Alexandre G, Bally R, Taylor B L, Zhulin I B
Laboratoire d'Ecologie Microbienne du Sol, CNRS-UMR 5557, l'Universite Claude-Bernard, 69622 Villeurbanne Cedex, France.
J Bacteriol. 1999 Nov;181(21):6730-8. doi: 10.1128/JB.181.21.6730-6738.1999.
Laccase, a p-diphenol oxidase typical of plants and fungi, has been found recently in a proteobacterium, Azospirillum lipoferum. Laccase activity was detected in both a natural isolate and an in vitro-obtained phase variant that originated from the laccase-negative wild type. In this study, the electron transport systems of the laccase-positive variant and its parental laccase-negative forms were compared. During exponential (but not stationary) growth under fully aerobic (but not under microaerobic) conditions, the laccase-positive variant lost a respiratory branch that is terminated in a cytochrome c oxidase of the aa(3) type; this was most likely due to a defect in the biosynthesis of a heme component essential for the oxidase. The laccase-positive variant was significantly less sensitive to the inhibitory action of quinone analogs and fully resistant to inhibitors of the bc(1) complex, apparently due to the rearrangements of its respiratory system. We propose that the loss of the cytochrome c oxidase-containing branch in the variant is an adaptive strategy to the presence of intracellular oxidized quinones, the products of laccase activity.
漆酶是植物和真菌中典型的对二苯酚氧化酶,最近在一种变形菌——产脂固氮螺菌中被发现。在一个天然分离株和一个源自漆酶阴性野生型的体外获得的相变变体中均检测到了漆酶活性。在本研究中,对漆酶阳性变体及其亲本漆酶阴性形式的电子传递系统进行了比较。在完全需氧(而非微需氧)条件下的指数生长期(而非稳定期),漆酶阳性变体失去了一条以aa(3)型细胞色素c氧化酶为终端的呼吸支路;这很可能是由于该氧化酶必需的血红素成分生物合成存在缺陷。漆酶阳性变体对醌类似物的抑制作用明显不敏感,并且对bc(1)复合体抑制剂完全抗性,这显然是由于其呼吸系统的重排。我们认为,变体中含细胞色素c氧化酶支路的丧失是对细胞内氧化醌(漆酶活性产物)存在的一种适应性策略。