RNA secondary structure regulates the translation of sxy and competence development in Haemophilus influenzae

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RNA secondary structure regulates the translation of sxy and competence development in Haemophilus influenzae

The sxy (tfoX) gene product is the central regulator of DNA uptake by naturally competent gamma-proteobacteria such as Haemophilus influenzae, Vibrio cholerae and probably Escherichia coli. However, the mechanisms regulating sxy gene expression are not understood despite being key to understanding the physiological role of DNA uptake. We have isolated mutations in H. influenzae sxy that greatly...

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The Haemophilus influenzae sxy-1 mutation is in a newly identified gene essential for competence.

The sxy-1 mutation of Haemophilus influenzae causes a 100- to 1,000-fold increase in spontaneous natural competence. We have used mapping and sequencing to identify this mutation as a G-to-A transition in an open reading frame adjacent to the rec-1 locus. This mutation substitutes valine for isoleucine at amino acid 19 of the protein specified by this gene (now named sxy). A multicopy plasmid c...

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The availability of purine nucleotides regulates natural competence by controlling translation of the competence activator Sxy

Many bacteria are naturally competent, able to bind and take up DNA from their extracellular environment. This DNA can serve as a significant source of nutrients, in addition to providing genetic material for recombination. The regulation of competence in several model organisms highlights the importance of this nutritional function, although it has often been overlooked. Natural competence is ...

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sxy-1, a Haemophilus influenzae mutation causing greatly enhanced spontaneous competence.

A Haemophilus influenzae strain carrying a competence-enhancing mutation (sxy-1) was selected by transformation of a mutagenized culture in exponential growth at low cell density, where spontaneous competence is very rare. Under these conditions, sxy-1 cells spontaneously transformed 100 to 1,000 times more efficiently than wild-type cells. Moreover, sxy-1 cells responded to all known competenc...

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Periodate inhibition of transformation and competence development in Haemophilus influenzae.

Ranhand, Jon M. (University of Cincinnati, Cincinnati, Ohio), and Herman C. Lichstein. Periodate inhibition of transformation and competence development in Haemophilus influenzae. J. Bacteriol. 92:956-959. 1966.-Periodate treatment of competent cells reduced the frequency of transformation to streptomycin resistance about 90% while reducing cell viability about 30% or less. Moreover, when perio...

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ژورنال

عنوان ژورنال: Nucleic Acids Research

سال: 2007

ISSN: 1362-4962,0305-1048

DOI: 10.1093/nar/gkm915