首页> 外文期刊>Infection and immunity >The Cu,Zn superoxide dismutases of Aspergillus flavus, Aspergillus niger, Aspergillus nidulans, and Aspergillus terreus: purification and biochemical comparison with the Aspergillus fumigatus Cu,Zn superoxide dismutase.
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The Cu,Zn superoxide dismutases of Aspergillus flavus, Aspergillus niger, Aspergillus nidulans, and Aspergillus terreus: purification and biochemical comparison with the Aspergillus fumigatus Cu,Zn superoxide dismutase.

机译:Cu,Zn超氧化物乳腺粉碎酶的曲霉属植物,荷丝莲,荷西兰·奈兰人,以及曲霉属Terreus:纯化和生物化学比较与Aspergillus fumigatus Cu,Zn超氧化物歧化酶。

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Cu,Zn superoxide dismutases (SODs) have been purified to homogeneity from Aspergillus flavus and A. niger, which are significant causative agents of aspergillosis, and from A. nidulans and A. terreus, which are much rarer causative agents of disease, using a combination of isoelectric focusing and gel filtration fast protein liquid chromatography. The purified enzymes have been compared with the previously described SOD from the most important pathogen in the genus, A. fumigatus (M. D. Holdom, R. J. Hay, and A. J. Hamilton, Free Radical Res. 22:519-531, 1995). The N-terminal amino acid sequences of the four newly purified enzymes were almost identical and demonstrated homology to known Cu,Zn SODs from a range of organisms including that from the previously described SOD from A. fumigatus. SOD activity was detectable in the culture filtrates of all species, and intracellular Cu,Zn SOD activity as a proportion of total protein was highest in early-log-phase cultures. The specific activities of the purified enzymes were similar, and all four of the newly described enzymes were inhibited by potassium cyanide and diethyldithiocarbamate, known Cu,Zn SOD inhibitors. Sodium azide and o-phenanthroline demonstrated inhibition at concentrations from 5 to 30 mM, and EDTA also exhibited a varying degree of inhibition of SOD activity. However, there were differences in the nonreduced molecular masses, the reduced molecular masses, and the isoelectric points of the four newly described SODs and the A. fumigatus enzyme; these varied from 55 to 123 kDa, 17.5 to 19.5 kDa, and 5.0 to 5.9, respectively. Of particular note was the observation that the A. fumigatus enzyme was thermostable compared with the SODs from the other species; in addition, the A.fiumigatus enzyme retained all of its activity at 37 degrees C relative to 20 degrees C, whereas the SODs of A. nidulans and A. terreus lost significant activity at the higher temperature. Aspergillus Cu,Zn SOD plays a hypothetical role in the avoidance of oxidative killing mechanisms, and our data suggest that the thermotolerant A. fumigatus Cu,Zn SOD would be more effective in such a protective system than, for example, the equivalent enzyme from the more rarely pathogenic A. nidulans.
机译:Cu,Zn超氧化物脱粉剂(SOD)已被纯化为来自曲霉和A.尼格斯的均匀性,这是曲霉病的显着致病剂,以及来自A. Nidulans和A.Terreus的疾病,这是疾病的许多疾病的致病因子。等电聚焦和凝胶过滤快速蛋白质色谱的组合。已经将纯化的酶与前面描述的SOD与来自Gomus(M. D. Holdom,R.J. Hay和A.J. Hamilton,Free激进的Res.22:519-531,1995)进行比较。22:519-531,1995)。四种新纯化的酶的N-末端氨基酸序列几乎相同并且与已知的Cu,来自一系列生物的Zn SOD,包括从先前描述的SOD来自A. fumigatus的那种生物体。在所有物种的培养滤液中检测到SOD活性,并且细胞内Cu,Zn SOD活性在早期阶段培养中最高的总蛋白质的比例。纯化酶的比活性相似,并通过氰化钾和二乙基硫代氨基甲酸钾,已知的Cu,Zn SOD抑制剂抑制了所有四种新描述的酶。叠氮化钠和O-菲咯啉在5至30mm的浓度下表现出抑制,并且EDTA也表现出不同程度的SOD活性。然而,在新描述的SODS和A. fumigatus酶的四种新描述的SODS和A. Fumigatus酶的差异存在差异。这些分别从55到123 kda,17.5至19.5 kda和5.0至5.9变化。特别值得注意的是观察到A.Fumigatus酶与来自其他物种的SODS相比是热稳定的;此外,A.Fiumigatus酶相对于20℃以37摄氏度保留其所有活性,而A. nidulans的SOD含量和A.Terreus在较高温度下丧失显着的活性。 Aspergillus Cu,Zn Sod在避免氧化杀伤机制中起假设作用,我们的数据表明热恒温A. Fumigatus Cu,Zn SOD在这种保护系统中比例如等同的酶更有效更少致病A. Nidulans。

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