Systems-level analysis of Escherichia coli response to silver nanoparticles : the roles of anaerobic respiration in microbial resistance
Despite extensive use of silver nanoparticles for antimicrobial applications, cellular mechanisms underlying microbial response to silver nanoparticles remain to be further elucidated at the systems level. Here, we report systems-level response of Escherichia coli to silver nanoparticles using trans...
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sg-ntu-dr.10356-1005742020-03-07T11:35:35Z Systems-level analysis of Escherichia coli response to silver nanoparticles : the roles of anaerobic respiration in microbial resistance Du, Huamao Lo, Tat-Ming Sitompul, Johnner Chang, Matthew Wook School of Chemical and Biomedical Engineering Despite extensive use of silver nanoparticles for antimicrobial applications, cellular mechanisms underlying microbial response to silver nanoparticles remain to be further elucidated at the systems level. Here, we report systems-level response of Escherichia coli to silver nanoparticles using transcriptome-based biochemical and phenotype assays. Notably, we provided the evidence that anaerobic respiration is induced upon exposure to silver nanoparticles. Further we showed that anaerobic respiration-related regulators and enzymes play an important role in E. coli resistance to silver nanoparticles. In particular, our results suggest that arcA is essential for resistance against silver NPs and the deletion of fnr, fdnH and narH significantly increases the resistance. We envision that this study offers novel insights into modes of antimicrobial action of silver nanoparticles, and cellular mechanisms contributing to the development of microbial resistance to silver nanoparticles. 2013-07-09T02:37:47Z 2019-12-06T20:24:38Z 2013-07-09T02:37:47Z 2019-12-06T20:24:38Z 2012 2012 Journal Article Du, H., Lo, T.-M., Sitompul, J., & Chang, M. W. (2012). Systems-level analysis of Escherichia coli response to silver nanoparticles: The roles of anaerobic respiration in microbial resistance. Biochemical and Biophysical Research Communications, 424(4), 657–662. 0006-291X https://hdl.handle.net/10356/100574 http://hdl.handle.net/10220/11038 10.1016/j.bbrc.2012.06.134 en Biochemical and biophysical research communications © 2012 Elsevier Inc. |
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Despite extensive use of silver nanoparticles for antimicrobial applications, cellular mechanisms underlying microbial response to silver nanoparticles remain to be further elucidated at the systems level. Here, we report systems-level response of Escherichia coli to silver nanoparticles using transcriptome-based biochemical and phenotype assays. Notably, we provided the evidence that anaerobic respiration is induced upon exposure to silver nanoparticles. Further we showed that anaerobic respiration-related regulators and enzymes play an important role in E. coli resistance to silver nanoparticles. In particular, our results suggest that arcA is essential for resistance against silver NPs and the deletion of fnr, fdnH and narH significantly increases the resistance. We envision that this study offers novel insights into modes of antimicrobial action of silver nanoparticles, and cellular mechanisms contributing to the development of microbial resistance to silver nanoparticles. |
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School of Chemical and Biomedical Engineering |
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School of Chemical and Biomedical Engineering Du, Huamao Lo, Tat-Ming Sitompul, Johnner Chang, Matthew Wook |
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Article |
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Du, Huamao Lo, Tat-Ming Sitompul, Johnner Chang, Matthew Wook |
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Du, Huamao Lo, Tat-Ming Sitompul, Johnner Chang, Matthew Wook Systems-level analysis of Escherichia coli response to silver nanoparticles : the roles of anaerobic respiration in microbial resistance |
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Du, Huamao |
title |
Systems-level analysis of Escherichia coli response to silver nanoparticles : the roles of anaerobic respiration in microbial resistance |
title_short |
Systems-level analysis of Escherichia coli response to silver nanoparticles : the roles of anaerobic respiration in microbial resistance |
title_full |
Systems-level analysis of Escherichia coli response to silver nanoparticles : the roles of anaerobic respiration in microbial resistance |
title_fullStr |
Systems-level analysis of Escherichia coli response to silver nanoparticles : the roles of anaerobic respiration in microbial resistance |
title_full_unstemmed |
Systems-level analysis of Escherichia coli response to silver nanoparticles : the roles of anaerobic respiration in microbial resistance |
title_sort |
systems-level analysis of escherichia coli response to silver nanoparticles : the roles of anaerobic respiration in microbial resistance |
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2013 |
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https://hdl.handle.net/10356/100574 http://hdl.handle.net/10220/11038 |
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1681042705542545408 |