Legrain C, Villeret V, Roovers M, Gigot D, Dideberg O, Piérard A, Glansdorff N
Institut de Recherches du Centre d'Enseignement et de Recherches des Industries Alimentaires, Commission de la Communauté Francaise, Bruxelles, Belgium.
Eur J Biochem. 1997 Aug 1;247(3):1046-55. doi: 10.1111/j.1432-1033.1997.01046.x.
Ornithine carbamoyltransferase (OTCase) was purified to homogeneity from the hyperthermophilic archaeon Pyrococcus furiosus. The enzyme is a 400 +/- 20-kDa polymer of a 35-kDa subunit, in keeping with the corresponding gene sequence [Roovers, M., Hethke, C., Legrain, C., Thomm, M. & Glansdorff, N. (1997) Isolation of the gene encoding Pyrococcus furiosus ornithine cabamoyltransferase and study of its expression profile in vivo and in vitro, Eur. J. Biochem. 247, 1038-1045]. In contrast with the dodecameric catabolic OTCase of Pseudomonas aeruginosa, P. furiosus OTCase exhibits no substrate cooperativity. In keeping with other data discussed in the text, this suggests that the enzyme serves an anabolic function. Half-life estimates for the purified enzyme ranged over 21-65 min at 100 degrees C according to the experimental conditions and reached several hours in the presence of ornithine and phosphate. The stability was not markedly influenced by the protein concentration. Whereas comparative examination of OTCase sequences did not point to any outstanding feature possibly related to thermophily, modelling the enzyme on the X-ray structure of P. aeruginosa OTCase (constituted by four trimers assembled in a tetrahedral manner) suggests that the molecule is stabilized, at least in part, by a set of hydrophobic interactions at the interfaces between the trimers. The comparison between P. aeruginosa and P. furiosus OTCases suggests that two different properties, allostery and thermostability, have been engineered starting from a similar quaternary structure of high internal symmetry. Recombinant P. furiosus OTCase synthesised by Escherichia coli proved less stable than the native enzyme. In Saccharomyces cerevisiae, however, an enzyme apparently identical to the native one could be obtained.
鸟氨酸氨甲酰基转移酶(OTCase)从嗜热古菌激烈热球菌中纯化至同质。该酶是由35 kDa亚基组成的400±20 kDa聚合物,这与相应的基因序列相符[鲁弗斯,M.,赫特克,C.,勒格兰,C.,托姆,M. & 格兰斯多夫,N.(1997年)激烈热球菌鸟氨酸氨甲酰基转移酶编码基因的分离及其体内外表达谱的研究,《欧洲生物化学杂志》247,1038 - 1045]。与铜绿假单胞菌的十二聚体分解代谢型OTCase不同,激烈热球菌OTCase没有底物协同性。与文中讨论的其他数据一致,这表明该酶具有合成代谢功能。根据实验条件,纯化酶在100℃下的半衰期估计在21 - 65分钟之间,在鸟氨酸和磷酸盐存在的情况下可达数小时。稳定性不受蛋白质浓度的显著影响。虽然对OTCase序列的比较未发现任何可能与嗜热性相关的突出特征,但根据铜绿假单胞菌OTCase的X射线结构(由以四面体方式组装的四个三聚体组成)对该酶进行建模表明,该分子至少部分通过三聚体之间界面处的一组疏水相互作用得以稳定。铜绿假单胞菌和激烈热球菌OTCase之间的比较表明,从具有高度内部对称性的相似四级结构出发,构建了两种不同的特性,即别构性和热稳定性。大肠杆菌合成的重组激烈热球菌OTCase比天然酶稳定性差。然而,在酿酒酵母中,可以获得一种显然与天然酶相同的酶。