
A wide variety of bacterial pathogens express phase-variable DNA methyltransferases that control expression of multiple genes via epigenetic mechanisms. These randomly switching regulons - phasevarions - regulate genes involved in pathogenesis, host adaptation, and antibiotic resistance. Individual phase-variable genes can be identified in silico as they contain easily recognized features such as simple sequence repeats (SSRs) or inverted repeats (IRs) that mediate the random switching of expression. Conversely, phasevarion-controlled genes do not contain any easily identifiable features. The study of DNA methyltransferase specificity using Single-Molecule, Real-Time (SMRT) sequencing and methylome analysis has rapidly advanced the analysis of phasevarions by allowing methylomics to be combined with whole-transcriptome/proteome analysis to comprehensively characterize these systems in a number of important bacterial pathogens.
DNA, Bacterial, 570, Bacteria, Inverted Repeat Sequences, Gene Expression Regulation, Bacterial, Medical microbiology, DNA Methylation, Microbiology, Epigenesis, Genetic, Biochemistry and cell biology, Microbiology not elsewhere classified, DNA Modification Methylases, Genome, Bacterial, Microsatellite Repeats
DNA, Bacterial, 570, Bacteria, Inverted Repeat Sequences, Gene Expression Regulation, Bacterial, Medical microbiology, DNA Methylation, Microbiology, Epigenesis, Genetic, Biochemistry and cell biology, Microbiology not elsewhere classified, DNA Modification Methylases, Genome, Bacterial, Microsatellite Repeats
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