| Literature DB >> 26864510 |
Ji-Wei Zhang1, Jin-Hui Xu1, Dao-Juan Cheng1, Chuan Shi1, Xin-Yuan Liu1, Bin Tan1.
Abstract
Axially chiral compounds play an important role in areas such as asymmetric catalysis. The tyrosine click-like reaction is an efficient approach for synthesis of urazoles with potential applications in pharmaceutical and asymmetric catalysis. Here we discover a class of urazole with axial chirality by restricted rotation around an N-Ar bond. By using bifunctional organocatalyst, we successfully develop an organocatalytic asymmetric tyrosine click-like reaction in high yields with excellent enantioselectivity under mild reaction conditions. The excellent remote enantiocontrol of the strategy originates from the efficient discrimination of the two reactive sites in the triazoledione and transferring the stereochemical information of the catalyst into the axial chirality of urazoles at the remote position far from the reactive site.Entities:
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Year: 2016 PMID: 26864510 PMCID: PMC4753251 DOI: 10.1038/ncomms10677
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919
Figure 1Synthesis of urazoles via tyrosine click reaction and discovery of axial chirality and strategy for remote enantiocontrol.
(a) Synthesis of urazoles via tyrosine click reaction (Barbas' discovery). (b) Discovery of urazoles with axial chirality. (c) Our strategy for remote enantiocontrol of axial chirality of urazoles.
Optimization of the organocatalytic enantioselective tyrosine click reaction*.
Substrate scope of naphthols or phenols*.
The reaction substrate scope of 4-aryl-1,2,4-triazoline-3,5-diones*.
Optimization of the asymmetric tyrosine click-like reaction involving indoles as nucleophiles*.
The substrate scope by using indoles as nucleophiles*.
Figure 2Application in asymmetric catalysis and gram-scale synthesis of 3a/5a and further transformation.
(a) Potential application of catalytic asymmetric synthesis of substituted 3-hydroxy-2-oxindole. (b) Gram-scale synthesis of axially chiral urazoles via tyrosine click reaction. (c) Further transformation for confirmation of absolute configuration.