Casanova Elena, Hernandez Ana-Isabel, Priego Eva-María, Liekens Sandra, Camarasa María-José, Balzarini Jan, Pérez-Pérez María-Jesús
Instituto de Química Médica (C.S.I.C.), Juan de la Cierva 3, E-28006 Madrid, Spain.
J Med Chem. 2006 Sep 7;49(18):5562-70. doi: 10.1021/jm0605379.
On the basis of our previous findings that 5'-O-tritylinosine (KIN59) behaves as an allosteric inhibitor of the angiogenic enzyme thymidine phosphorylase (TPase), we have undertaken the synthesis and enzymatic evaluation of a novel series of nucleoside analogues modified at positions 1, 2, or 6 of the purine ring and at the 5'-position of the ribose moiety of the lead compound KIN59. SAR studies indicate that quite large structural variations can be performed on KIN59 without compromising TPase inhibition. Thus, incorporation of a cyclopropylmethyl or a cyclohexylmethyl group at position N(1) of 5'-O-tritylinosine increases the inhibitory activity against TPase 10-fold compared to KIN59. Moreover, the trityl group at the 5'-position of the ribose seems to be crucial for TPase inhibition. The here reported results further substantiate that 5'-O-trityl nucleosides represent a new class of TPase inhibitors that should be further explored in those biological systems where TPase plays an instrumental role (i.e. angiogenesis).
基于我们之前的研究发现,即5'-O-三苯甲基肌苷(KIN59)作为血管生成酶胸苷磷酸化酶(TPase)的变构抑制剂,我们开展了一系列新型核苷类似物的合成及酶活性评估,这些类似物在先导化合物KIN59的嘌呤环的1、2或6位以及核糖部分的5'-位进行了修饰。构效关系(SAR)研究表明,在不影响TPase抑制活性的情况下,KIN59可以进行相当大的结构变化。因此,在5'-O-三苯甲基肌苷的N(1)位引入环丙基甲基或环己基甲基基团,与KIN59相比,对TPase的抑制活性提高了10倍。此外,核糖5'-位的三苯甲基基团似乎对TPase抑制至关重要。此处报道的结果进一步证实,5'-O-三苯甲基核苷代表了一类新的TPase抑制剂,在TPase发挥重要作用的生物系统(即血管生成)中应进一步探索。