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nicolas mirouze
nicolas mirouze
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在 i2bc.paris-saclay.fr 的电子邮件经过验证
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引用次数
引用次数
年份
A key presynaptic role in transformation for a widespread bacterial protein: DprA conveys incoming ssDNA to RecA
I Mortier-Barrière, M Velten, P Dupaigne, N Mirouze, O Piétrement, ...
Cell 130 (5), 824-836, 2007
2572007
Structural basis of response regulator dephosphorylation by Rap phosphatases
V Parashar, N Mirouze, DA Dubnau, MB Neiditch
PLoS biology 9 (2), e1000589, 2011
1172011
Direct involvement of DprA, the transformation-dedicated RecA loader, in the shut-off of pneumococcal competence
N Mirouze, MA Berge, AL Soulet, I Mortier-Barriere, Y Quentin, G Fichant, ...
Proceedings of the National Academy of Sciences 110 (11), E1035-E1044, 2013
1132013
ComE/ComE∼ P interplay dictates activation or extinction status of pneumococcal X‐state (competence)
B Martin, AL Soulet, N Mirouze, M Prudhomme, I Mortier‐Barrière, ...
Molecular microbiology 87 (2), 394-411, 2013
1112013
Contrasting mechanisms of growth in two model rod-shaped bacteria
C Billaudeau, A Chastanet, Z Yao, C Cornilleau, N Mirouze, V Fromion, ...
Nature communications 8 (1), 15370, 2017
772017
Structure–function analysis of pneumococcal DprA protein reveals that dimerization is crucial for loading RecA recombinase onto DNA during transformation
S Quevillon-Cheruel, N Campo, N Mirouze, I Mortier-Barrière, MA Brooks, ...
Proceedings of the National Academy of Sciences 109 (37), E2466-E2475, 2012
722012
Fluctuations in spo0A Transcription Control Rare Developmental Transitions in Bacillus subtilis
N Mirouze, P Prepiak, D Dubnau
PLoS Genetics 7 (4), e1002048, 2011
682011
Spo0A∼P Imposes a Temporal Gate for the Bimodal Expression of Competence in Bacillus subtilis
N Mirouze, Y Desai, A Raj, D Dubnau
PLoS genetics 8 (3), e1002586, 2012
672012
Antibiotic sensitivity reveals that wall teichoic acids mediate DNA binding during competence in Bacillus subtilis
N Mirouze, C Ferret, C Cornilleau, R Carballido-López
Nature Communications 9 (1), 5072, 2018
392018
An atypical Phr peptide regulates the developmental switch protein RapH
N Mirouze, V Parashar, MD Baker, DA Dubnau, MB Neiditch
Journal of bacteriology 193 (22), 6197-6206, 2011
372011
MreB-Dependent Inhibition of Cell Elongation during the Escape from Competence in Bacillus subtilis
N Mirouze, C Ferret, Z Yao, A Chastanet, R Carballido-López
PLoS genetics 11 (6), e1005299, 2015
362015
Genome‐wide mapping of TnrA‐binding sites provides new insights into the TnrA regulon in Bacillus subtilis
N Mirouze, E Bidnenko, P Noirot, S Auger
Microbiologyopen 4 (3), 423-435, 2015
282015
Chance and Necessity in Bacillus subtilis Development
N Mirouze, D Dubnau
The Bacterial Spore: From Molecules to Systems, 103-127, 2016
272016
MecA dampens transitions to spore, biofilm exopolysaccharide and competence expression by two different mechanisms
P Prepiak, M Defrancesco, S Spadavecchia, N Mirouze, M Albano, ...
Molecular microbiology 80 (4), 1014-1030, 2011
212011
Genome sequence of the Bacillus subtilis biofilm-forming transformable strain PS216
R Durrett, M Miras, N Mirouze, A Narechania, I Mandic-Mulec, D Dubnau
Genome announcements 1 (3), 10.1128/genomea. 00288-13, 2013
202013
Contrasting mechanisms of growth in two model rod-shaped bacteria. Nat Commun 8: 15370
C Billaudeau, A Chastanet, Z Yao, C Cornilleau, N Mirouze, V Fromion, ...
122017
The complex regulation of competence in Staphylococcus aureus under microaerobic conditions
SY Feng, Y Hauck, F Morgene, R Mohammedi, N Mirouze
Communications Biology 6 (1), 512, 2023
32023
Microaerobic conditions and the complex regulation of natural competence in Staphylococcus aureus
SY Feng, Y Hauck, F Morgene, R Mohammedi, N Mirouze
bioRxiv, 2022.04. 06.487305, 2022
12022
Natural transformation and cell division delay in competent Staphylococcus aureus
F Morgene, C Rizoug Zeghlache, SY Feng, Y Hauck, N Mirouze
Microbiology Spectrum 11 (6), e02807-23, 2023
2023
Genetic transformation and cell division delay in competent Staphylococcus aureus
F Morgene, CR Zeghlache, SY Feng, Y Hauck, N Mirouze
bioRxiv, 2022.06. 29.498089, 2022
2022
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