Literature DB >> 30387616

Formation of Non-Natural α,α-Disubstituted Amino Esters via Catalytic Michael Addition.

Kip A Teegardin1, Lacey Gotcher1, Jimmie D Weaver1.   

Abstract

The enolate monoanion of amino esters is explored, and the first catalytic Michael addition of α-amino esters is demonstrated. These studies indicate that the acidity of the αC-H is the primary factor determining reactivity. Thus, polyfluorophenylglycine amino esters yield novel α-amino esters in the presence of a catalytic amount of a guanidine-derived base and Michael acceptors. Reactivity requires an acidic N-H, which is accomplished using common protecting groups such as N-Bz, N-Boc, and N-Cbz. Calculations and labeling experiments provide insight into the governing principles in which a key C-to-N proton transfer occurs, resulting in an expansion of the scope to include a number of natural amino esters. The study culminates with a late-stage functionalization of peptidic γ-secretase inhibitor, DAPT.

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Year:  2018        PMID: 30387616      PMCID: PMC6581451          DOI: 10.1021/acs.orglett.8b03161

Source DB:  PubMed          Journal:  Org Lett        ISSN: 1523-7052            Impact factor:   6.005


  1 in total

1.  Practical asymmetric amine nucleophilic approach for the modular construction of protected α-quaternary amino acids.

Authors:  Teng Liu; Shaofei Ni; Wusheng Guo
Journal:  Chem Sci       Date:  2022-06-05       Impact factor: 9.969

  1 in total

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