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1.
Environ Microbiol ; 19(10): 4326-4348, 2017 10.
Artigo em Inglês | MEDLINE | ID: mdl-28892295

RESUMO

Campylobacter jejuni, the most frequent cause of food-borne bacterial gastroenteritis worldwide, is a microaerophile that has to survive high environmental oxygen tensions, adapt to oxygen limitation in the intestine and resist host oxidative attack. Here, oxygen-dependent changes in C. jejuni physiology were studied at constant growth rate using carbon (serine)-limited continuous chemostat cultures. We show that a perceived aerobiosis scale can be calibrated by the acetate excretion flux, which becomes zero when metabolism is fully aerobic (100% aerobiosis). Transcriptome changes in a downshift experiment from 150% to 40% aerobiosis revealed many novel oxygen-regulated genes and highlighted re-modelling of the electron transport chains. A label-free proteomic analysis showed that at 40% aerobiosis, many proteins involved in host colonisation (e.g., PorA, CadF, FlpA, CjkT) became more abundant. PorA abundance increased steeply below 100% aerobiosis. In contrast, several citric-acid cycle enzymes, the peptide transporter CstA, PEB1 aspartate/glutamate transporter, LutABC lactate dehydrogenase and PutA proline dehydrogenase became more abundant with increasing aerobiosis. We also observed a co-ordinated response of oxidative stress protection enzymes and Fe-S cluster biogenesis proteins above 100% aerobiosis. Our approaches reveal key virulence factors that respond to restricted oxygen availability and specific transporters and catabolic pathways activated with increasing aerobiosis.


Assuntos
Aerobiose/fisiologia , Campylobacter jejuni/metabolismo , Campylobacter jejuni/patogenicidade , Estresse Oxidativo/fisiologia , Oxigênio/metabolismo , Infecções por Campylobacter/microbiologia , Campylobacter jejuni/genética , Humanos , Oxirredução , Proteoma/metabolismo , Proteômica , Transcriptoma/genética , Fatores de Virulência/genética , Fatores de Virulência/metabolismo
2.
Microbiology (Reading) ; 155(Pt 1): 80-94, 2009 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-19118349

RESUMO

Campylobacter jejuni is a prevalent cause of food-borne diarrhoeal illness in humans. Understanding of the physiological and metabolic capabilities of the organism is limited. We report a detailed analysis of the C. jejuni growth cycle in batch culture. Combined transcriptomic, phenotypic and metabolic analysis demonstrates a highly dynamic 'stationary phase', characterized by a peak in motility, numerous gene expression changes and substrate switching, despite transcript changes that indicate a metabolic downshift upon the onset of stationary phase. Video tracking of bacterial motility identifies peak activity during stationary phase. Amino acid analysis of culture supernatants shows a preferential order of amino acid utilization. Proton NMR (1H-NMR) highlights an acetate switch mechanism whereby bacteria change from acetate excretion to acetate uptake, most probably in response to depletion of other substrates. Acetate production requires pta (Cj0688) and ackA (Cj0689), although the acs homologue (Cj1537c) is not required. Insertion mutants in Cj0688 and Cj0689 maintain viability less well during the stationary and decline phases of the growth cycle than wild-type C. jejuni, suggesting that these genes, and the acetate pathway, are important for survival.


Assuntos
Acetatos/metabolismo , Proteínas de Bactérias/metabolismo , Campylobacter jejuni/crescimento & desenvolvimento , Campylobacter jejuni/fisiologia , Perfilação da Expressão Gênica , Regulação Bacteriana da Expressão Gênica , Proteínas de Bactérias/genética , Campylobacter jejuni/genética , Campylobacter jejuni/metabolismo , Contagem de Colônia Microbiana , Meios de Cultura , Espectroscopia de Ressonância Magnética , Microscopia de Contraste de Fase , Microscopia de Vídeo , Movimento , Análise de Sequência com Séries de Oligonucleotídeos/métodos , Fenótipo , Reação em Cadeia da Polimerase Via Transcriptase Reversa
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