Bartkiewicz M, Sierakowska H, Shugar D
Eur J Biochem. 1984 Sep 3;143(2):419-26. doi: 10.1111/j.1432-1033.1984.tb08389.x.
Purification of potato tuber nucleotide pyrophosphatase (EC 3.6.1.9) has been modified to furnish a rapid and reproducible procedure yielding a preparation purified 1800-fold and homogeneous in sodium dodecyl sulphate/polyacrylamide gel electrophoresis. The Mr of the enzyme, from gel filtration or sucrose density gradient centrifugation, is 343000 or 346000 respectively; and SDS electrophoresis indicates an Mr for the subunit of 74000. Analytical isoelectrofocusing reveals a broad isoelectric range of pH 8.3-8.7. The enzyme is a glycoprotein. The purified enzyme exhibits the previously reported activities versus pyrophosphate linkages located at either the 5'-OH or 3'-OH of nucleosides, and phosphodiester linkages in: (a) aryl esters of nucleoside 3'- and 5'-phosphates, p-nitrophenylphosphate and orthophosphate, and (b) nucleoside cyclic 2',3'-phosphates. However, the relative rates of activity towards these substrates, and the corresponding V values, differ significantly. The enzyme exhibits additional novel activities, including ability to cleave dinucleoside polyphosphates such as A(5')p2(5')A-A(5')p5(5')A, and aryl phosphonates. Contrary to previous reports, there is no activity towards nucleoside cyclic 3',5'-phosphates. The present preparation is also devoid of endonucleolytic activity, so that it specifically cleaves m7GMP from the 5'-terminal m7G(5')p3(5')Gm of intact reovirus mRNA. NAD+ was found to be the most effective inhibitor of enzyme activity versus thymidine 5'-p-nitrophenylphosphate, with a Ki = 0.1 mM. Kinetic analyses demonstrated competitive inhibition between these two substrates. Both 2',3'-cAMP and thymidine 3'-p-nitrophenylphosphate inhibit hydrolysis of NAD+ noncompetitively and vice-versa.
马铃薯块茎核苷酸焦磷酸酶(EC 3.6.1.9)的纯化方法已得到改进,从而提供了一种快速且可重复的程序,得到的制剂在十二烷基硫酸钠/聚丙烯酰胺凝胶电泳中纯化了1800倍且呈均一状态。通过凝胶过滤或蔗糖密度梯度离心法测得该酶的相对分子质量分别为343000或346000;十二烷基硫酸钠电泳显示其亚基的相对分子质量为74000。分析性等电聚焦显示其等电范围较宽,为pH 8.3 - 8.7。该酶是一种糖蛋白。纯化后的酶表现出先前报道过的针对位于核苷5'-OH或3'-OH处的焦磷酸键以及以下物质中的磷酸二酯键的活性:(a)核苷3'-和5'-磷酸的芳基酯、对硝基苯磷酸酯和正磷酸,以及(b)核苷环2',3'-磷酸酯。然而,针对这些底物的相对活性速率以及相应的V值存在显著差异。该酶还表现出其他新的活性,包括切割二核苷多磷酸如A(5')p2(5')A - A(5')p5(5')A以及芳基膦酸酯的能力。与先前报道相反,该酶对核苷环3',5'-磷酸酯没有活性。目前的制剂也没有核酸内切酶活性,因此它能从完整呼肠孤病毒mRNA的5'-末端m7G(5')p3(5')Gm特异性切割m7GMP。发现NAD⁺是该酶针对胸苷5'-对硝基苯磷酸酯活性的最有效抑制剂,其抑制常数Ki = 0.1 mM。动力学分析表明这两种底物之间存在竞争性抑制。2',3'-环磷酸腺苷和胸苷3'-对硝基苯磷酸酯均非竞争性抑制NAD⁺的水解,反之亦然。