Schofield Linley R, Anderson Bryan F, Patchett Mark L, Norris Gillian E, Jameson Geoffrey B, Parker Emily J
Institutes of Fundamental Sciences and Molecular BioSciences, Massey University, Palmerston North, New Zealand.
Biochemistry. 2005 Sep 13;44(36):11950-62. doi: 10.1021/bi050577z.
3-deoxy-D-arabino-heptulosonate-7-phosphate synthase (DAH7PS) catalyzes the condensation reaction between phosphoenolpyruvate (PEP) and the four-carbon monosaccharide D-erythrose 4-phosphate (E4P). DAH7PS from the hyperthermophile Pyrococcus furiosus is a member of the DAH7PS Ibeta subfamily, which also includes the KDO8PS enzymes. KDO8PS (3-deoxy-D-manno-octulosonate-8-phosphate synthase) catalyzes a closely related reaction of PEP with the five-carbon monosaccharide D-arabinose 5-phosphate (A5P). DAH7PS from P. furiosus requires a metal ion for activity and, unlike other characterized DAH7PS enzymes, is not inhibited by aromatic amino acids. Purified P. furiosus DAH7PS is able to utilize not only the four-carbon phosphorylated monosaccharides E4P and 2-deoxy-D-erythrose 4-phosphate but also the five-carbon phosphorylated monosaccharides A5P, D-ribose 5-phosphate, and 2-deoxy-D-ribose 5-phosphate with similar kcat but much increased KM values. DL-glyceraldehyde 3-phosphate and D-glucose 6-phosphate are not substrates. The structure of recombinant P. furiosus DAH7PS in complex with PEP was determined to 2.25 A resolution. The asymmetric unit consists of a dimer of (beta/alpha)8-barrel subunits. Analysis of the buried surfaces formed by dimerization and tetramerization, as observed in the crystal structure, provides insight into both the oligomeric status in solution and the substrate ambiguity of P. furiosus DAH7PS. P. furiosus DAH7PS is both the first archaeal and the first "naked" DAH7PS (without N-terminal extensions) to be fully characterized functionally and structurally. The broad substrate specificity of this DAH7PS, the lack of allosteric inhibition, and various structural features indicate that, of the enzymes characterized to date, P. furiosus DAH7PS may be the contemporary protein closest to the ancestral type I enzyme.
3-脱氧-D-阿拉伯庚酮糖酸-7-磷酸合酶(DAH7PS)催化磷酸烯醇丙酮酸(PEP)与四碳单糖D-赤藓糖4-磷酸(E4P)之间的缩合反应。嗜热栖热菌的DAH7PS是DAH7PS Iβ亚家族的成员,该亚家族还包括KDO8PS酶。KDO8PS(3-脱氧-D-甘露辛酮糖酸-8-磷酸合酶)催化PEP与五碳单糖D-阿拉伯糖5-磷酸(A5P)的密切相关反应。嗜热栖热菌的DAH7PS的活性需要金属离子,并且与其他已表征的DAH7PS酶不同,它不受芳香族氨基酸的抑制。纯化的嗜热栖热菌DAH7PS不仅能够利用四碳磷酸化单糖E4P和2-脱氧-D-赤藓糖4-磷酸,还能利用五碳磷酸化单糖A5P、D-核糖5-磷酸和2-脱氧-D-核糖5-磷酸,其催化常数(kcat)相似,但米氏常数(KM)值大幅增加。3-磷酸-DL-甘油醛和6-磷酸-D-葡萄糖不是底物。与PEP复合的重组嗜热栖热菌DAH7PS的结构解析到了2.25 Å的分辨率。不对称单元由(β/α)8桶状亚基的二聚体组成。如晶体结构中观察到的,对由二聚化和四聚化形成的掩埋表面的分析,为嗜热栖热菌DAH7PS在溶液中的寡聚状态和底物模糊性提供了见解。嗜热栖热菌DAH7PS是第一个在功能和结构上得到充分表征的古细菌DAH7PS,也是第一个“无修饰”的DAH7PS(没有N端延伸)。这种DAH7PS广泛的底物特异性、缺乏变构抑制以及各种结构特征表明,在迄今为止已表征的酶中,嗜热栖热菌DAH7PS可能是最接近原始I型酶的当代蛋白质。