Sung Ji Youn, Lee Young Nam
Division of Life Sciences, College of Natural Sciences, Chungbuk National University, Cheongju 361-763, Republic of Korea.
J Microbiol. 2007 Aug;45(4):318-25.
Glucose 6-phosphate dehydrogenase (G6PDH, EC 1.1.1.49) in Deinococcus radiophilus, an extraordinarily UV-resistant bacterium, was investigated to gain insight into its resistance as it was shown to be involved in a scavenging system of superoxide (O2-1) and peroxide (O2-2) generated by UV and oxidative stresses. D. radiophilus possesses two G6PDH isoforms: G6PDH-1 and G6PDH-2, both showing dual coenzyme specificity for NAD and NADP. Both enzymes were detected throughout the growth phase; however, the substantial increase in G6PDH-1 observed at stationary phase or as the results of external oxidative stress indicates that this enzyme is inducible under stressful environmental conditions. The G6PDH-1 and G6PDH-2 were purified 122- and 44-fold (using NADP as cofactor), respectively. The purified G6PDH-1 and G6PDH-2 had the specific activity of 2,890 and 1,033 U/mg protein (using NADP as cofactor) and 3,078 and 1,076 U/mg protein (using NAD as cofactor), respectively. The isoforms also evidenced distinct structures; G6PDH-1 was a tetramer of 35 kDa subunits, whereas G6PDH-2 was a dimer of 60 kDa subunits. The pIs of G6PDH-1 and G6PDH-2 were 6.4 and 5.7, respectively. Both G6PDH-1 and G6PDH-2 were inhibited by both ATP and oleic acid, but G6PDH-1 was found to be more susceptible to oleic acid than G6PDH-2. The profound inhibition of both enzymes by beta-naphthoquinone-4-sulfonic acid suggests the involvement of lysine at their active sites. Cu2+ was a potent inhibitor to G6PDH-2, but a lesser degree to G6PDH-1. Both G6PDH-1 and G6PDH-2 showed an optimum activity at pH 8.0 and 30 degrees .
对嗜放射球菌(一种对紫外线具有极强抗性的细菌)中的葡萄糖-6-磷酸脱氢酶(G6PDH,EC 1.1.1.49)进行了研究,以深入了解其抗性,因为已证明该酶参与了由紫外线和氧化应激产生的超氧化物(O2-1)和过氧化物(O2-2)的清除系统。嗜放射球菌拥有两种G6PDH同工型:G6PDH-1和G6PDH-2,二者对NAD和NADP均表现出双重辅酶特异性。在整个生长阶段都检测到了这两种酶;然而,在稳定期或外部氧化应激作用下观察到G6PDH-1显著增加,这表明该酶在应激环境条件下是可诱导的。G6PDH-1和G6PDH-2分别纯化了122倍和44倍(以NADP为辅因子)。纯化后的G6PDH-1和G6PDH-2的比活性分别为2,890和1,033 U/mg蛋白质(以NADP为辅因子)以及3,078和1,076 U/mg蛋白质(以NAD为辅因子)。这些同工型还表现出不同的结构;G6PDH-1是由35 kDa亚基组成的四聚体,而G6PDH-2是由60 kDa亚基组成的二聚体。G6PDH-1和G6PDH-2的pI分别为6.4和5.7。ATP和油酸均能抑制G6PDH-1和G6PDH-2,但发现G6PDH-1比G6PDH-2对油酸更敏感。β-萘醌-4-磺酸对这两种酶都有强烈抑制作用,这表明其活性位点存在赖氨酸。Cu2+是G6PDH-2的有效抑制剂,但对G6PDH-1的抑制程度较小。G6PDH-1和G6PDH-2在pH 8.0和30℃时均表现出最佳活性。