首页> 外文期刊>Asian Journal of Microbiology, Biotechnology and Environmental Science >INFLUENCE OF DISSOLVED OXYGEN CONCENTRATION ON THE PRODUCTION OF SUPEROXIDE DISMUTASE IN WILD TYPESACCHAROMYCES MELLIS
【24h】

INFLUENCE OF DISSOLVED OXYGEN CONCENTRATION ON THE PRODUCTION OF SUPEROXIDE DISMUTASE IN WILD TYPESACCHAROMYCES MELLIS

机译:溶解氧浓度对野生型甲状腺瘤中超氧化物歧化酶生产的影响

获取原文
获取原文并翻译 | 示例
           

摘要

SOD activity is one of the major defense mechanism against oxidative stress for all the aerobic organisms and industrial production of this enzyme is very essential. The effect of 2 different levels of Dissolved oxygen (Uncontrolled DO and DO at 20%)on SOD production were evaluated. Increasing enzyme activity in S mellis cells cultivated under both conditions was detected in the early exponential phase and an active synthesis was observed during a period of intensive oxygen consumption. More over the time courses of SOD production show 2 maxima. 1st maxima is upto 48 hours. 2nd maxima is from 48 hours to 96 hours. The results demonstrated that the 02 level had a significant influence on SOD activity. Under high DO conditions higher levels of SOD were produced at l^and 2ndmaxima, reaching activities of about 112 and 124 U (mg protein)1 respectively. The number of isoforms did not change under hyperoxic conditions when s mellis was exposed to an atmosphere of 20% 02. There was no significant changein Cu, Zn SOD activity, where as Mn SOD expression increased 10-12 fold by elevated DO. SO it appears that Mn-SOD is the primary defense in S mellis cells against oxygen toxicity. The presence of 59 ng-atom copper and 52 ng-atom zinc (mg enzyme)"1 in thepurified S.mellis Cu, Zn SOD was confirmed by atomic absorption spectrometry.
机译:SOD活性是针对所有有氧生物的氧化应激的主要防御机制之一,这种酶的工业生产是非常重要的。评估了2种不同水平的溶解氧(不受控制的DO和20%)对SOD生产的影响。在两种条件下培养的S mellis细胞中的增加酶活性在早期指数期中检测到,在密集的氧气消耗期间观察到活性合成。更多关于SOD生产的时间课程显示2最大值。第一个最大可达48小时。第二款最大值为48小时至96小时。结果表明,02水平对SOD活性有显着影响。在高的情况下,在L ^和2ndmaxima中产生较高水平的SOD,分别达到约112和124u(mg蛋白)1的活性。当S梅利斯暴露于20%02的气氛时,同种型的数量在超氧化条件下没有变化。没有显着的变化Cu,Zn SOD活性,随着Mn SOD表达通过升高而增加10-12倍。因此,似乎Mn-Sod是对氧气细胞的初级防御氧气毒性。通过原子吸收光谱法证实了在杂化的S.Mellis Cu,Zn SOD中存在59ng-原子铜和52ng-原子锌(Mg酶)“1。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号