首页> 外文期刊>Journal of Molecular Biology >Crystallographic studies on decameric Brucella spp. lumazine synthase: A novel quaternary arrangement evolved for a new function?
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Crystallographic studies on decameric Brucella spp. lumazine synthase: A novel quaternary arrangement evolved for a new function?

机译:十聚体布鲁氏菌属的晶体学研究。 lumazine合酶:一种新的四级排列进化为一种新功能?

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摘要

The enzyme lumazine synthase (LS) catalyzes the penultimate step of riboflavin biosynthesis in plants, fungi and bacteria. The quaternary structure of the polypeptide differs between species, existing as pentamers or as icosahedrally arranged dodecamers of pentamers with 60 subunits. The pathogen Brucella spp. expresses two proteins that exhibit LS activity; RibH1 and RibH2. The latter enzyme belongs to a novel third category of quaternary arrangement for LS, that of a decameric structure assembled as a head-to-head oriented dimer of pentamers. In contrast, the RibH1 enzyme is assembled as a pentamer, as noted for several other LS enzymes. RibH1 appears to be the functional LS in Brucella spp., whereas RibH2, an enzyme of lower catalytic activity, is a virulence factor presumably acting in response to oxidative stress. The latter observation prompted us to further investigate the structural and catalytic properties of RibH2 in order to clarify the biological function of this enzyme. Here, we present a detailed analysis of two new crystallographic forms of RibH2 that explain the low catalytic activity of this enzyme in comparison with RibH1 and other LSs. Additionally, we analyze the effect of pH on the structure of this enzyme, and the binding of riboflavin and 6,7-dimethyl-8-ribityllumazine to its active site. (c) 2005 Elsevier Ltd. All rights reserved.
机译:lumazine合酶(LS)催化植物,真菌和细菌中核黄素生物合成的倒数第二步。多肽的四级结构在物种之间有所不同,以五聚体或二十面体排列的十二聚体的十二聚体形式存在。病原菌布鲁氏菌属。表达两种具有LS活性的蛋白; RibH1和RibH2。后一种酶属于LS的四级排列的新的第三类,即十聚体结构组装成五聚体的头对头定向二聚体。相反,RibH1酶组装成五聚体,如其他几种LS酶所述。 RibH1似乎是布鲁氏菌属中的功能性LS,而RibH2是一种催化活性较低的酶,可能是一种毒力因子,可能响应氧化应激而发挥作用。后一发现促使我们进一步研究RibH2的结构和催化特性,以阐明该酶的生物学功能。在这里,我们介绍RibH2的两种新的晶体形式的详细分析,解释了该酶与RibH1和其他LSs相比催化活性低。此外,我们分析了pH对该酶结构的影响,以及核黄素和6,7-二甲基-8-核苷二嗪与其活性位点的结合。 (c)2005 Elsevier Ltd.保留所有权利。

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