Facultad de Química y Biología, Universidad de Santiago de Chile, Av. B. O'Higgins 3363, Santiago, Chile.
Protein J. 2010 Jul;29(5):299-305. doi: 10.1007/s10930-010-9252-6.
A homology model of Saccharomyces cerevisiae phosphoenolpyruvate (PEP) carboxykinase (ATP + oxaloacetate right arrow over left arrow ADP + PEP + CO(2)) in complex with its substrates shows that the isobutyl group of Leu460 is in close proximity to the adenine ring of the nucleotide, while the carboxyl group of Glu299 is within hydrogen-bonding distance of the ribose 2'OH. The Leu460Ala mutation caused three-fold and seven-fold increases in the K (m) for ADPMn(-) and ATPMn(2-), respectively, while the Glu299Ala mutation had no effect. Binding studies showed losses of approximately 2 kcal mol(-1) in the nucleotide binding affinity due to the Leu460Ala mutation and no effect for the Glu299Ala mutation. PEP carboxykinase utilized 2'deoxyADP and 2'deoxyATP as substrates with kinetic and equilibrium dissociation constants very similar to those of ADP and ATP, respectively. These results show that the hydrophobic interaction between Leu460 and the adenine ring of the nucleotide significantly contributed to the nucleotide affinity of the enzyme. The 2'deoxy nucleotide studies and the lack of an effect of the Glu299Ala mutation in nucleotide binding suggest that the possible hydrogen bond contributed by Glu299 and the ribose 2'OH group may not be relevant for nucleotide binding.
酿酒酵母磷酸烯醇丙酮酸羧激酶(ATP + 草酰乙酸⇌ ADP + PEP + CO2)与其底物复合物的同源模型表明,亮氨酸 460 的异丁基基团与核苷酸的腺嘌呤环接近,而谷氨酸 299 的羧基基团与核糖 2'OH 在氢键距离内。亮氨酸 460 到丙氨酸的突变导致 ADPMn(-)和 ATPMn(2-)的 K(m)分别增加了三倍和七倍,而谷氨酸 299 到丙氨酸的突变没有影响。结合研究表明,由于亮氨酸 460 到丙氨酸的突变,核苷酸结合亲和力损失了约 2 千卡摩尔(-1),而谷氨酸 299 到丙氨酸的突变没有影响。PEP 羧激酶利用 2'-脱氧 ADP 和 2'-脱氧 ATP 作为底物,其动力学和平衡解离常数分别与 ADP 和 ATP 非常相似。这些结果表明,亮氨酸 460 与核苷酸腺嘌呤环之间的疏水相互作用对酶的核苷酸亲和力有显著贡献。2'-脱氧核苷酸研究以及谷氨酸 299 到丙氨酸的突变在核苷酸结合中没有影响表明,谷氨酸 299 和核糖 2'OH 基团可能形成的氢键可能与核苷酸结合无关。