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Ciprofloxacin causes persister formation by inducing the TisB toxin in Escherichia coli
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Ciprofloxacin causes persister formation by inducing the TisB toxin in Escherichia coli

Dörr, Tobias ; Vulić, Marin ; Lewis, Kim Waldor, Matt K.

PLoS Biology, 2010-02, Vol.8 (2), p.e1000317 [Periódico revisado por pares]

United States: Public Library of Science

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Vibrio cholerae Triggers SOS and Mutagenesis in Response to a Wide Range of Antibiotics: a Route towards Multiresistance
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Vibrio cholerae Triggers SOS and Mutagenesis in Response to a Wide Range of Antibiotics: a Route towards Multiresistance

BAHAROGLU, Zeynep ; MAZEL, Didier

Antimicrobial Agents and Chemotherapy, 2011-05, Vol.55 (5), p.2438-2441 [Periódico revisado por pares]

Washington, DC: American Society for Microbiology

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Evidence for induction of integron-based antibiotic resistance by the SOS response in a clinical setting
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Evidence for induction of integron-based antibiotic resistance by the SOS response in a clinical setting

Hocquet, Didier ; Llanes, Catherine ; Thouverez, Michelle ; Kulasekara, Hemantha D ; Bertrand, Xavier ; Plésiat, Patrick ; Mazel, Didier ; Miller, Samuel I Hauser, Alan

PLoS pathogens, 2012-06, Vol.8 (6), p.e1002778 [Periódico revisado por pares]

United States: Public Library of Science

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4
Effects of Stress, Reactive Oxygen Species, and the SOS Response on De Novo Acquisition of Antibiotic Resistance in Escherichia coli
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Effects of Stress, Reactive Oxygen Species, and the SOS Response on De Novo Acquisition of Antibiotic Resistance in Escherichia coli

Händel, Nadine ; Hoeksema, Marloes ; Freijo Mata, Marina ; Brul, Stanley ; ter Kuile, Benno H

Antimicrobial agents and chemotherapy, 2016-03, Vol.60 (3), p.1319-1327 [Periódico revisado por pares]

United States: American Society for Microbiology

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5
(5′S)-8,5′-Cyclo-2′-deoxyguanosine Is a Strong Block to Replication, a Potent pol V-Dependent Mutagenic Lesion, and Is Inefficiently Repaired in Escherichia coli
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(5′S)-8,5′-Cyclo-2′-deoxyguanosine Is a Strong Block to Replication, a Potent pol V-Dependent Mutagenic Lesion, and Is Inefficiently Repaired in Escherichia coli

Jasti, Vijay P ; Das, Rajat S ; Hilton, Benjamin A ; Weerasooriya, Savithri ; Zou, Yue ; Basu, Ashis K

Biochemistry (Easton), 2011-05, Vol.50 (19), p.3862-3865 [Periódico revisado por pares]

United States: American Chemical Society

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6
Genetically stable CRISPR-based kill switches for engineered microbes
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Genetically stable CRISPR-based kill switches for engineered microbes

Rottinghaus, Austin G ; Ferreiro, Aura ; Fishbein, Skye R S ; Dantas, Gautam ; Moon, Tae Seok

Nature communications, 2022-02, Vol.13 (1), p.672-17, Article 672 [Periódico revisado por pares]

England: Nature Publishing Group

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7
Involvement of the Lon Protease in the SOS Response Triggered by Ciprofloxacin in Pseudomonas aeruginosa PAO1
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Involvement of the Lon Protease in the SOS Response Triggered by Ciprofloxacin in Pseudomonas aeruginosa PAO1

BREIDENSTEIN, Elena B. M ; BAINS, Manjeet ; HANCOCK, Robert E. W

Antimicrobial Agents and Chemotherapy, 2012-06, Vol.56 (6), p.2879-2887 [Periódico revisado por pares]

Washington, DC: American Society for Microbiology

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8
Functional characterization of two SOS-regulated genes involved in mitomycin C resistance in Caulobacter crescentus
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Functional characterization of two SOS-regulated genes involved in mitomycin C resistance in Caulobacter crescentus

Lopes-Kulishev, Carina O. ; Alves, Ingrid R. ; Valencia, Estela Y. ; Pidhirnyj, María I. ; Fernández-Silva, Frank S. ; Rodrigues, Ticiane R. ; Guzzo, Cristiane R. ; Galhardo, Rodrigo S.

DNA repair, 2015-09, Vol.33, p.78-89 [Periódico revisado por pares]

Netherlands: Elsevier B.V

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9
Enhanced antibiotic resistance development from fluoroquinolone persisters after a single exposure to antibiotic
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Enhanced antibiotic resistance development from fluoroquinolone persisters after a single exposure to antibiotic

Barrett, Theresa C ; Mok, Wendy W K ; Murawski, Allison M ; Brynildsen, Mark P

Nature communications, 2019-03, Vol.10 (1), p.1177-11, Article 1177 [Periódico revisado por pares]

England: Nature Publishing Group

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10
All three SOS-inducible DNA polymerases (Pol II, Pol IV and Pol V) are involved in induced mutagenesis
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All three SOS-inducible DNA polymerases (Pol II, Pol IV and Pol V) are involved in induced mutagenesis

Napolitano, R. ; Janel-Bintz, R. ; Wagner, J. ; Fuchs, R. P. P.

The EMBO journal, 2000-11, Vol.19 (22), p.6259-6265 [Periódico revisado por pares]

Chichester, UK: John Wiley & Sons, Ltd

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