Leveson-Gower Reuben B, de Boer Ruben M, Roelfes Gerard
Stratingh Institute for Chemistry University of Groningen 9747 AG Groningen The Netherlands.
ChemCatChem. 2022 Apr 22;14(8):e202101875. doi: 10.1002/cctc.202101875. Epub 2022 Mar 4.
The incorporation of organocatalysts into protein scaffolds holds the promise of overcoming some of the limitations of this powerful catalytic approach. Previously, we showed that incorporation of the non-canonical amino acid para-aminophenylalanine into the non-enzymatic protein scaffold LmrR forms a proficient and enantioselective artificial enzyme (LmrR_pAF) for the Friedel-Crafts alkylation of indoles with enals. The unnatural aniline side-chain is directly involved in catalysis, operating via a well-known organocatalytic iminium-based mechanism. In this study, we show that LmrR_pAF can enantioselectively form tertiary carbon centres not only during C-C bond formation, but also by enantioselective protonation, delivering a proton to one face of a prochiral enamine intermediate. The importance of various side-chains in the pocket of LmrR is distinct from the Friedel-Crafts reaction without enantioselective protonation, and two particularly important residues were probed by exhaustive mutagenesis.
将有机催化剂整合到蛋白质支架中有望克服这种强大催化方法的一些局限性。此前,我们表明将非天然氨基酸对氨基苯丙氨酸整合到非酶蛋白支架LmrR中可形成一种高效且对映选择性的人工酶(LmrR_pAF),用于吲哚与烯醛的傅克烷基化反应。非天然苯胺侧链直接参与催化,通过一种著名的基于亚胺离子的有机催化机制起作用。在本研究中,我们表明LmrR_pAF不仅可以在碳 - 碳键形成过程中对映选择性地形成叔碳中心,还可以通过对映选择性质子化,将质子传递到手性前烯胺中间体的一个面上。LmrR口袋中各种侧链的重要性与无对映选择性质子化的傅克反应不同,并且通过详尽的诱变研究了两个特别重要的残基。