Cusack N J, Pearson J D, Gordon J L
Biochem J. 1983 Sep 15;214(3):975-81. doi: 10.1042/bj2140975.
We have investigated the stereoselectivity of ectonucleotidases (nucleoside triphosphatase, EC 3.6.1.15; nucleoside diphosphatase, EC 3.6.1.6; 5'-nucleotidase, EC 3.1.3.5) on pig aortic endothelial cells using two classes of nucleotide analogue. In experiments with nucleotide enantiomers in which the natural D-ribofuranosyl moiety is replaced by an L-ribofuranosyl moiety, the rate of catabolism of 100 microM-L-ATP was one-fifth that of D-ATP, the rate of catabolism of 100 microM-L-ADP was one-fifteenth that of D-ADP and there was no detectable catabolism of 100 microM-L-AMP. Each of the L-enantiomers inhibited, apparently competitively, the catabolism of the corresponding D-enantiomer; Ki values were approx. 0.6 mM, 1.0 mM and 3.9 mM for L-ATP, L-ADP and L-AMP respectively. Experiments with adenosine 5'-[beta, gamma-imido]triphosphate and with D- and L-enantiomers of adenosine 5'-[beta, gamma-methylene]triphosphate revealed modest ectopyrophosphatase activity, undetectable in experiments with natural nucleotides, which was also stereoselective. Use of phosphorothioate nucleotide analogues demonstrated that ATP catabolism was virtually stereospecific with respect to the geometry of the thiol group substituted on the beta-phosphate: the Rp isomer was degraded, whereas there was little or no breakdown of the Sp isomer. ADP catabolism was also stereospecific with respect to the geometry of the thiol group substituted on the alpha-phosphate: the Sp isomer but not the Rp isomer was degraded. The geometry of thiol-group substitution on the alpha-phosphate had no effect on ATP catabolism to ADP. There was no detectable catabolism of analogues with thiol-group substitution on the terminal phosphate. Each of the phosphorothioate analogues that was catabolized broke down at a rate similar to that of the natural nucleotide from which it was derived. These results demonstrate that the ectonucleotidases on pig aortic endothelial cells exhibit a high degree of stereoselectivity, characteristic for each enzyme, both with respect to the ribofuranosyl moiety and to the phosphate side chain.
我们使用两类核苷酸类似物研究了猪主动脉内皮细胞上的胞外核苷酸酶(核苷三磷酸酶,EC 3.6.1.15;核苷二磷酸酶,EC 3.6.1.6;5'-核苷酸酶,EC 3.1.3.5)的立体选择性。在用天然D-呋喃核糖基部分被L-呋喃核糖基部分取代的核苷酸对映体进行的实验中,100μM - L-ATP的分解代谢速率是D-ATP的五分之一,100μM - L-ADP的分解代谢速率是D-ADP的十五分之一,且未检测到100μM - L-AMP的分解代谢。每种L-对映体均明显以竞争性方式抑制相应D-对映体的分解代谢;L-ATP、L-ADP和L-AMP的Ki值分别约为0.6 mM、1.0 mM和3.9 mM。用腺苷5'-[β,γ-亚氨基]三磷酸以及腺苷5'-[β,γ-亚甲基]三磷酸的D-和L-对映体进行的实验显示出适度的焦磷酸酶活性,在用天然核苷酸进行的实验中未检测到,且该活性也具有立体选择性。使用硫代磷酸酯核苷酸类似物表明,ATP分解代谢在β-磷酸上取代的硫醇基团的几何结构方面几乎具有立体特异性:Rp异构体被降解,而Sp异构体几乎没有或没有分解。ADP分解代谢在α-磷酸上取代的硫醇基团的几何结构方面也具有立体特异性:Sp异构体被降解,而Rp异构体未被降解。α-磷酸上硫醇基团取代的几何结构对ATP分解代谢为ADP没有影响。在末端磷酸上有硫醇基团取代的类似物未检测到分解代谢。每种被分解代谢的硫代磷酸酯类似物的分解速率与其衍生的天然核苷酸的分解速率相似。这些结果表明,猪主动脉内皮细胞上的胞外核苷酸酶在呋喃核糖基部分和磷酸侧链方面均表现出高度的立体选择性,这是每种酶的特征。