Jahngen E G, Rossomando E F
Anal Biochem. 1984 Mar;137(2):493-504. doi: 10.1016/0003-2697(84)90118-0.
The use of high-performance liquid chromatography to identify and quantitate five purine-metabolizing enzymes from a partially purified subcellular fraction of the eucaryotic microorganism Dictyostelium discoideum is described. All HPLC separations were carried out in an isocratic manner using reverse-phase C18 as the stationary phase. The mobile phase consisted of a phosphate buffer with either methanol or acetonitrile as cosolvent, and optimal separation conditions were attained by varying the organic concentration or the pH of the buffer or by employing paired-ion chromatographic techniques. Substrates and products were detected at either 254 nm for the purines or 295 nm for the formycin analogs. An adenosine kinase activity was identified, and it was demonstrated that formycin A (FoA) could be substituted for adenosine as the phosphate acceptor, yielding FoAMP as the product. With FoA as the substrate an apparent Km of 18.2 microM and an apparent Vmax of 32.4 mmol min-1 mg-1 were observed for the activity. A purine-nucleoside phosphorylase activity was found to cleave adenosine to adenine and ribosylphosphate. FoA was not found to be a substrate for this activity due to the unusual formycin C-glycosyl bond which was not hydrolyzed by enzymes or chemically with either HCl or NaOH. An adenylate deaminase activity was found to be present in the cytosolic S-100 of cells harvested during the onset of development, and this deaminase activity was greatly stimulated by ATP. With FoAMP as the substrate, an apparent Km of 236 microM and Vmax of 2.78 mumol min-1 mg-1 were observed. The deamination of FoAMP could be inhibited by the addition of the natural substrate AMP. An apparent Ki value of 136 microM was determined from initial rate data. An adenylosuccinate synthetase activity was observed to have a Km value for GTP, IMP, and aspartic acid of 23, 34, and 714 microM, respectively. The formycin analog FoIMP was not a substrate with this activity but was a competitive inhibitor of IMP. Finally hypoxanthine-guanine phosphoribosyltransferase was found to have Km and Vmax values for hypoxanthine of 55.5 microM and 34.3 nmol-1 min-1 mg-1. When guanine was used as the substrate, the rate of nucleotide formation was 50% that with hypoxanthine as the substrate. The advantages of using HPLC to examine the interconnecting activities of a multienzyme complex in subcellular fractions are discussed, including the increased sensitivity obtained by using formycin analogs in the assay procedures.(ABSTRACT TRUNCATED AT 400 WORDS)
本文描述了利用高效液相色谱法从真核微生物盘基网柄菌的部分纯化亚细胞组分中鉴定和定量五种嘌呤代谢酶的方法。所有高效液相色谱分离均采用等度洗脱方式,以反相C18作为固定相。流动相由含有甲醇或乙腈作为共溶剂的磷酸盐缓冲液组成,通过改变有机相浓度、缓冲液pH值或采用离子对色谱技术获得了最佳分离条件。嘌呤底物和产物在254 nm处检测,福米霉素类似物在295 nm处检测。鉴定出一种腺苷激酶活性,并证明福米霉素A(FoA)可替代腺苷作为磷酸受体,生成FoAMP作为产物。以FoA为底物时,该活性的表观Km为18.2 μM,表观Vmax为32.4 mmol min-1 mg-1。发现一种嘌呤核苷磷酸化酶活性可将腺苷裂解为腺嘌呤和核糖磷酸。由于福米霉素独特的C-糖苷键不能被酶水解,也不能与HCl或NaOH发生化学反应,因此FoA不是该活性的底物。发现在发育开始时收获的细胞的胞质S-100中存在腺苷酸脱氨酶活性,并且该脱氨酶活性受到ATP的极大刺激。以FoAMP为底物时,表观Km为236 μM,Vmax为2.78 μmol min-1 mg-1。FoAMP的脱氨反应可通过添加天然底物AMP来抑制。根据初始速率数据确定表观Ki值为136 μM。观察到腺苷酸琥珀酸合成酶活性对GTP、IMP和天冬氨酸的Km值分别为23、34和714 μM。福米霉素类似物FoIMP不是该活性的底物,但却是IMP的竞争性抑制剂。最后,发现次黄嘌呤-鸟嘌呤磷酸核糖基转移酶对次黄嘌呤的Km和Vmax值分别为55.5 μM和34.3 nmol-1 min-1 mg-1。当使用鸟嘌呤作为底物时,核苷酸形成速率是使用次黄嘌呤作为底物时的50%。讨论了使用高效液相色谱法检测亚细胞组分中多酶复合物相互连接活性的优点,包括在测定过程中使用福米霉素类似物获得的更高灵敏度。(摘要截短至400字)