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Divergent unprotected peptide macrocyclisation by palladium-mediated cysteine arylation

机译:钯介导的半胱氨酸芳构化使未保护的肽大环化

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摘要

Macrocyclic peptides are important therapeutic candidates due to their improved physicochemical properties in comparison to their linear counterparts. Here we detail a method for a divergent macrocyclisation of unprotected peptides by crosslinking two cysteine residues with bis-palladium organometallic reagents. These synthetic intermediates are prepared in a single step from commercially available aryl bis-halides. Two bioactive linear peptides with cysteine residues at i, i + 4 and i, i + 7 positions, respectively, were cyclised to introduce a diverse array of aryl and bi-aryl linkers. These two series of macrocyclic peptides displayed similar linker-dependent lipophilicity, phospholipid affinity, and unique volume of distributions. Additionally, one of the bioactive peptides showed target binding affinity that was predominantly affected by the length of the linker. Collectively, this divergent strategy allowed rapid and convenient access to various aryl linkers, enabling the systematic evaluation of the effect of appending unit on the medicinal properties of macrocyclic peptides.
机译:大环肽是重要的治疗候选物,因为与线性对应物相比,它们的理化性质有所改善。在这里,我们详细介绍了一种通过将两个半胱氨酸残基与双钯有机金属试剂交联而对未保护的肽进行发散的大环化的方法。这些合成中间体是由市售的芳基双卤化物一步制备的。将分别在i,i + 4和i,i + 7位具有半胱氨酸残基的两个生物活性线性肽环化,以引入各种各样的芳基和联芳基接头。这两个系列的大环肽显示出相似的接头依赖性亲脂性,磷脂亲和力和独特的分布体积。另外,一种生物活性肽显示出靶结合亲和力,该亲和力主要受接头长度的影响。总体而言,这种不同的策略允许快速方便地访问各种芳基接头,从而能够系统地评估附加单元对大环肽的药物性质的影响。

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