Hiltpold A, Thomas R M, Köhler P
Institute of Parasitology, University of Zürich, Switzerland.
Mol Biochem Parasitol. 1999 Nov 30;104(2):157-69. doi: 10.1016/s0166-6851(99)00145-0.
The gene encoding pyruvate phosphate dikinase (PPDK) from Giardia duodenalis was expressed using a baculovirus system. The recombinant enzyme was purified to homogeneity and its enzymological and solution structure properties characterized. The catalytic constant for the pyruvate-producing reaction was about twice as high (1560 min(-1) at 30 degrees C) as that for the reverse reaction (700 min(-1)) and the k(cat)/Km for PPi was about two orders of magnitude higher than k(cat)/Km for Pi, indicating that the pyruvate-forming reaction is much more efficient than the reverse, phosphoenolpyruvate (PEP)-forming process. The endogenous substrate levels found for PEP (0.5 mM) and pyruvate (< 80 microM) support the assumption that, under physiological conditions, the enzyme primarily performs a catabolic function. The molecular mass of the purified recombinant PPDK was analyzed by analytical ultracentrifugation and size exclusion chromatography using different assay conditions that have been reported to affect the quaternary structure of PPDKs in other organisms. Both methods clearly indicated a dimeric structure for giardial PPDK with a molecular mass of about 197 kDa (monomer mass 97.6 kDa). Several compounds, primarily structural analogs of PPi, were tested for their ability to inhibit PPDK activity. Most of the bisphosphonates examined showed either no, or only a moderate, inhibitory effect on the enzyme. Imidodiphosphate was the only competitive inhibitor with respect to PPi (Kic = 0.55 mM), whereas the bisphosphonates produced a mixed type of inhibition. The most active compound in inhibiting PPDK activity was oxalate, with a Kic value of less than 1 microM with respect to PEP.
利用杆状病毒系统表达了来自十二指肠贾第虫的丙酮酸磷酸二激酶(PPDK)基因。将重组酶纯化至同质,并对其酶学和溶液结构特性进行了表征。丙酮酸生成反应的催化常数(30℃时为1560 min⁻¹)约为逆向反应(700 min⁻¹)的两倍,并且PPi的kcat/Km比Pi的kcat/Km高约两个数量级,这表明丙酮酸形成反应比逆向的磷酸烯醇丙酮酸(PEP)形成过程效率高得多。发现PEP(0.5 mM)和丙酮酸(<80 μM)的内源性底物水平支持这样的假设,即在生理条件下,该酶主要发挥分解代谢功能。使用已报道会影响其他生物体中PPDKs四级结构的不同测定条件,通过分析超速离心和尺寸排阻色谱法分析了纯化的重组PPDK的分子量。两种方法均清楚地表明贾第虫PPDK具有二聚体结构,分子量约为197 kDa(单体质量97.6 kDa)。测试了几种化合物,主要是PPi的结构类似物,以评估它们抑制PPDK活性的能力。所检测的大多数双膦酸盐对该酶要么没有抑制作用,要么只有中等程度的抑制作用。亚氨基二磷酸是唯一对PPi具有竞争性抑制作用的抑制剂(Kic = 0.55 mM),而双膦酸盐产生混合型抑制作用。抑制PPDK活性最有效的化合物是草酸盐,相对于PEP,其Kic值小于1 μM。