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Organic Synthesis Toward Small-Molecule Probes and Drugs Special Feature: Chemical methodology as a source of small-molecule checkpoint inhibitors and heat shock protein 70 (Hsp70) modulators

机译:面向小分子探针和药物的有机合成特殊功能:化学方法作为小分子检查点抑制剂和热激蛋白70(Hsp70)调节剂的来源

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摘要

Unique chemical methodology enables the synthesis of innovative and diverse scaffolds and chemotypes and allows access to previously unexplored “chemical space.” Compound collections based on such new synthetic methods can provide small-molecule probes of proteins and/or pathways whose functions are not fully understood. We describe the identification, characterization, and evolution of two such probes. In one example, a pathway-based screen for DNA damage checkpoint inhibitors identified a compound, MARPIN (ATM and ATR pathway inhibitor) that sensitizes p53-deficient cells to DNA-damaging agents. Modification of the small molecule and generation of an immobilized probe were used to selectively bind putative protein target(s) responsible for the observed activity. The second example describes a focused library approach that relied on tandem multicomponent reaction methodologies to afford a series of modulators of the heat shock protein 70 (Hsp70) molecular chaperone. The synthesis of libraries based on the structure of MAL3-101 generated a collection of chemotypes, each modulating Hsp70 function, but exhibiting divergent pharmacological activities. For example, probes that compromise the replication of a disease-associated polyomavirus were identified. These projects highlight the importance of chemical methodology development as a source of small-molecule probes and as a drug discovery starting point.
机译:独特的化学方法可以合成创新和多样的支架和化学型,并允许进入以前未开发的“化学空间”。基于这种新的合成方法的化合物集合可提供蛋白质和/或功能尚未完全了解的小分子探针。我们描述了两种此类探针的鉴定,表征和进化。在一个实例中,对DNA损伤检查点抑制剂的基于途径的筛选鉴定了使p53缺陷细胞对DNA损伤剂敏感的化合物MARPIN(ATM和ATR途径抑制剂)。小分子的修饰和固定探针的产生用于选择性结合负责观察到的活性的假定蛋白质靶。第二个示例描述了一种聚焦库方法,该方法依赖于串联多组分反应方法来提供一系列热激蛋白70(Hsp70)分子伴侣的调节剂。基于MAL3-101结构的文库合成产生了化学型的集合,每个化学型调节Hsp70功能,但表现出不同的药理活性。例如,鉴定出破坏疾病相关多瘤病毒复制的探针。这些项目突出了化学方法开发作为小分子探针来源和药物发现起点的重要性。

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