School of Chemistry, Monash University, Clayton, VIC 3800, Australia.
Mar Drugs. 2023 Jun 29;21(7):390. doi: 10.3390/md21070390.
Recombinant peptide synthesis allows for large-scale production of peptides with therapeutic potential. However, access to dicarba peptidomimetics via sidechain-deprotected sequences becomes challenging with exposed Lewis basicity presented by amine and sulfur-containing residues. Presented here is a combination of strategies which can be used to deactivate coordinative residues and achieve high-yielding Ru-catalyzed ring-closing metathesis. The chemistry is exemplified using α-conotoxin EpI, a native bicyclic disulfide-containing sequence isolated from the marine conesnail . Replacement of the loop I disulfide with -dicarba bridges was achieved with high conversion via solution-phase ring-closing metathesis of the unprotected linear peptide after simple chemoselective oxidation and ion-exchange masking of problematic functionality. Metathesis was also attempted in green solvent choices to further improve the sustainability of dicarba peptide synthesis.
重组肽合成允许大规模生产具有治疗潜力的肽。然而,通过侧链去保护序列获得二碳肽类似物变得具有挑战性,因为胺和含硫残基呈现出暴露的路易斯碱性。这里提出了一种组合策略,可以用来使配位残基失活并实现高产率的 Ru 催化的环 closing 复分解。该化学方法使用α-芋螺毒素 EpI 进行了说明,α-芋螺毒素 EpI 是一种从海洋芋螺中分离出来的天然双环含二硫化物序列。通过未保护的线性肽的溶液相环 closing 复分解,在简单的化学选择性氧化和对有问题的功能进行离子交换掩蔽后,用 -二碳桥替代环 I 二硫化物,以高转化率实现了转化。还尝试了在绿色溶剂选择中进行复分解,以进一步提高二碳肽合成的可持续性。