A model for mercuric ion reduction in recombinantEscherichia coli
Author:
Publisher
Wiley
Subject
Applied Microbiology and Biotechnology,Bioengineering,Biotechnology
Reference36 articles.
1. Microbial Transformations of Metals
2. Tn5 insertion mutations in the mercuric ion resistance genes derived from plasmid R100
3. Biochemical characterization of HgCl2-inducible polypeptides encoded by the mer operon of plasmid R100
4. Polypeptides specified by the mercuric resistance (mer) operon of plasmid R100
5. The nucleotide sequence of the mercuric resistance operons of plasmid R100 and transposon Tn501: further evidence for mer genes which enhance the activity of the mercuric ion detoxification system
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2. Structured cell simulator coupled with a fluidized bed bioreactor model to predict the adaptive mercury uptake by E. coli cells;Computers & Chemical Engineering;2013-11
3. Kinetics of Mercury Reduction bySerratia marcescensMercuric Reductase Expressed byPseudomonas putida Strains;Engineering in Life Sciences;2005-10
4. Microbial Removal of Ionic Mercury in a Three-Phase Fluidized Bed Reactor;Environmental Science & Technology;2004-02-03
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