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Solid-phase synthesis of a peptide-based P,S-ligand system designed for generation of combinatorial catalyst libraries

机译:用于生成组合催化剂库的基于肽的P,S-配体系统的固相合成

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An efficient methodology for the solid-phase synthesis of diverse combinatorial peptide-based P,S-ligand libraries based on a modular approach was developed. Chiral thioethers were introduced into a series of peptide scaffolds using commercially available Fmoc-protected cysteine derivatives, and secondary amines were incorporated into the peptide backbones by reductive alkylation using readily available Fmoc-protected amino aldehydes. Phosphinylation of the secondary amines of the scaffolds, applying two different reagents, yielded two different types of ligands. Subsequent complexation with palladium afforded six- or seven-membered chelates, respectively. The selectivity, in an asymmetric allylic substitution reaction, of the two different types of chelates, derived from the same peptide scaffold, was complementary in all cases studied, affording the product as opposite stereoisomers with up to 60% ee. These results hold great promise for the identification of highly selective catalysts upon screening of larger P,S-based catalyst libraries.
机译:开发了一种有效的方法,用于基于模块化方法的多种组合肽基P,S-配体文库的固相合成。使用可商购的Fmoc保护的半胱氨酸衍生物将手性硫醚引入一系列肽支架中,并使用易于获得的Fmoc保护的氨基醛通过还原烷基化将仲胺掺入到肽主链中。使用两种不同的试剂,对支架的仲胺进行磷酰化,生成两种不同类型的配体。随后与钯络合,分别得到六元或七元螯合物。在所有研究的案例中,源自同一肽支架的两种不同类型的螯合物在不对称的烯丙基取代反应中的选择性在所有研究情况下都是互补的,从而提供了具有高达60%ee的相反立体异构体的产物。这些结果为筛选较大的基于P,S的催化剂库时鉴定高选择性催化剂具有广阔的前景。

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