Doughty D M, Sayavedra-Soto L A, Arp D J, Bottomley P J
Department of Microbiology, Nash Hall, Room 220, Oregon State University, Corvallis, OR 97331-3804, USA.
J Bacteriol. 2006 Apr;188(7):2586-92. doi: 10.1128/JB.188.7.2586-2592.2006.
Physiological and regulatory mechanisms that allow the alkane-oxidizing bacterium Pseudomonas butanovora to consume C2 to C8 alkane substrates via butane monooxygenase (BMO) were examined. Striking differences were observed in response to even- versus odd-chain-length alkanes. Propionate, the downstream product of propane oxidation and of the oxidation of other odd-chain-length alkanes following beta-oxidation, was a potent repressor of BMO expression. The transcriptional activity of the BMO promoter was reduced with as little as 10 microM propionate, even in the presence of appropriate inducers. Propionate accumulated stoichiometrically when 1-propanol and propionaldehyde were added to butane- and ethane-grown cells, indicating that propionate catabolism was inactive during growth on even-chain-length alkanes. In contrast, propionate consumption was induced (about 80 nmol propionate consumed.min(-1).mg protein(-1)) following growth on the odd-chain-length alkanes, propane and pentane. The induction of propionate consumption could be brought on by the addition of propionate or pentanoate to the growth medium. In a reporter strain of P. butanovora in which the BMO promoter controls beta-galactosidase expression, only even-chain-length alcohols (C2 to C8) induced beta-galactosidase following growth on acetate or butyrate. In contrast, both even- and odd-chain-length alcohols (C3 to C7) were able to induce beta-galactosidase following the induction of propionate consumption by propionate or pentanoate.
对允许烷烃氧化细菌布氏假单胞菌通过丁烷单加氧酶(BMO)消耗C2至C8烷烃底物的生理和调节机制进行了研究。观察到对偶数链长与奇数链长烷烃的反应存在显著差异。丙酸是丙烷氧化以及其他奇数链长烷烃经β-氧化后的下游产物,是BMO表达的有效阻遏物。即使存在合适的诱导剂,BMO启动子的转录活性在丙酸浓度低至10微摩尔时也会降低。当将1-丙醇和丙醛添加到以丁烷和乙烷培养的细胞中时,丙酸按化学计量积累,这表明在以偶数链长烷烃生长期间丙酸分解代谢不活跃。相反,在以奇数链长烷烃丙烷和戊烷生长后,丙酸消耗被诱导(约80纳摩尔丙酸消耗·分钟-1·毫克蛋白质-1)。向生长培养基中添加丙酸或戊酸可诱导丙酸消耗。在布氏假单胞菌的一个报告菌株中,BMO启动子控制β-半乳糖苷酶的表达,只有偶数链长的醇(C2至C8)在以乙酸盐或丁酸盐生长后诱导β-半乳糖苷酶。相反,在通过丙酸或戊酸诱导丙酸消耗后,偶数链长和奇数链长的醇(C3至C7)都能够诱导β-半乳糖苷酶。