Characterization of the binding capacity of mercurial species in Lactobacillus strains

被引:29
作者
Alcantara, Cristina [1 ]
Jadan-Piedra, Carlos [2 ]
Velez, Dinoraz [2 ]
Devesa, Vicenta [2 ]
Zuniga, Manuel [1 ]
Monedero, Vicente [1 ]
机构
[1] CSIC, Lab Lact Acid Bacteria & Probiot, IATA, Valencia, Spain
[2] CSIC, Lab Trace Elements, IATA, Valencia, Spain
关键词
mercury; methylmercury; Lactobacillus; biosorption; cell wall; LACTIC-ACID BACTERIA; COMPLETE GENOME SEQUENCE; HEAVY-METALS; PLANTARUM CCFM8610; CADMIUM TOXICITY; SURFACE BINDING; LAYER PROTEINS; BIOSORPTION; PROBIOTICS; LEAD;
D O I
10.1002/jsfa.8388
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
BACKGROUNDMetal sequestration by bacteria has been proposed as a strategy to counteract metal contamination in foodstuffs. Lactobacilli can interact with metals, although studies with important foodborne metals such as inorganic [Hg(II)] or organic (CH3Hg) mercury are lacking. Lactobacilli were evaluated for their potential to bind these contaminants and the nature of the interaction was assessed by the use of metal competitors, chemical and enzymatical treatments, and mutants affected in the cell wall structure. RESULTSLactobacillus strains efficiently bound Hg(II) and CH3Hg. Mercury binding by Lactobacillus caseiBL23 was independent of cell viability. In BL23, both forms of mercury were cell wall bound. Their interaction was not inhibited by cations and it was resistant to chelating agents and protein digestion. Lactobacillus casei mutants affected in genes involved in the modulation of the negative charge of the cell wall anionic polymer lipoteichoic acid showed increased mercury biosorption. In these mutants, mercury toxicity was enhanced compared to wild-type bacteria. These data suggest that lipoteichoic acid itself or the physicochemical characteristics that it confers to the cell wall play a major role in mercury complexation. CONCLUSIONThis is the first example of the biosorption of Hg(II) and CH3Hg in lactobacilli and it represents a first step towards their possible use as agents for diminishing mercury bioaccessibility from food at the gastrointestinal tract. (c) 2017 Society of Chemical Industry
引用
收藏
页码:5107 / 5113
页数:7
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