Division of Pharmaceutical Sciences, School of Pharmacy, University of Missouri, 2464 Charlotte Street, Kansas City, MO 64108-2718, United States.
Bioorg Med Chem Lett. 2012 Jul 15;22(14):4844-8. doi: 10.1016/j.bmcl.2012.05.041. Epub 2012 May 23.
We have previously demonstrated that polymerases such as telomerase can be inhibited by molecules (e.g., intercalators) that target the key RNA/DNA duplex substrate. In this work we show that this also holds true for reverse transcriptase, and show that the lead intercalators can be modified to increase inhibition efficacy. Specifically, we use the strategy of multiple simultaneous intercalation, by linking two intercalators with a variable linker. The rationale behind this design is that a specific linker has the potential to increase affinity and specificity for the target duplex. We have synthesized a library of 45 ethidium bis-intercalators in which the distance between intercalators is systematically varied. We observe that members of the dimer library have improved telomerase and reverse transcriptase inhibition, relative to the monomeric leads. We show that this improvement in inhibition over mono-intercalators is most prominent when non-productive sites of inhibitor binding are limited in the assay mix. When this is done, a 400-fold increase in inhibition efficacy is observed.
我们之前已经证明,聚合酶(如端粒酶)可以被靶向关键 RNA/DNA 双链底物的分子(如嵌入剂)抑制。在这项工作中,我们表明这同样适用于逆转录酶,并表明先导嵌入剂可以进行修饰以提高抑制效果。具体来说,我们使用多重同时嵌入的策略,通过用可变连接子连接两个嵌入剂。这种设计背后的原理是,特定的连接子有可能增加与靶双链体的亲和力和特异性。我们已经合成了一个由 45 个吖啶双嵌入剂组成的文库,其中嵌入剂之间的距离被系统地改变。我们观察到,与单体先导化合物相比,二聚体文库的成员对端粒酶和逆转录酶的抑制作用得到了改善。我们表明,当抑制剂结合的非生产性位点在测定混合物中受到限制时,抑制剂对单嵌入剂的抑制作用得到了显著改善。在这种情况下,观察到抑制效果提高了 400 倍。