Kukulski Filip, Komoszyński Michal
Department of Biochemistry, Institute of General and Molecular Biology, N. Copernicus University, Toruń, Poland.
Eur J Biochem. 2003 Aug;270(16):3447-54. doi: 10.1046/j.1432-1033.2003.03734.x.
We purified to homogeneity and characterized NTPDase1 and NTPDase2 from porcine brain cortex synaptosomes. SDS/PAGE and immunoblotting with antibodies specific to these enzymes revealed a molecular mass estimated at 72 kDa for NTPDase1 and 66 for NTPDase2. Both enzymes exhibited kinetic properties typical for all members of the NTPDase family, e.g. low substrate specificity for tri- and diphosphonucleosides, divalent cations dependency and insensitivity towards ATPase inhibitors. The calculated Km value for NTPDase1 in respect to ATP as a substrate (97 microm) was three times lower in comparison to analogous values for NTPDase2 (270 microm). Additionally, NTPDase1 had a three times higher Kcat/Km coefficient than NTPDase2 (860 and 833 micromol product.s(-1), respectively). We have also demonstrated that in spite of differences in the affinity of ATP for both hydrolases, these enzymes have similar molecular activity. Taken together, these results indicate that NTPDase1 would terminate P2 receptor-mediated signal transmission whereas activity of NTPDase2 may contribute to decreasing high (toxic) concentrations of ATP and/or to production of another signal molecule, ADP.
我们从猪脑皮质突触体中纯化出了均一的NTPDase1和NTPDase2,并对其进行了表征。SDS/PAGE以及使用针对这些酶的特异性抗体进行的免疫印迹显示,NTPDase1的分子量估计为72 kDa,NTPDase2为66 kDa。这两种酶均表现出NTPDase家族所有成员典型的动力学特性,例如对三磷酸和二磷酸核苷的底物特异性较低、依赖二价阳离子以及对ATP酶抑制剂不敏感。以ATP作为底物时,NTPDase1的计算Km值(97微摩尔)相较于NTPDase2的类似值(270微摩尔)低三倍。此外,NTPDase1的Kcat/Km系数比NTPDase2高三倍(分别为860和833微摩尔产物·秒⁻¹)。我们还证明,尽管两种水解酶对ATP的亲和力存在差异,但这些酶具有相似的分子活性。综上所述,这些结果表明NTPDase1会终止P2受体介导的信号传递,而NTPDase2的活性可能有助于降低ATP的高(毒性)浓度和/或产生另一种信号分子ADP。