Functional implications of ribosomal RNA methylation in response to environmental stress.
about
A comparative analysis of methylome profiles of Campylobacter jejuni sheep abortion isolate and gastroenteric strains using PacBio data.Correcting direct effects of ethanol on translation and transcription machinery confers ethanol tolerance in bacteria.High-throughput single-base resolution mapping of RNA 2΄-O-methylated residues.Evolution of initiator tRNAs and selection of methionine as the initiating amino acid.Genomic insights into temperature-dependent transcriptional responses of Kosmotoga olearia, a deep-biosphere bacterium that can grow from 20 to 79 °C.Ribosomal RNA methyltransferases contribute to Staphylococcus aureus virulence.Nucleotide modifications within bacterial messenger RNAs regulate their translation and are able to rewire the genetic code.RlmCD-mediated U747 methylation promotes efficient G748 methylation by methyltransferase RlmAII in 23S rRNA in Streptococcus pneumoniae; interplay between two rRNA methylations responsible for telithromycin susceptibility.Functional sequencing read annotation for high precision microbiome analysis.
P2860
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P2860
Functional implications of ribosomal RNA methylation in response to environmental stress.
description
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name
Functional implications of ribosomal RNA methylation in response to environmental stress.
@en
type
label
Functional implications of ribosomal RNA methylation in response to environmental stress.
@en
prefLabel
Functional implications of ribosomal RNA methylation in response to environmental stress.
@en
P2860
P1476
Functional implications of ribosomal RNA methylation in response to environmental stress
@en
P2093
Lydia M Contreras
P2860
P356
10.3109/10409238.2013.859229
P577
2013-11-21T00:00:00Z