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Rapid Optimization of Mcl-1 Inhibitors using Stapled Peptide Libraries Including Non-Natural Side Chains

机译:使用包括非天然侧链的装好的肽库快速优化Mcl-1抑制剂

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摘要

Alpha helices form a critical part of the binding interface for many protein-protein interactions, and chemically stabilized synthetic helical peptides can be effective inhibitors of such helix-mediated complexes. In particular, hydrocarbon stapling of peptides to generate constrained helices can improve binding affinity and other peptide properties, but determining the best stapled peptide variant often requires laborious trial and error. Here we describe the rapid discovery and optimization of a stapled-helix peptide that binds to Mcl-1, an anti-apoptotic protein that is overexpressed in many chemoresistant cancers. To accelerate discovery, we developed a peptide library synthesis and screening scheme capable of identifying subtle affinity differences among Mcl-1-binding stapled peptides. We used our method to sample combinations of non-natural amino-acid substitutions that we introduced into Mcl-1 inhibitors in the context of a fixed helix-stabilizing hydrocarbon staple that increased peptide helical content and reduced proteolysis. Peptides discovered in our screen contained surprising substitutions at sites that are conserved in natural binding partners. Library-identified peptide M3d is the most potent molecule yet tested for selectively triggering mitochondrial permeabilization in Mcl-1 dependent cell lines. Our library approach for optimizing helical peptide inhibitors can be readily applied to the study of other biomedically important targets.
机译:α螺旋形成了许多蛋白质-蛋白质相互作用的结合界面的关键部分,化学稳定的合成螺旋肽可以成为此类螺旋介导的复合物的有效抑制剂。特别地,肽的烃钉合以产生约束的螺旋可以改善结合亲和力和其他肽性质,但是确定最佳的钉合肽变体通常需要费力的试验和错误。在这里,我们描述了与Mcl-1结合的钉合螺旋肽的快速发现和优化,Mcl-1是在许多耐化学性癌症中过表达的抗凋亡蛋白。为了加快发现速度,我们开发了一种肽库合成和筛选方案,该方案能够识别Mcl-1结合固定肽之间的细微亲和力差异。我们使用我们的方法来采样非天然氨基酸取代的组合,这些组合是在固定的螺旋稳定烃钉书钉的背景下引入Mcl-1抑制剂中的,该钉书钉可增加肽螺旋含量并减少蛋白水解作用。在我们的筛选中发现的肽在天然结合伴侣中保守的位点包含令人惊讶的取代。文库鉴定的肽M3d是经测试可在Mcl-1依赖性细胞系中选择性触发线粒体通透性的最有效分子。我们用于优化螺旋肽抑制剂的文库方法可轻松应用于其他生物医学重要靶标的研究。

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