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嗜热古菌过氧化物氧还蛋白分子组装的改变

Alteration of molecular assembly of peroxiredoxins from hyperthermophilic archaea.

作者信息

Nakamura Tsutomu, Oshima Maki, Yasuda Megumi, Shimamura Akiko, Morita Junji, Uegaki Koichi

机构信息

National Institute of Advanced Industrial Science and Technology, Ikeda, Osaka 563-8577, Japan.

Doshisha Women's College of Liberal Arts, Kamigyo-ku, Kyoto 602-0893, Japan.

出版信息

J Biochem. 2017 Dec 1;162(6):415-422. doi: 10.1093/jb/mvx045.

Abstract

Peroxiredoxin from Pyrococcus horikoshii (PhPrx) is a decameric protein formed by ring-type assembly of five dimers. To engineer the quaternary structure of PhPrx, we created a mutant PhPrx (PhPrx6m) by introducing six point mutations designed to dissociate PhPrx into dimers. Although PhPrx6m was a dimer in solution, the six dimers assembled into a dodecamer following crystallization. In the crystal structure, PhPrx6m was overoxidized, and the peroxidatic cysteine was in sulfonic acid form and two cysteines in the C-terminal region were linked by an intramolecular disulfide bond. Thus, we characterized the wild-type PhPrx overoxidized by hydrogen peroxide (PhPrxPer). Analytical ultracentrifugation showed that PhPrxPer had a higher molecular mass in solution than PhPrx. This was confirmed by analysis of the crystal structure of PhPrxPer, which was found to form a ring-type dodecamer composed of six dimers. The monomeric structures of PhPrx6m and PhPrxPer differed from that of PhPrx in the relative orientation of two domains, reflecting the number of dimers in the ring-type assembly. Unlike PhPrx, homologous peroxiredoxin from Aeropyrum pernix (ApPrx) did not undergo hexameric association. This property can be explained by the stronger connection between the two domains in ApPrx due to its C-terminal extension relative to PhPrx.

摘要

来自嗜热栖热菌的过氧化物酶(PhPrx)是一种由五个二聚体通过环型组装形成的十聚体蛋白。为了改造PhPrx的四级结构,我们通过引入六个旨在使PhPrx解离为二聚体的点突变,创建了一个突变型PhPrx(PhPrx6m)。尽管PhPrx6m在溶液中是二聚体,但在结晶后六个二聚体组装成了十二聚体。在晶体结构中,PhPrx6m被过度氧化,过氧化物酶半胱氨酸呈磺酸形式,C端区域的两个半胱氨酸通过分子内二硫键相连。因此,我们对用过氧化氢氧化的野生型PhPrx(PhPrxPer)进行了表征。分析超速离心表明,PhPrxPer在溶液中的分子量比PhPrx高。通过对PhPrxPer晶体结构的分析证实了这一点,发现它形成了一个由六个二聚体组成的环型十二聚体。PhPrx6m和PhPrxPer的单体结构在两个结构域的相对取向上与PhPrx不同,这反映了环型组装中二聚体的数量。与PhPrx不同,来自嗜酸嗜热栖热菌的同源过氧化物酶(ApPrx)不会发生六聚体缔合。这种特性可以通过ApPrx中两个结构域之间由于其相对于PhPrx的C端延伸而具有更强的连接来解释。

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