The Thermus thermophilusâ
comEA/comEC operon is associated with DNA binding and regulation of the DNA translocator and type IV pili.
Environ Microbiol
; 18(1): 65-74, 2016 Jan.
Article
em En
| MEDLINE
| ID: mdl-25727469
Natural transformation systems and type IV pili are linked in many naturally competent bacteria. In the Gram-negative bacterium Thermus thermophilus, a leading model organism for studies of DNA transporters in thermophilic bacteria, seven competence proteins play a dual role in both systems, whereas two competence genes, comEA and comEC, are suggested to represent unique DNA translocator proteins. Here we show that the T. thermophilusâ
ComEA protein binds dsDNA and is anchored in the inner membrane. comEA is co-transcribed with the flanking comEC gene, and transcription of this operon is upregulated by nutrient limitation and low temperature. To our surprise, a comEC mutant was impaired in piliation. We followed this observation and uncovered that the impaired piliation of the comEC mutant is due to a transcriptional downregulation of pilA4 and the pilN both playing a dual role in piliation and natural competence. Moreover, the comEC mutation resulted in a dramatic decrease in mRNA levels of the pseudopilin gene pilA1, which is unique for the DNA transporter. We conclude that ComEC modulates transcriptional regulation of type IV pili and DNA translocator components thereby mediating a response to extracellular parameters.
Texto completo:
1
Base de dados:
MEDLINE
Assunto principal:
Transporte Biológico Ativo
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Thermus thermophilus
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Fímbrias Bacterianas
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Proteínas de Ligação a DNA
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Competência de Transformação por DNA
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Proteínas de Membrana
Tipo de estudo:
Risk_factors_studies
Idioma:
En
Ano de publicação:
2016
Tipo de documento:
Article