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新型隐球菌铁/铜还原酶组成型突变体的遗传和生理学特征

Genetic and physiologic characterization of ferric/cupric reductase constitutive mutants of Cryptococcus neoformans.

作者信息

Nyhus K J, Jacobson E S

机构信息

Research Service, McGuire Veterans Affairs Medical Center, Richmond, Virginia 23249, USA.

出版信息

Infect Immun. 1999 May;67(5):2357-65. doi: 10.1128/IAI.67.5.2357-2365.1999.

Abstract

Cryptococcus neoformans is a pathogenic yeast that causes meningitis in immunocompromised patients. Because iron acquisition is critical for growth of a pathogen in a host, we studied the regulation of the ferric reductase and ferrous uptake system of this organism. We isolated 18 mutants, representing four independent loci, with dysregulated ferric reductase. The mutant strains had >10-fold higher than wild-type WT reductase activity in the presence of iron. Two of the strains also had >7-fold higher than WT iron uptake in the presence of iron but were not markedly iron sensitive. Both were sensitive to the oxidative stresses associated with superoxide and hydrogen peroxide. One strain exhibited only 23% of the WT level of iron uptake in the absence of iron and grew poorly without iron supplementation of the medium, phenotypes consistent with an iron transport deficiency; it was sensitive to superoxide but not to hydrogen peroxide. The fourth strain had high reductase activity but normal iron uptake; it was not very sensitive to oxidative stress. We also demonstrated that the ferric reductase was regulated by copper and could act as a cupric reductase. Sensitivity to oxidants may be related to iron acquisition by a variety of mechanisms and may model the interaction of the yeast with the immune system.

摘要

新型隐球菌是一种致病性酵母,可在免疫功能低下的患者中引起脑膜炎。由于获取铁对于病原体在宿主体内的生长至关重要,我们研究了该生物体中铁还原酶和亚铁摄取系统的调控。我们分离出了18个代表四个独立基因座的突变体,其铁还原酶调节异常。在有铁存在的情况下,突变菌株的还原酶活性比野生型(WT)高10倍以上。其中两个菌株在有铁存在的情况下铁摄取也比WT高7倍以上,但对铁不敏感。两者都对与超氧化物和过氧化氢相关的氧化应激敏感。一个菌株在无铁情况下铁摄取仅为WT水平的23%,在培养基不补充铁的情况下生长不良,这些表型与铁转运缺陷一致;它对超氧化物敏感,但对过氧化氢不敏感。第四个菌株具有高还原酶活性,但铁摄取正常;它对氧化应激不太敏感。我们还证明了铁还原酶受铜调节,并可作为铜还原酶起作用。对氧化剂的敏感性可能通过多种机制与铁的获取有关,并且可能模拟酵母与免疫系统的相互作用。

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