Effect of divalent metals on Hg(II) uptake and methylation by bacteria

The effect of Zn(II) addition on the (A) uptake and (B) methylation of Hg(II) in washed cell preparations of G. sulfurreducens containing 100 μM l-cysteine, 50 nM Hg(II), and 5.4 mM Cl– (pH 6.8). Filled symbols denote control assays lacking added Zn(II), while open symbols denote assays containing 50 μM total Zn (9.7 μM Zn’). Individual assay vials were followed over time and are indicated with the same symbol in (A) and (B). Data normalized to both protein (left axis) and cell number (right axis) for direct comparison with previous studies and other Figures.

Author: Schaefer, JK; Szczuka, A; Morel, FM

Description: The production of methylmercury by some bacteria is a key first step in the accumulation and biomagnification of this toxic substance in aquatic food webs, a major human health concern. By direct measurement of cellular Hg(II) uptake in model iron and sulfate reducing bacteria, we have observed that specific trace metals, such as Zn(II) and Cd(II), inhibit uptake and methylation in these organisms, whereas other metals, such as Ni(II), Co(II), or Fe(II), do not. The inhibition of Hg(II) methylation by Zn(II) was competitive in nature and related to the concentration of inorganically complexed Zn(II) (Zn’). The inhibition of Hg(II) methylation was alleviated by decreasing the free Zn’ concentration through complexation with nitrilotriacetic acid without altering the speciation of Hg(II). The inhibitory effect by Zn(II) was observed when either Hg-cysteine complexes or neutral HgCl2 dominated the speciation of Hg(II), demonstrating that both charged and neutral species are transported into the cytosol by an active rather than passive process. We propose that Hg(II) uptake is the result of its accidental uptake by metal transporter(s), possibly one effecting the transport of Zn(II).

Subject headings: Desulfovibrio desulfuricans/drug effects/metabolism; Geobacter/drug effects/metabolism; Mercury/metabolism; Metals, Heavy/pharmacology; Methylmercury Compounds/metabolism; Nitrilotriacetic Acid/metabolism

Publication year: 2014

Journal or book title: Environmental science & technology

Volume: 48

Issue: 5

Pages: 3007-3013

Find the full text: https://www.strategian.com/fulltext/Schaefer2014.pdf

Find more like this one (cited by): https://scholar.google.com/scholar?cites=7292633515245602115&as_sdt=1000005&sciodt=0,16&hl=en

Serial number: 4193

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