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1.
Biomacromolecules ; 22(7): 2910-2920, 2021 07 12.
Artigo em Inglês | MEDLINE | ID: mdl-34085824

RESUMO

Antibiotic-resistant Gram-negative bacteria are emergent pathogens, causing millions of infections worldwide. While there are several classes of antibiotics that are effective against Gram-positive bacteria, the outer membrane (OM) of Gram-negative bacteria excludes high-molecular-weight hydrophobic antibiotics, making these species intrinsically resistant to several classes of antibiotics, including polyketides, aminocoumarins, and macrolides. The overuse of antibiotics such as ß-lactams has also promoted the spread of resistance genes throughout Gram-negative bacteria, including the production of extended spectrum ß-lactamases (ESBLs). The combination of innate and acquired resistance makes it extremely challenging to identify antibiotics that are effective against Gram-negative bacteria. In this study, we have demonstrated the synergistic effect of outer membrane-permeable cationic polyurethanes with rifampicin, a polyketide that would otherwise be excluded by the OM, on different strains of E. coli, including a clinically isolated uropathogenic multidrug-resistant (MDR) E. coli. Rifampicin combined with a low-dose treatment of a cationic polyurethane reduced the MIC in E. coli of rifampicin by up to 64-fold. The compositions of cationic polyurethanes were designed to have low hemolysis and low cell cytotoxicity while maintaining high antibacterial activity. Our results demonstrate the potential to rescue the large number of available OM-excluded antibiotics to target normally resistant Gram-negative bacteria via synergistic action with these cationic polyurethanes, acting as a novel antibiotic adjuvant class.


Assuntos
Escherichia coli , Rifampina , Antibacterianos/farmacologia , Bactérias Gram-Negativas , Testes de Sensibilidade Microbiana , Poliuretanos , Rifampina/farmacologia
2.
Microbiology (Reading) ; 160(Pt 2): 270-278, 2014 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-24222618

RESUMO

Haem-dependent catalase is an antioxidant enzyme that degrades H2O2, producing H2O and O2, and is common in aerobes. Catalase is present in some strictly anaerobic methane-producing archaea (methanogens), but the importance of catalase to the antioxidant system of methanogens is poorly understood. We report here that a survey of the sequenced genomes of methanogens revealed that the majority of species lack genes encoding catalase. Moreover, Methanosarcina acetivorans is a methanogen capable of synthesizing haem and encodes haem-dependent catalase in its genome; yet, Methanosarcina acetivorans cells lack detectable catalase activity. However, inducible expression of the haem-dependent catalase from Escherichia coli (EcKatG) in the chromosome of Methanosarcina acetivorans resulted in a 100-fold increase in the endogenous catalase activity compared with uninduced cells. The increased catalase activity conferred a 10-fold increase in the resistance of EcKatG-induced cells to H2O2 compared with uninduced cells. The EcKatG-induced cells were also able to grow when exposed to levels of H2O2 that inhibited or killed uninduced cells. However, despite the significant increase in catalase activity, growth studies revealed that EcKatG-induced cells did not exhibit increased tolerance to O2 compared with uninduced cells. These results support the lack of catalase in the majority of methanogens, since methanogens are more likely to encounter O2 rather than high concentrations of H2O2 in the natural environment. Catalase appears to be a minor component of the antioxidant system in methanogens, even those that are aerotolerant, including Methanosarcina acetivorans. Importantly, the experimental approach used here demonstrated the feasibility of engineering beneficial traits, such as H2O2 tolerance, in methanogens.


Assuntos
Catalase/biossíntese , Escherichia coli/enzimologia , Expressão Gênica , Peróxido de Hidrogênio/metabolismo , Methanosarcina/enzimologia , Methanosarcina/metabolismo , Oxigênio/metabolismo , Catalase/genética , Escherichia coli/genética , Proteínas de Escherichia coli/biossíntese , Proteínas de Escherichia coli/genética , Peróxido de Hidrogênio/toxicidade , Methanosarcina/efeitos dos fármacos , Methanosarcina/genética , Viabilidade Microbiana/efeitos dos fármacos , Oxigênio/toxicidade , Proteínas Recombinantes/biossíntese , Proteínas Recombinantes/genética
3.
J Biol Chem ; 287(22): 18510-23, 2012 May 25.
Artigo em Inglês | MEDLINE | ID: mdl-22457356

RESUMO

Subunit D of multisubunit RNA polymerase from many species of archaea is predicted to bind one to two iron-sulfur (Fe-S) clusters, the function of which is unknown. A survey of encoded subunit D in the genomes of sequenced archaea revealed six distinct groups based on the number of complete or partial [4Fe-4S] cluster motifs within domain 3. Only subunit D from strictly anaerobic archaea, including all members of the Methanosarcinales, are predicted to bind two [4Fe-4S] clusters. We report herein the purification and characterization of Methanosarcina acetivorans subunit D in complex with subunit L. Expression of subunit D and subunit L in Escherichia coli resulted in the purification of a D-L heterodimer with only partial [4Fe-4S] cluster content. Reconstitution in vitro with iron and sulfide revealed that the M. acetivorans D-L heterodimer is capable of binding two redox-active [4Fe-4S] clusters. M. acetivorans subunit D deleted of domain 3 (DΔD3) was still capable of co-purifying with subunit L but was devoid of [4Fe-4S] clusters. Affinity purification of subunit D or subunit DΔD3 from M. acetivorans resulted in the co-purification of endogenous subunit L with each tagged subunit D. Overall, these results suggest that domain 3 of subunit D is required for [4Fe-4S] cluster binding, but the [4Fe-4S] clusters and domain 3 are not required for the formation of the D-L heterodimer. However, exposure of two [4Fe-4S] cluster-containing D-L heterodimer to oxygen resulted in loss of the [4Fe-4S] clusters and subsequent protein aggregation, indicating that the [4Fe-4S] clusters influence the stability of the D-L heterodimer and therefore have the potential to regulate the assembly and/or activity of RNA polymerase in an oxidant-dependent manner.


Assuntos
RNA Polimerases Dirigidas por DNA/metabolismo , Regulação da Expressão Gênica , Proteínas Ferro-Enxofre/metabolismo , Methanosarcina/enzimologia , Oxigênio/metabolismo , Transcrição Gênica , Sequência de Aminoácidos , Sequência de Bases , Primers do DNA , RNA Polimerases Dirigidas por DNA/química , Dimerização , Dados de Sequência Molecular , Oxirredução , Reação em Cadeia da Polimerase , Homologia de Sequência de Aminoácidos
4.
J Bacteriol ; 193(9): 2208-17, 2011 May.
Artigo em Inglês | MEDLINE | ID: mdl-21398541

RESUMO

Salmonella enterica serovar Typhimurium possesses a stimulon of genes that are differentially regulated in response to conditions of low fluid shear force that increase bacterial virulence and alter other phenotypes. In this study, we show that a previously uncharacterized member of this stimulon, ydcI or STM1625, encodes a highly conserved DNA binding protein with related homologs present in a range of gram-negative bacterial genera. Gene expression analysis shows that ydcI is expressed in different bacterial genera and is involved in its autoregulation in S. Typhimurium. We demonstrate that purified YdcI protein specifically binds a DNA probe consisting of its own promoter sequence. We constructed an S. Typhimurium ΔydcI mutant strain and show that this strain is more sensitive to both organic and inorganic acid stress than is an isogenic WT strain, and this defect is complemented in trans. Moreover, our data indicate that ydcI is part of the rpoS regulon related to stress resistance. The S. Typhimurium ΔydcI mutant was able to invade cultured cells to the same degree as the WT strain, but a strain in which ydcI expression is induced invaded cells at a level 2.8 times higher than that of the WT. In addition, induction of ydcI expression in S. Typhimurium resulted in the formation of a biofilm in stationary-phase cultures. These data indicate the ydcI gene encodes a conserved DNA binding protein involved with aspects of prokaryotic biology related to stress resistance and possibly virulence.


Assuntos
Proteínas de Bactérias/metabolismo , Sequência Conservada , DNA Bacteriano/metabolismo , Salmonella typhimurium/metabolismo , Sequência de Aminoácidos , Proteínas de Bactérias/genética , Biofilmes , Regulação Bacteriana da Expressão Gênica/fisiologia , Anotação de Sequência Molecular , Mutação , Salmonella typhimurium/genética , Estresse Fisiológico
5.
Microbiologyopen ; 6(1)2017 02.
Artigo em Inglês | MEDLINE | ID: mdl-27557794

RESUMO

Subunits Rpo3 and Rpb3/AC40 of RNA polymerase (RNAP) from many archaea and some eukaryotes, respectively, contain a ferredoxin-like domain (FLD) predicted to bind one or two [4Fe-4S] clusters postulated to play a role in regulating the assembly of RNAP. To test this hypothesis, the two [4Fe-4S] cluster Rpo3 from Methanosarcina acetivorans was modified to generate variants that lack the FLD or each [4Fe-4S] cluster. Viability of gene replacement mutants revealed that neither the FLD nor the ability of the FLD to bind either [4Fe-4S] cluster is essential. Nevertheless, each mutant demonstrated impaired growth due to significantly lower RNAP activity when compared to wild type. Affinity purification of tagged Rpo3 variants from M. acetivorans strains revealed that neither the FLD nor each [4Fe-4S] cluster is required for the formation of a Rpo3/11 heterodimer, the first step in the assembly of RNAP. However, the association of the Rpo3/11 heterodimer with catalytic subunits Rpo2' and Rpo1″ was diminished by the removal of the FLD and each cluster, with the loss of cluster 1 having a more substantial effect than the loss of cluster 2. These results reveal that the FLD and [4Fe-4S] clusters, particularly cluster 1, are key determinants in the post Rpo3/11 heterodimer assembly of RNAP in M. acetivorans.


Assuntos
RNA Polimerases Dirigidas por DNA/genética , Proteínas Ferro-Enxofre/genética , Methanosarcina/enzimologia , Methanosarcina/genética , RNA Polimerases Dirigidas por DNA/metabolismo , Ferredoxinas/metabolismo , Variação Genética/genética , Proteínas Ferro-Enxofre/metabolismo , Methanosarcina/crescimento & desenvolvimento , Estrutura Terciária de Proteína , Subunidades Proteicas/genética
6.
Genome Announc ; 5(39)2017 Sep 28.
Artigo em Inglês | MEDLINE | ID: mdl-28963219

RESUMO

Methanobrevibacter smithii is a common inhabitant of the human gut. Here, we present a draft genome sequence of M. smithii isolate WWM1085, obtained from a human stool sample. This sequence will improve our understanding of the genetic diversity of this human-associated methanogen.

7.
PLoS One ; 7(3): e33080, 2012.
Artigo em Inglês | MEDLINE | ID: mdl-22412985

RESUMO

We have previously reported the cloning of the Salmonella enterica serovar Typhimurium SPI-1 secretion system and the use of this clone to functionally complement a ΔSPI-1 strain for type III secretion activity. In the current study, we discovered that S. Typhimurium cultures containing cloned SPI-1 display an adherent biofilm and cell clumps in the media. This phenotype was associated with hyper-expression of SPI-1 type III secretion functions. The biofilm and cell clumps were associated with copious amounts of secreted SPI-1 protein substrates SipA, SipB, SipC, SopB, SopE, and SptP. We used a C-terminally FLAG-tagged SipA protein to further demonstrate SPI-1 substrate association with the cell aggregates using fluorescence microscopy and immunogold electron microscopy. Different S. Typhimurium backgrounds and both flagellated and nonflagellated strains displayed the biofilm phenotype. Mutations in genes essential for known bacterial biofilm pathways (bcsA, csgBA, bapA) did not affect the biofilms formed here indicating that this phenomenon is independent of established biofilm mechanisms. The SPI-1-mediated biofilm was able to massively recruit heterologous non-biofilm forming bacteria into the adherent cell community. The results indicate a bacterial aggregation phenotype mediated by elevated SPI-1 type III secretion activity with applications for engineered biofilm formation, protein purification strategies, and antigen display.


Assuntos
Sistemas de Secreção Bacterianos/fisiologia , Biofilmes/crescimento & desenvolvimento , Salmonella typhimurium/crescimento & desenvolvimento , Salmonella typhimurium/metabolismo , Proteínas de Bactérias/genética , Proteínas de Bactérias/metabolismo , Flagelos/fisiologia , Salmonella typhimurium/ultraestrutura
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