/ SMRT protein
/ Streptococcus infections
/ Tenericutes - genetics
/ Unit cell
/ Varieties
/ Virulence
2022
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Role of DNA modifications in Mycoplasma gallisepticum
by
Arzamasov, Alexander A.
, Garanina, Irina A.
, Govorun, Vadim M.
, Evsyutina, Daria V.
, Fisunov, Gleb Y.
, Matyushkina, Daria S.
, Ladygina, Valentina G.
, Semashko, Tatiana A.
, Pobeguts, Olga V.
in
Analysis
/ Bacteria
/ Biology and life sciences
/ Cell cycle
/ Cell size
/ Cell walls
/ Deoxyribonucleic acid
/ DNA
/ DNA Methylation
/ DNA Restriction-Modification Enzymes - genetics
/ DNA, Bacterial - genetics
/ DNA, Bacterial - metabolism
/ Enzymes
/ Epigenetics
/ Gene expression
/ Genetic aspects
/ Genomes
/ Methylation
/ Microbial genetic engineering
/ Mycoplasma
/ Mycoplasma gallisepticum
/ Mycoplasma gallisepticum - genetics
/ N6-methyladenosine
/ Phenotypes
/ Prokaryotes
/ Protein interaction
/ Research and Analysis Methods
/ Restriction-modification
/ SMRT protein
/ Streptococcus infections
/ Tenericutes - genetics
/ Unit cell
/ Varieties
/ Virulence
2022
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Role of DNA modifications in Mycoplasma gallisepticum
by
Arzamasov, Alexander A.
, Garanina, Irina A.
, Govorun, Vadim M.
, Evsyutina, Daria V.
, Fisunov, Gleb Y.
, Matyushkina, Daria S.
, Ladygina, Valentina G.
, Semashko, Tatiana A.
, Pobeguts, Olga V.
in
Analysis
/ Bacteria
/ Biology and life sciences
/ Cell cycle
/ Cell size
/ Cell walls
/ Deoxyribonucleic acid
/ DNA
/ DNA Methylation
/ DNA Restriction-Modification Enzymes - genetics
/ DNA, Bacterial - genetics
/ DNA, Bacterial - metabolism
/ Enzymes
/ Epigenetics
/ Gene expression
/ Genetic aspects
/ Genomes
/ Methylation
/ Microbial genetic engineering
/ Mycoplasma
/ Mycoplasma gallisepticum
/ Mycoplasma gallisepticum - genetics
/ N6-methyladenosine
/ Phenotypes
/ Prokaryotes
/ Protein interaction
/ Research and Analysis Methods
/ Restriction-modification
/ SMRT protein
/ Streptococcus infections
/ Tenericutes - genetics
/ Unit cell
/ Varieties
/ Virulence
2022
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Journal Article
Role of DNA modifications in Mycoplasma gallisepticum
2022
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Overview
The epigenetics of bacteria, and bacteria with a reduced genome in particular, is of great interest, but is still poorly understood. Mycoplasma gallisepticum , a representative of the class Mollicutes, is an excellent model of a minimal cell because of its reduced genome size, lack of a cell wall, and primitive cell organization. In this study we investigated DNA modifications of the model object Mycoplasma gallisepticum and their roles. We identified DNA modifications and methylation motifs in M . gallisepticum S6 at the genome level using single molecule real time (SMRT) sequencing. Only the ANCNNNNCCT methylation motif was found in the M . gallisepticum S6 genome. The studied bacteria have one functional system for DNA modifications, the Type I restriction-modification (RM) system, MgaS6I. We characterized its activity, affinity, protection and epigenetic functions. We demonstrated the protective effects of this RM system. A common epigenetic signal for bacteria is the m6A modification we found, which can cause changes in DNA-protein interactions and affect the cell phenotype. Native methylation sites are underrepresented in promoter regions and located only near the -35 box of the promoter, which does not have a significant effect on gene expression in mycoplasmas. To study the epigenetics effect of m6A for genome-reduced bacteria, we constructed a series of M . gallisepticum strains expressing EGFP under promoters with the methylation motifs in their different elements. We demonstrated that m6A modifications of the promoter located only in the -10-box affected gene expression and downregulated the expression of the corresponding gene.
Publisher
Public Library of Science,Public Library of Science (PLoS)
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