Efflux-mediated heavy metal resistance in prokaryotes
Устойчивость прокариот к тяжелым металлам, опосредованная эффлюксом
2003-05-12
SCID: 54.1/bvj23zx9
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CBA efflux systemsP-type ATPasesRalstonia metalliduransefflux pumpsheavy metal resistance
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Abstract (AI)
What makes a heavy metal resistant bacterium heavy metal resistant? The mechanisms of action, physiological functions, and distribution of metal-exporting proteins are outlined, namely: CBA efflux pumps driven by proteins of the resistance-nodulation-cell division superfamily, P-type ATPases, cation diffusion facilitator and chromate proteins, NreB- and CnrT-like resistance factors. The complement of efflux systems of 63 sequenced prokaryotes was compared with that of the heavy metal resistant bacterium Ralstonia metallidurans. This comparison shows that heavy metal resistance is the result of multiple layers of resistance systems with overlapping substrate specificities, but unique functions. Some of these systems are widespread and serve in the basic defense of the cell against superfluous heavy metals, but some are highly specialized and occur only in a few bacteria. Possession of the latter systems makes a bacterium heavy metal resistant.
Key Findings
1
Comparison of 63 sequenced prokaryotes with Ralstonia metallidurans shows that heavy-metal resistance depends on multiple efflux layers with overlapping substrate specificities but distinct functions.
2
Highly specialized efflux systems occur in relatively few bacteria, and their possession contributes to pronounced heavy-metal resistance.
3
The paper characterizes major prokaryotic heavy-metal export systems, including CBA pumps, P-type ATPases, cation diffusion facilitators, chromate proteins, NreB-like, and CnrT-like factors.
4
Widespread efflux systems provide baseline cellular defense against excess heavy metals across prokaryotes.
Research Object
heavy metal resistance systems in prokaryotes, including metal-exporting efflux proteins
Research Subject
the mechanisms, physiological functions, distribution, substrate specificities, and complementary roles of multiple heavy-metal efflux systems
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2003-05-12
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