Genetic Engineering of Escherichia coli for Enhanced Uptake and Bioaccumulation of Mercury

Author:

Bae Weon12,Mehra Rajesh K.2,Mulchandani Ashok1,Chen Wilfred1

Affiliation:

1. Department of Chemical and Environmental Engineering1 and

2. Environmental Toxicology Program,2 University of California, Riverside, California 92521

Abstract

ABSTRACT Synthetic phytochelatins (ECs) are a new class of metal-binding peptides with a repetitive metal-binding motif, (Glu-Cys) n Gly, which were shown to bind heavy metals more effectively than metallothioneins. However, the limited uptake across the cell membrane is often the rate-limiting factor for the intracellular bioaccumulation of heavy metals by genetically engineered organisms expressing these metal-binding peptides. In this paper, two potential solutions were investigated to overcome this uptake limitation either by coexpressing an Hg 2+ transport system with (Glu-Cys) 20 Gly (EC20) or by directly expressing EC20 on the cell surface. Both approaches were equally effective in increasing the bioaccumulation of Hg 2+ . Since the available transport systems are presently limited to only a few heavy metals, our results suggest that bioaccumulation by bacterial sorbents with surface-expressed metal-binding peptides may be useful as a universal strategy for the cleanup of heavy metal contamination.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

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