Kavanagh E P, Hill S
AFRC Institute of Plant Science Research, Nitrogen Fixation Laboratory, University of Sussex, Brighton, UK.
J Gen Microbiol. 1993 Jun;139 Pt 6:1307-14. doi: 10.1099/00221287-139-6-1307.
A purpose-built oxystat has been used to study reversible inhibition of nitrogenase by O2 in the facultative anaerobe Klebsiella pneumoniae. C2H2-reducing activity in samples from either an anaerobic glucose-limited or an O2-limited diazotrophic chemostat culture was completely inhibited by exposure to a dissolved O2 concentration (DOC) of 1.5 microM or above. Subsequently, under anaerobic conditions, C2H2-reducing activity returned in the absence of de novo protein synthesis. The amount of activity returning never reached 100% of the initial anaerobic activity before O2 treatment. The degree of reversibility was inversely proportional to the log of DOC during exposure and was decreased by increasing the time of exposure to O2 (about 60% reversibility occurred after a 20 min exposure to 6 microM-O2). The failure to obtain complete recovery of activity was apparently not due to inactivation of the very O2-sensitive pyruvate-flavodoxin oxidoreductase (nifJ product) which provides electrons for nitrogenase activity in vivo. Samples from the O2-limited culture behaved similarly to those limited by glucose. Thus, 'training' of the organism to use O2 during growth does not influence the tolerance of nitrogenase to O2. Since the behaviour towards O2 reported here for K. pneumoniae differs from that known to occur in Azotobacter, the mechanism of protection of nitrogenase from O2 damage may differ in these organisms.
一种特制的氧测定仪已被用于研究兼性厌氧菌肺炎克雷伯菌中氧气对固氮酶的可逆抑制作用。来自厌氧葡萄糖限制或氧气限制的重氮营养恒化器培养物的样品中的乙炔还原活性,在暴露于溶解氧浓度(DOC)为1.5微摩尔或更高时被完全抑制。随后,在厌氧条件下,乙炔还原活性在没有从头合成蛋白质的情况下恢复。恢复的活性量从未达到氧气处理前初始厌氧活性的100%。可逆程度与暴露期间DOC的对数成反比,并且通过增加暴露于氧气的时间而降低(暴露于6微摩尔氧气20分钟后约60%的可逆性发生)。活性未能完全恢复显然不是由于对氧气非常敏感的丙酮酸-黄素氧还蛋白氧化还原酶(nifJ产物)失活,该酶在体内为固氮酶活性提供电子。来自氧气限制培养物的样品与受葡萄糖限制的样品表现相似。因此,生物体在生长过程中“训练”使用氧气并不影响固氮酶对氧气的耐受性。由于这里报道的肺炎克雷伯菌对氧气的行为与已知在固氮菌中发生的行为不同,这些生物体中固氮酶免受氧气损伤的保护机制可能不同。