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Role of Manganese-Containing Superoxide Dismutase in Oxidative Stress and Virulence of Streptococcus pneumoniae

机译:含锰超氧化物歧化酶在肺炎链球菌的氧化应激和毒力中的作用

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摘要

Streptococcus pneumoniae was shown to contain two types of superoxide dismutase, MnSOD and FeSOD. Levels of MnSOD increased during growth in an aerobic environment. The sodA gene, encoding MnSOD, of virulent S. pneumoniae type 2 strain D39 was inactivated to give mutant D39HY1. Aerobically, D39HY1 had a lower growth rate than the wild type and exhibited susceptibility to the redox-active compound paraquat, but anaerobic growth of D39HY1 was identical to that of the wild type. Virulence studies showed that the median survival time of mice infected intranasally with D39HY1 was significantly longer than that of mice infected with the wild-type pneumococcus. In contrast to the wild type, D39HY1 did not multiply in lungs during the first 24 h but thereafter grew at the same rate as the wild type. Appearance in the bloodstream was also delayed, but growth in the blood was unimpaired by the sodA mutation. The pattern of inflammation in lungs infected with D39HY1 differed from that in wild-type-infected mice. After infection with D39HY1, neutrophils were densely packed around bronchioles, in contrast to the wild-type infection, where neutrophils were more diffusely localized.
机译:肺炎链球菌显示含有两种类型的超氧化物歧化酶,即MnSOD和FeSOD。在有氧环境中生长过程中,MnSOD的含量增加。灭活有毒力的肺炎链球菌2型D39株的MnSOD编码sodA基因,得到突变体D39HY1。有氧运动中,D39HY1的生长速率低于野生型,并且对氧化还原活性化合物百草枯表现出敏感性,但D39HY1的厌氧生长与野生型相同。毒力研究表明,经鼻内D39HY1感染的小鼠的中位生存时间显着长于野生型肺炎球菌感染的小鼠。与野生型相反,D39HY1在最初的24小时内并未在肺中繁殖,但随后以与野生型相同的速率生长。血液的出现也被延迟,但是血液的生长不受sodA突变的影响。 D39HY1感染的肺部炎症模式与野生型感染的小鼠不同。与野生型感染相比,D39HY1感染后,中性粒细胞密集堆积在细支气管周围。

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