Department of Physics and Biophysics, University of Warmia and Mazury in Olsztyn, 10-719 Olsztyn, Poland.
Division of Biophysics, Institute of Experimental Physics, Faculty of Physics, University of Warsaw, 5 Pasteura St., 02-093 Warsaw, Poland.
Molecules. 2020 Feb 5;25(3):681. doi: 10.3390/molecules25030681.
Etheno-derivatives of 2-aminopurine, 2-aminopurine riboside, and 7-deazaadenosine (tubercidine) were prepared and purified using standard methods. 2-Aminopurine reacted with aqueous chloroacetaldehyde to give two products, both exhibiting substrate activity towards bacterial () purine-nucleoside phosphorylase (PNP) in the reverse (synthetic) pathway. The major product of the chemical synthesis, identified as 1,N-etheno-2-aminopurine, reacted slowly, while the second, minor, but highly fluorescent product, reacted rapidly. NMR analysis allowed identification of the minor product as N,3-etheno-2-aminopurine, and its ribosylation product as N,3-etheno-2-aminopurine-N--D-riboside. Ribosylation of 1,N-etheno-2-aminopurine led to analogous N--d-riboside of this base. Both enzymatically produced ribosides were readily phosphorolysed by bacterial PNP to the respective bases. The reaction of 2-aminopurine-N- -D-riboside with chloroacetaldehyde gave one major product, clearly distinct from that obtained from the enzymatic synthesis, which was not a substrate for PNP. A tri-cyclic 7-deazaadenosine (tubercidine) derivative was prepared in an analogous way and shown to be an effective inhibitor of the , but not of the mammalian enzyme. Fluorescent complexes of amino-purine analogs with PNP were observed.
采用标准方法制备和纯化了 2-氨基嘌呤、2-氨基嘌呤核苷和 7-脱氮腺苷(乳清苷)的乙缩醛衍生物。2-氨基嘌呤与水合氯乙醛反应生成两种产物,这两种产物都表现出对细菌()嘌呤核苷磷酸化酶(PNP)在反向(合成)途径中的底物活性。化学合成的主要产物,鉴定为 1,N-乙缩醛-2-氨基嘌呤,反应缓慢,而第二种,次要但高度荧光的产物,反应迅速。NMR 分析允许将次要产物鉴定为 N,3-乙缩醛-2-氨基嘌呤,其核糖基化产物为 N,3-乙缩醛-2-氨基嘌呤-N--D-核糖苷。1,N-乙缩醛-2-氨基嘌呤的核糖基化导致该碱基的类似 N--d-核糖苷。两种酶促产生的核糖都容易被细菌 PNP 磷酸解为相应的碱基。2-氨基嘌呤-N--D-核糖苷与氯乙醛的反应得到一种主要产物,明显不同于从酶合成中获得的产物,该产物不是 PNP 的底物。类似地制备了三环 7-脱氮腺苷(乳清苷)衍生物,并且显示出对,而不是对哺乳动物酶的有效抑制。观察到氨基嘌呤类似物与 PNP 的荧光复合物。