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Results: 1 to 20 of 92

1.

Caenorhabditis elegans as a Model System for Studying Drug Induced Mitochondrial Toxicity.

de Boer R, Smith RL, De Vos WH, Manders EM, Brul S, van der Spek H.

PLoS One. 2015 May 13;10(5):e0126220. doi: 10.1371/journal.pone.0126220. eCollection 2015.

2.

Specific RNA Interference in Caenorhabditis elegans by Ingested dsRNA Expressed in Bacillus subtilis.

Lezzerini M, van de Ven K, Veerman M, Brul S, Budovskaya YV.

PLoS One. 2015 Apr 30;10(4):e0124508. doi: 10.1371/journal.pone.0124508. eCollection 2015.

3.

Temperature Dependence of the Proteome Profile of the Psychrotolerant Pathogenic Food Spoiler Bacillus weihenstephanensis Type Strain WSBC 10204.

Stelder SK, Mahmud SA, Dekker HL, de Koning LJ, Brul S, de Koster CG.

J Proteome Res. 2015 May 1;14(5):2169-76. doi: 10.1021/pr501307t. Epub 2015 Apr 22.

PMID:
25853650
4.

Factors that affect transfer of the IncI1 β-lactam resistance plasmid pESBL-283 between E. coli strains.

Händel N, Otte S, Jonker M, Brul S, ter Kuile BH.

PLoS One. 2015 Apr 1;10(4):e0123039. doi: 10.1371/journal.pone.0123039. eCollection 2015.

5.

Simulation of the rate of transfer of antibiotic resistance between Escherichia coli strains cultured under well controlled environmental conditions.

Smelt JP, Hoefsloot HC, de Koster CG, Schuurmans JM, ter Kuile BH, Brul S.

Food Microbiol. 2015 Feb;45(Pt B):189-94. doi: 10.1016/j.fm.2014.03.019. Epub 2014 Apr 18.

PMID:
25500384
6.

Comparative physiological and transcriptional analysis of weak organic acid stress in Bacillus subtilis.

Ter Beek A, Wijman JG, Zakrzewska A, Orij R, Smits GJ, Brul S.

Food Microbiol. 2015 Feb;45(Pt A):71-82. doi: 10.1016/j.fm.2014.02.013. Epub 2014 Feb 26.

PMID:
25481064
7.

Quantitative analysis of the effect of specific tea compounds on germination and outgrowth of Bacillus subtilis spores at single cell resolution.

Pandey R, Ter Beek A, Vischer NO, Smelt JP, Kemperman R, Manders EM, Brul S.

Food Microbiol. 2015 Feb;45(Pt A):63-70. doi: 10.1016/j.fm.2014.03.006. Epub 2014 Mar 16.

PMID:
25481063
8.

Reinforcement of Bacillus subtilis spores by cross-linking of outer coat proteins during maturation.

Abhyankar W, Pandey R, Ter Beek A, Brul S, de Koning LJ, de Koster CG.

Food Microbiol. 2015 Feb;45(Pt A):54-62. doi: 10.1016/j.fm.2014.03.007. Epub 2014 Mar 18.

PMID:
25481062
9.

Spore proteomics: the past, present and the future.

Abhyankar W, de Koning LJ, Brul S, de Koster CG.

FEMS Microbiol Lett. 2014 Sep;358(2):137-44. doi: 10.1111/1574-6968.12568. Epub 2014 Aug 28. Review.

PMID:
25110127
10.

Distinct effects of sorbic acid and acetic acid on the electrophysiology and metabolism of Bacillus subtilis.

van Beilen JW, Teixeira de Mattos MJ, Hellingwerf KJ, Brul S.

Appl Environ Microbiol. 2014 Oct;80(19):5918-26. doi: 10.1128/AEM.01391-14. Epub 2014 Jul 18.

11.

Interaction between mutations and regulation of gene expression during development of de novo antibiotic resistance.

Händel N, Schuurmans JM, Feng Y, Brul S, ter Kuile BH.

Antimicrob Agents Chemother. 2014 Aug;58(8):4371-9. doi: 10.1128/AAC.02892-14. Epub 2014 May 19.

12.

A kinetic model of catabolic adaptation and protein reprofiling in Saccharomyces cerevisiae during temperature shifts.

Mensonides FI, Brul S, Hellingwerf KJ, Bakker BM, Teixeira de Mattos MJ.

FEBS J. 2014 Feb;281(3):825-41.

PMID:
24616920
13.

Thermal inactivation of microorganisms.

Smelt JP, Brul S.

Crit Rev Food Sci Nutr. 2014;54(10):1371-85. doi: 10.1080/10408398.2011.637645. Review.

PMID:
24564593
14.

Effect of growth rate and selection pressure on rates of transfer of an antibiotic resistance plasmid between E. coli strains.

Schuurmans JM, van Hijum SA, Piet JR, Händel N, Smelt J, Brul S, ter Kuile BH.

Plasmid. 2014 Mar;72:1-8. doi: 10.1016/j.plasmid.2014.01.002. Epub 2014 Feb 10.

PMID:
24525238
15.

Cell wall-related bionumbers and bioestimates of Saccharomyces cerevisiae and Candida albicans.

Klis FM, de Koster CG, Brul S.

Eukaryot Cell. 2014 Jan;13(1):2-9. doi: 10.1128/EC.00250-13. Epub 2013 Nov 15. Review.

16.

In pursuit of protein targets: proteomic characterization of bacterial spore outer layers.

Abhyankar W, Hossain AH, Djajasaputra A, Permpoonpattana P, Ter Beek A, Dekker HL, Cutting SM, Brul S, de Koning LJ, de Koster CG.

J Proteome Res. 2013 Oct 4;12(10):4507-21. doi: 10.1021/pr4005629. Epub 2013 Sep 23.

PMID:
23998435
17.
18.

Yeast adaptation to weak acids prevents futile energy expenditure.

Ullah A, Chandrasekaran G, Brul S, Smits GJ.

Front Microbiol. 2013 Jun 11;4:142. doi: 10.3389/fmicb.2013.00142. eCollection 2013.

19.

Iron restriction-induced adaptations in the wall proteome of Candida albicans.

Sorgo AG, Brul S, de Koster CG, de Koning LJ, Klis FM.

Microbiology. 2013 Aug;159(Pt 8):1673-82. doi: 10.1099/mic.0.065599-0. Epub 2013 May 31.

20.

Compensation of the metabolic costs of antibiotic resistance by physiological adaptation in Escherichia coli.

Händel N, Schuurmans JM, Brul S, ter Kuile BH.

Antimicrob Agents Chemother. 2013 Aug;57(8):3752-62. doi: 10.1128/AAC.02096-12. Epub 2013 May 28.

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