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Discovery of Tricyclic Indoles That Potently Inhibit Mcl-1 Using Fragment-Based Methods and Structure-Based Design

机译:使用基于片段的方法和基于结构的设计发现有效抑制Mcl-1的三环吲哚

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摘要

Myeloid cell leuketinia-1 (Mcl-1) is an anti-apoptotic member of the Bcl-2 family of proteins that is overexpressed and amplified in many cancers. Overexpression of Mcl-1 allows cancer cells to evade apoptosis and contributes to the resistance of cancer cells to be effectively treated with various chemotherapies. From an NMR-based screen of a large fragment library, several distinct chemical scaffolds that bind to Mcl-1 were discovered. Here, we describe the discovery of potent tricyclic 2-indole carboxylic acid inhibitors that exhibit single digit nanomolar binding affinity to Mcl-1 and greater than 1700-fold selectivity over Bcl-xL and greater than 100-fold selectivity over Bcl-2. X-ray structures of these compounds when complexed to Mcl-1 provide detailed information on how these small-molecules bind to the target, which was used to guide compound optimization.
机译:髓样细胞白血病1(Mcl-1)是Bcl-2家族蛋白的抗凋亡成员,在许多癌症中过表达和扩增。 Mcl-1的过度表达使癌细胞能够逃避凋亡,并有助于通过各种化学疗法有效治疗癌细胞的耐药性。从大片段库的基于NMR的筛选中,发现了几种与Mcl-1结合的不同化学支架。在这里,我们描述了有效的三环2-吲哚羧酸抑制剂的发现,该抑制剂表现出对Mcl-1的单位数纳摩尔结合亲和力,对Bcl-xL的选择性大于1700倍,对Bcl-2的选择性大于100倍。这些化合物与Mcl-1配合时的X射线结构可提供有关这些小分子如何与靶标结合的详细信息,该信息可用于指导化合物优化。

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