Featherston Aaron L, Shugrue Christopher R, Mercado Brandon Q, Miller Scott J
Department of Chemistry, Yale University, P.O. Box 208107, New Haven, Connecticut 06520-8107, United States.
ACS Catal. 2019 Jan 4;9(1):242-252. doi: 10.1021/acscatal.8b04132. Epub 2018 Nov 20.
Biologically inspired phosphothreonine (pThr)-embedded peptides that function as chiral Brønsted acid catalysts for enantioselective Baeyer-Villiger oxidations (BV) of cyclobutanones with aqueous HO are reported herein. Complementary to traditional BINOL-derived chiral phosphoric acids (CPAs), the functional diversity of the peptidic scaffold provides the opportunity for multiple points of contact with substrates via hydrogen bonding, and the ease of peptide synthesis facilitates rapid diversification of the catalyst structure, such that numerous unique peptide-based CPA catalysts have been prepared. Utilizing a hypothesis-driven design, we identified a pThr-based catalyst that contains an -acylated diaminopropionic acid (Dap) residue, which achieves high enantioselectivity with catalyst loadings as low as 0.5 mol%. The power of peptide-based multi-site binding is further exemplified through reversal in the absolute stereochemical outcome upon repositioning of the substrate-directing group - to ). Modifications to the +3 residue (Dap to Phe) lead to an observed enantiodivergence without inversion of any stereogenic center on the peptide catalyst, due to noncovalent interactions. Structure-selectivity and H-H-ROESY studies revealed that the proposed hydrogen bonding interactions are essential for high levels of enantioinduction. The ability for the phosphopeptides to operate as multifunctional oxidation catalysts expands the scope of pThr catalysts and provides a framework for the future selective diversification of more complex substrates, including natural products.
本文报道了受生物启发的嵌入磷酸苏氨酸(pThr)的肽,其作为手性布朗斯特酸催化剂,用于环丁酮与水合HO的对映选择性拜耳-维利格氧化反应(BV)。与传统的基于联萘酚的手性磷酸(CPA)互补,肽骨架的功能多样性提供了通过氢键与底物进行多点接触的机会,并且肽合成的简便性促进了催化剂结构的快速多样化,从而制备了许多独特的基于肽的CPA催化剂。利用假设驱动的设计,我们鉴定了一种基于pThr的催化剂,其含有酰化二氨基丙酸(Dap)残基,该催化剂在低至0.5 mol%的催化剂负载量下实现了高对映选择性。通过将底物导向基团重新定位(从 到 )后绝对立体化学结果的反转,进一步例证了基于肽的多位点结合的能力。对 +3 残基(从Dap到Phe)的修饰导致观察到对映体发散,而肽催化剂上任何立体中心都没有反转,这是由于非共价相互作用。结构-选择性和H-H-ROESY研究表明,所提出的氢键相互作用对于高水平的对映诱导至关重要。磷酸肽作为多功能氧化催化剂的能力扩展了pThr催化剂的范围,并为未来更复杂底物(包括天然产物)的选择性多样化提供了框架。