Lou L, Nakamura J, Tsing S, Nguyen B, Chow J, Straub K, Chan H, Barnett J
Institute of Biochemistry and Cell Biology, Syntex Discovery Research, Palo Alto, California 94304, USA.
Protein Expr Purif. 1995 Aug;6(4):487-95. doi: 10.1006/prep.1995.1065.
GMP synthetase, a key enzyme in the de novo synthesis of guanine nucleotides, is a potential target for immunosuppression and anticancer chemotherapy. In order to closely examine the catalytic mechanism and active-site topography of this enzyme, large amounts of pure protein are needed. Catalytically active human GMP synthetase was expressed in a baculovirus system. A high-level production system has been established from which the yield of pure protein is routinely more than 50 mg/10 liters of cell culture. The recombinant enzyme was purified to homogeneity and characterized. Like native GMP synthetase, the recombinant enzyme was resolved into two forms by ion-exchange chromatography. The two forms are both monomers and they differ in their isoelectric points. There is no evidence that these forms are in equilibrium or interconvertible. Protein sequence analysis reveals that both forms are blocked at the amino-terminus and they are essentially identical in sequence. Since they can be produced by a cDNA with a single open reading frame, we believe that they represent post-translational modification variants. The recombinant GMP synthetase is not distinguishable from the native enzyme in terms of chromatographic profiles, subunit composition, molecular weight, and kinetic properties. The inhibition constants and the modes of inhibition toward decoyinine, a selective inhibitor of GMP synthetase, are also the same as the native enzyme. The high-level production of active enzyme is invaluable to the determination of the three-dimensional structure and the discovery of potent and selective drug candidates.
GMP合成酶是鸟嘌呤核苷酸从头合成中的关键酶,是免疫抑制和抗癌化疗的潜在靶点。为了深入研究该酶的催化机制和活性位点拓扑结构,需要大量的纯蛋白。具有催化活性的人GMP合成酶在杆状病毒系统中表达。已建立了一个高产系统,纯蛋白的产量通常超过50毫克/10升细胞培养物。重组酶被纯化至同质并进行了表征。与天然GMP合成酶一样,重组酶通过离子交换色谱法可分离为两种形式。这两种形式均为单体,它们的等电点不同。没有证据表明这些形式处于平衡状态或可相互转化。蛋白质序列分析表明,这两种形式在氨基末端均被封闭,并且它们在序列上基本相同。由于它们可以由具有单个开放阅读框的cDNA产生,我们认为它们代表翻译后修饰变体。重组GMP合成酶在色谱图谱、亚基组成、分子量和动力学性质方面与天然酶没有区别。对GMP合成酶的选择性抑制剂脱氧精胍菌素的抑制常数和抑制模式也与天然酶相同。活性酶的高产对三维结构的测定以及强效和选择性药物候选物的发现具有重要价值。