Z. Baharoglu, A. Babosan, and D. Mazel, Identification of genes involved in low 186 aminoglycoside-induced SOS response in Vibrio cholerae: a role for transcription stalling and 187

Z. Baharoglu, A. Babosan, and D. Mazel, Identification of genes involved in low 189 aminoglycoside-induced SOS response in Vibrio cholerae: a role for transcription stalling and 190

Z. Baharoglu, D. Bikard, and D. Mazel, Conjugative DNA transfer induces the bacterial SOS 192 response and promotes antibiotic resistance development through integron activation, 0194.
DOI : 10.1371/journal.pgen.1001165

URL : http://doi.org/10.1371/journal.pgen.1001165

Z. Baharoglu, G. Garriss, and D. Mazel, Multiple Pathways of Genome Plasticity Leading to Development of Antibiotic Resistance, Antibiotics, vol.2, issue.2, pp.288-315, 0196.
DOI : 10.3390/antibiotics2020288

Z. Baharoglu, E. Krin, and D. Mazel, Transformation-induced SOS regulation and carbon 197 catabolite control of the V. cholerae integron integrase: connecting environment and genome 198 plasticity, J Bacteriol, 2012.

Z. Baharoglu, E. Krin, and D. Mazel, RpoS Plays a Central Role in the SOS Induction by

Z. Baharoglu, E. Krin, and D. Mazel, RpoS Plays a Central Role in the SOS Induction by 202

Z. Baharoglu and D. Mazel, Vibrio cholerae triggers SOS and mutagenesis in response to a 205 wide range of antibiotics: a route towards multiresistance, Antimicrob Agents Chemother, vol.55, pp.206-2438, 2011.

Z. Baharoglu and D. Mazel, Vibrio cholerae Triggers SOS and Mutagenesis in Response, p.208
URL : https://hal.archives-ouvertes.fr/pasteur-01423615

S. Banerjee, R. Chowdhury, D. C. Bell, C. G. Cupples, A. S. Bhagwat et al., An orphan DNA (cytosine-5-)-methyltransferase in Vibrio 211 cholerae Very-short-patch repair in Escherichia coli requires the dam 213 adenine methylase Cooperation and competition in mismatch repair: very short- 215 patch repair and methyl-directed mismatch repair in Escherichia coli Construction of a mariner-based transposon for epitope- 218 tagging and genomic targeting The Escherichia coli MutL 220 protein stimulates binding of Vsr and MutS to heteroduplex DNA, Wide Range of Antibiotics: a Route towards Multiresistance, pp.2438-2441, 1998.

B. Gonzalez-zorn and J. Barbe, The SOS response controls integron recombination, Science, vol.22416, issue.225, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00409031

Z. Baharoglu and D. Mazel, beta-lactam antibiotics promote bacterial mutagenesis via an 227

M. Lieb, S. Rehmat, M. Lieb, S. Rehmat, A. S. Bhagwat et al., Very short patch repair of T:G mismatches in vivo: importance of 229 context and accessory proteins Interaction of MutS and Vsr: some dominant- 231 negative mutS mutations that disable methyladenine-directed mismatch repair are active in 232 very-short-patch repair The Vsr endonuclease of Escherichia coli: 234 an efficient DNA repair enzyme and a potent mutagen The Escherichia coli mismatch repair 236 protein MutL recruits the Vsr and MutH endonucleases in response to DNA damage 239 Directed evolution of biosynthetic pathways. Recruitment of cysteine thioethers for 240 constructing the cell wall of Escherichia coli Analysis of global 242 gene expression and double-strand-break formation in DNA adenine methyltransferase-and 243 mismatch repair-deficient Escherichia coli, Dominant negative mutator mutations in the mutS gene of 247 Escherichia coli, pp.660-666, 1993.