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烯二炔类新制癌菌素发色团的类似物:针对凸起核酸靶点设计的药物。

Congeners of the enediyne neocarzinostatin chromophore: designed agents for bulged nucleic acid targets.

作者信息

Jones Graham B, Lin Yiqing, Ma Dong, Xiao Ziwei, Hwang Geum-Sook, Kappen Lizzy, Goldberg Irving H

机构信息

Bioorganic and Medicinal Chemistry Laboratories, Department of Chemistry and Chemical Biology, Northeastern University, Boston, MA 02115, USA.

出版信息

Curr Top Med Chem. 2008;8(6):436-47. doi: 10.2174/156802608783955692.

Abstract

Of the commonly recognized structural elements within nucleic acids, bulges are among the least developed as targets for small molecules. Bulges in DNA and RNA have been linked to biomolecular processes involved in numerous diseases, thus probes with affinity for these targets would be of considerable utility to chemical biologists and medicinal chemists. Despite such opportunity, there is a dearth of small molecules available with affinity for bulges, which has hampered exploitation of these key targets. We have used guided chemical synthesis to prepare small molecules capable of binding to DNA and RNA bulges. Our design is based on a template which mimics a metabolite of the enediyne neocarzinostatin. The key spirocylic building block was formed through an intramolecular aldol process and the parent template shows pronounced affinity for 2 base bulges. Functionalization with specific aminosugar moieties confers nanomolar binding affinity for selected bulged DNA targets, and installation of reactive functional groups allows covalent modification of bulges. These rationally designed agents can now be used to study the stereochemistry and architecture of bulge-drug complexes and investigate the molecular biology of bulge induced processes. Members of this class have been shown to induce slipped synthesis of DNA, suggesting the agents, in addition to recognizing and binding to pre-formed bulges, can also induce bulge formation on demand.

摘要

在核酸中常见的公认结构元件中,凸起作为小分子的作用靶点是研究最少的一类。DNA和RNA中的凸起与许多疾病所涉及的生物分子过程有关,因此对这些靶点具有亲和力的探针对于化学生物学家和药物化学家来说将具有相当大的实用价值。尽管有这样的机会,但目前缺乏对凸起具有亲和力的小分子,这阻碍了对这些关键靶点的开发利用。我们利用导向化学合成法制备了能够与DNA和RNA凸起结合的小分子。我们的设计基于一种模拟烯二炔新制癌菌素代谢物的模板。关键的螺环结构单元是通过分子内羟醛缩合反应形成的,母体模板对2碱基凸起显示出显著的亲和力。用特定的氨基糖部分进行功能化可赋予对选定的凸起DNA靶点纳摩尔级的结合亲和力,而引入反应性官能团则可实现对凸起的共价修饰。这些经过合理设计的试剂现在可用于研究凸起-药物复合物的立体化学和结构,并研究凸起诱导过程的分子生物学。已证明这类成员可诱导DNA的错配合成,这表明这些试剂除了能识别并结合预先形成的凸起外,还能按需诱导凸起的形成。

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