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1.
Microbiology (Reading) ; 159(Pt 3): 515-535, 2013 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-23306674

RESUMO

Whole-genome microarray analysis of Geobacter sulfurreducens grown on insoluble Fe(III) oxide or Mn(IV) oxide versus soluble Fe(III) citrate revealed significantly different expression patterns. The most upregulated genes, omcS and omcT, encode cell-surface c-type cytochromes, OmcS being required for Fe(III) and Mn(IV) oxide reduction. Other electron transport genes upregulated on both metal oxides included genes encoding putative menaquinol : ferricytochrome c oxidoreductase complexes Cbc4 and Cbc5, periplasmic c-type cytochromes Dhc2 and PccF, outer membrane c-type cytochromes OmcC, OmcG and OmcV, multicopper oxidase OmpB, the structural components of electrically conductive pili, PilA-N and PilA-C, and enzymes that detoxify reactive oxygen/nitrogen species. Genes upregulated on Fe(III) oxide encode putative menaquinol : ferricytochrome c oxidoreductase complexes Cbc3 and Cbc6, periplasmic c-type cytochromes, including PccG and PccJ, and outer membrane c-type cytochromes, including OmcA, OmcE, OmcH, OmcL, OmcN, OmcO and OmcP. Electron transport genes upregulated on Mn(IV) oxide encode periplasmic c-type cytochromes PccR, PgcA, PpcA and PpcD, outer membrane c-type cytochromes OmaB/OmaC, OmcB and OmcZ, multicopper oxidase OmpC and menaquinone-reducing enzymes. Genetic studies indicated that MacA, OmcB, OmcF, OmcG, OmcH, OmcI, OmcJ, OmcM, OmcV and PccH, the putative Cbc5 complex subunit CbcC and the putative Cbc3 complex subunit CbcV are important for reduction of Fe(III) oxide but not essential for Mn(IV) oxide reduction. Gene expression patterns for Geobacter uraniireducens were similar. These results demonstrate that the physiology of Fe(III)-reducing bacteria differs significantly during growth on different insoluble and soluble electron acceptors and emphasize the importance of c-type cytochromes for extracellular electron transfer in G. sulfurreducens.


Assuntos
Complexo de Proteínas da Cadeia de Transporte de Elétrons/genética , Complexo de Proteínas da Cadeia de Transporte de Elétrons/metabolismo , Transporte de Elétrons , Compostos Férricos/metabolismo , Geobacter/enzimologia , Geobacter/metabolismo , Compostos de Manganês/metabolismo , Óxidos/metabolismo , DNA Bacteriano/química , DNA Bacteriano/genética , Perfilação da Expressão Gênica , Análise em Microsséries
2.
Biochem Soc Trans ; 30(4): 715-8, 2002 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-12196174

RESUMO

Resistance to mercuric ions in bacteria is conferred by mercuric reductase, which reduces Hg(II) to Hg(0) in the cytoplasmic compartment. Specific mercuric ion transport systems exist to take up Hg(II) salts and deliver them to the active site of the reductase. This short review discusses the role of transport proteins in resistance and the mechanism of transfer of Hg(II) between the mercury-resistance proteins.


Assuntos
Bactérias Gram-Negativas/metabolismo , Compostos de Mercúrio/metabolismo , Mercúrio/metabolismo , Mercúrio/toxicidade , Pseudomonas aeruginosa/metabolismo , Transporte Biológico , Farmacorresistência Bacteriana , Bactérias Gram-Negativas/efeitos dos fármacos , Compostos de Mercúrio/toxicidade , Oxirredutases/metabolismo , Pseudomonas aeruginosa/genética
3.
Appl Environ Microbiol ; 67(7): 3180-7, 2001 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-11425739

RESUMO

Members of the genus Geobacter are the dominant metal-reducing microorganisms in a variety of anaerobic subsurface environments and have been shown to be involved in the bioremediation of both organic and metal contaminants. To facilitate the study of the physiology of these organisms, a genetic system was developed for Geobacter sulfurreducens. The antibiotic sensitivity of this organism was characterized, and optimal conditions for plating it at high efficiency were established. A protocol for the introduction of foreign DNA into G. sulfurreducens by electroporation was also developed. Two classes of broad-host-range vectors, IncQ and pBBR1, were found to be capable of replication in G. sulfurreducens. In particular, the IncQ plasmid pCD342 was found to be a suitable expression vector for this organism. When the information and novel methods described above were utilized, the nifD gene of G. sulfurreducens was disrupted by the single-step gene replacement method. Insertional mutagenesis of this key gene in the nitrogen fixation pathway impaired the ability of G. sulfurreducens to grow in medium lacking a source of fixed nitrogen. Expression of the nifD gene in trans complemented this phenotype. This paper constitutes the first report of genetic manipulation of a member of the Geobacter genus.


Assuntos
Deltaproteobacteria/genética , Proteínas de Fímbrias , Vetores Genéticos , Plasmídeos , Transformação Bacteriana , Antibacterianos/farmacologia , Proteínas de Bactérias , Southern Blotting , Meios de Cultura , Deltaproteobacteria/crescimento & desenvolvimento , Eletroporação , Teste de Complementação Genética , Testes de Sensibilidade Microbiana , Mutagênese Insercional , Fixação de Nitrogênio/genética
4.
FEBS Lett ; 472(1): 78-82, 2000 Apr 21.
Artigo em Inglês | MEDLINE | ID: mdl-10781809

RESUMO

Mercury resistance determinants are widespread in Gram-negative bacteria, but vary in the number and identity of genes present. We have shown that the merF gene from plasmid pMER327/419 encodes a 8.7 kDa mercury transport protein, by determining in vivo mercury volatilisation when MerF is expressed in the presence of mercuric reductase. We have confirmed that MerC of Tn21 is also a mercuric ion transporter. We have been able to detect interaction of the periplasmic protein MerP only with the MerT transporter, and not with MerF or MerC. Hydropathy analysis led to the prediction of models for MerT, MerC and MerF having three, four and two transmembrane regions respectively. In all three cases one pair of cysteine residues is predicted to be within the inner membrane with a second pair of cysteine residues on the cytoplasmic face, and the second helix contains a proline and at least one charged residue. The mechanisms of mercuric ion transport may be similar in these transporters even though their structures in the membrane differ.


Assuntos
Proteínas de Bactérias , Proteínas de Transporte/química , Proteínas de Transporte de Cátions , Escherichia coli/química , Proteínas de Membrana/química , Mercúrio/metabolismo , Sequência de Aminoácidos , Proteínas de Transporte/metabolismo , Eletroforese em Gel de Poliacrilamida , Escherichia coli/metabolismo , Transporte de Íons , Proteínas de Membrana/metabolismo , Modelos Biológicos , Dados de Sequência Molecular , Plasmídeos
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