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A Cyanobacterium Lacking Iron Superoxide Dismutase Is Sensitized to Oxidative Stress Induced with Methyl Viologen but Is Not Sensitized to Oxidative Stress Induced with Norflurazon

机译:蓝藻缺乏铁超氧化物歧化酶是 敏感于甲基紫精诱导的氧化应激但 不敏感于氧化应激诱导 诺氟拉松

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摘要

A strain of Synechococcus sp. strain PCC 7942 with no functional Fe superoxide dismutase (SOD), designated sodB, was characterized by its growth rate, photosynthetic pigments, and cyclic photosynthetic electron transport activity when treated with methyl viologen or norflurazon (NF). In their unstressed conditions, both the sodB and wild-type strains had similar chlorophyll and carotenoid contents and catalase activity, but the wild type had a faster growth rate and higher cyclic electron transport activity. The sodB was very sensitive to methyl viologen, indicating a specific role for the FeSOD in protection against superoxide generated in the cytosol. In contrast, the sodB mutant was less sensitive than the wild type to oxidative stress imposed with NF. This suggests that the FeSOD does not protect the cell from excited singlet-state oxygen generated within the thylakoid membrane. Another up-regulated antioxidant, possibly the MnSOD, may confer protection against NF in the sodB strain. These results support the hypothesis that different SODs have specific protective functions within the cell.
机译:Synechococcus sp。的一种菌株。没有功能性铁超氧化物歧化酶(SOD)的PCC 7942菌株,命名为sodB -,其特征在于其生长速度,光合色素和经甲基紫精或去氟氟沙星(NF)处理后的循环光合电子传递活性。在无胁迫条件下,sodB -和野生型菌株的叶绿素和类胡萝卜素含量和过氧化氢酶活性都相似,而野生型则具有更快的生长速度和更高的循环电子传递活性。 sodB -对甲基紫精非常敏感,表明FeSOD在抵抗细胞质中产生的超氧化物方面具有特殊作用。相反,sodB -突变体对野生型施加的氧化应激的敏感性不如野生型。这表明FeSOD不能保护细胞免受类囊体膜内产生的激发单线态氧的影响。另一个上调 抗氧化剂,可能是MnSOD,可以在皮肤中提供针对NF的保护 sodB -应变。这些结果支持 假设不同的SOD具有特定的保护功能 在单元内。

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