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烟酰胺核糖,一种纯化的嘌呤核苷磷酸化酶的特殊、非典型底物。

Nicotinamide riboside, an unusual, non-typical, substrate of purified purine-nucleoside phosphorylases.

作者信息

Wielgus-Kutrowska B, Kulikowska E, Wierzchowski J, Bzowska A, Shugar D

机构信息

Department of Biophysics, Institute of Experimental Physics, University of Warsaw, Poland.

出版信息

Eur J Biochem. 1997 Jan 15;243(1-2):408-14. doi: 10.1111/j.1432-1033.1997.0408a.x.

Abstract

Nicotinamide 1-beta-D-riboside (Nir), the cationic, reducible moiety of the coenzyme NAD+, has been confirmed as an unusual substrate for purified purine-nucleoside phosphorylase (PNP) from a mammalian source (calf spleen). It is also a substrate of the enzyme from Escherichia coli. The Km values at pH 7, 1.48 mM and 0.62 mM, respectively, were 1-2 orders of magnitude higher than for the natural substrate inosine, but the Vmax values were comparable, 96% and 35% that for Ino. The pseudo first-order rate constants, Vmax/Km, were 1.1% and 2.5% for the calf spleen and E. coli enzymes. The aglycon, nicotinamide, was neither a substrate nor an inhibitor of PNP. Nir was a weak inhibitor of inosine phosphorolysis catalyzed by both enzymes, with Ki values close to the Km for its phosphorolysis, consistent with simple competitive inhibition; this was further confirmed by Dixon plots. Phosphorolysis of the fluorescent positively charged substrate 7-methylguanosine was also inhibited in a competitive manner by both Ino and Nir. Phosphorolysis of Nir by both enzymes was inhibited competitively by several specific inhibitors of calf spleen and E. coli PNP, with Ki values similar to those for inhibition of other natural substrates. The pH dependence of the kinetic constants for the phosphorolysis of Nir and of a variety of other substrates, was extensively investigated, particularly in the alkaline pH range, where Nir exhibited abnormally high substrate activity relative to the reduced reaction rates of both enzymes towards other anionic or neutral substrates. The overall results are discussed in relation to present concepts regarding binding and phosphorolysis of substrates by PNP based on crystallographic data of enzyme-inhibitor complexes, and current studies on enzymatic and nonenzymatic mechanisms of the cleavage of the Nir glycosidic bond.

摘要

烟酰胺1-β-D-核糖苷(Nir)是辅酶NAD⁺的阳离子可还原部分,已被确认为来自哺乳动物(小牛脾脏)的纯化嘌呤核苷磷酸化酶(PNP)的一种特殊底物。它也是大肠杆菌中该酶的底物。在pH 7时,其Km值分别为1.48 mM和0.62 mM,比天然底物肌苷高1 - 2个数量级,但Vmax值相当,分别为肌苷的96%和35%。小牛脾脏和大肠杆菌酶的伪一级速率常数Vmax/Km分别为1.1%和2.5%。糖苷配基烟酰胺既不是PNP的底物也不是抑制剂。Nir是这两种酶催化的肌苷磷酸解的弱抑制剂,其Ki值接近其磷酸解的Km值,符合简单竞争性抑制;Dixon图进一步证实了这一点。荧光带正电底物7-甲基鸟苷的磷酸解也受到肌苷和Nir的竞争性抑制。小牛脾脏和大肠杆菌PNP的几种特异性抑制剂对这两种酶催化的Nir磷酸解均有竞争性抑制作用,其Ki值与抑制其他天然底物的Ki值相似。广泛研究了Nir和多种其他底物磷酸解动力学常数的pH依赖性,特别是在碱性pH范围内,相对于这两种酶对其他阴离子或中性底物的降低反应速率,Nir表现出异常高的底物活性。结合基于酶-抑制剂复合物晶体学数据的关于PNP对底物的结合和磷酸解的现有概念,以及目前关于Nir糖苷键裂解的酶促和非酶促机制的研究,对总体结果进行了讨论。

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