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Another look at the mechanism involving trimeric dUTPases in Staphylococcus aureus pathogenicity island induction involves novel players in the party


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Title: Another look at the mechanism involving trimeric dUTPases in Staphylococcus aureus pathogenicity island induction involves novel players in the party
Authors : Maiques Fernández, Elisa
Quiles Puchalt, Nuria
Donderis, Jorge
Ciges Tomás, J. Rafael
Alite, Christian
Bowring, Janine
Humphrey, Suzanne
Penadés Casanova, José Rafael
Marina, Alberto
Keywords: Estafilococos.Staphylococcus.Bacteriología médica.Pathogenic bacteria.Medical bacteriology.Medical microbiology.Bacterias patógenas.Microbiología médica.
Publisher: Oxford University Press.
Citation: Maiques, E., Quiles-Puchalt, N., Donderis, J., Ciges-Tomas, JR., Alite, C., Bowring, JZ. et al. (2016). Another look at the mechanism involving trimeric dUTPases in Staphylococcus aureus pathogenicity island induction involves novel players in the party. Nucleic Acids Research, vol. 44, n. 11 (jun. 2016), pp. 5457-5469. DOI: https://doi.org/10.1093/nar/gkw317
Abstract: We have recently proposed that the trimeric staphylococcal phage encoded dUTPases (Duts) are signaling molecules that act analogously to eukaryotic G-proteins, using dUTP as a second messenger. To perform this regulatory role, the Duts require their characteristic extra motif VI, present in all the staphylococcal phage coded trimeric Duts, as well as the strongly conserved Dut motif V. Recently, however, an alternative model involving Duts in the transfer of the staphylococcal islands (SaPIs) has been suggested, questioning the implication of motifs V and VI. Here, using state-of the-art techniques, we have revisited the proposed models. Our results confirm that the mechanism by which the Duts derepress the SaPI cycle depends on dUTP and involves both motifs V and VI, as we have previously proposed. Surprisingly, the conserved Dut motif IV is also implicated in SaPI derepression. However, and in agreement with the proposed alternative model, the dUTP inhibits rather than inducing the process, as we had initially proposed. In summary, our results clarify, validate and establish the mechanism by which the Duts perform regulatory functions.
Description: Este artículo se encuentra disponible en la siguiente URL: https://academic.oup.com/nar/article/44/11/5457/2468309
URI: http://hdl.handle.net/10637/10627
Rights : http://creativecommons.org/licenses/by/4.0/deed.es
ISSN: 0305-1048
1362-4962 (Electrónico)
Issue Date: 2-Jun-2016
Center : Universidad Cardenal Herrera-CEU
Appears in Collections:Dpto. Ciencias Biomédicas





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