Literature DB >> 14570500

Asymmetric synthesis of unsaturated, fused bicyclic proline analogues through amino alkylation of cyclic bis(allylsulfoximine)titanium complexes and migratory cyclization of delta-amino alkenyl aminosulfoxonium salts.

Stefan Koep1, Hans-Joachim Gais, Gerhard Raabe.   

Abstract

Described is an asymmetric synthesis of new Delta(3a,4)-unsaturated, fused bicyclic proline analogues from cyclic bis(allylsulfoximine)titanium complexes and N-tert-butylsulfonyl imino ethyl ester. Treatment of the enantiomerically pure five-, six-, seven-, and eight-membered cyclic bis(allylsulfoximine)titanium complexes with the imino ester gave mixtures of the corresponding (E,syn)- and (Z,syn)-configured, delta-sulfoximine substituted, cyclic gamma,delta-unsaturated alpha-amino acid esters with high regio- and diastereoselectivities in good yields. Activation of the N-methyl sulfoximine group of these amino acid derivatives through methylation with Me(3)OBF(4) afforded in nearly quantitative yields the corresponding (dimethylamino)sulfoxonium salts. A novel migratory cyclization of these salts with DBU gave via an isomerization to the corresponding allylic (dimethylamino)sulfoxonium salts and an intramolecular substitution of the (dimethylamino)sulfoxonium group the enantio- and diastereomerically pure, bicyclic, N-tert-butylsulfonyl protected proline analogues having a six- and eight-membered unsaturated carbocyclic ring. Cyclization of the alkenyl (dimethylamino)sulfoxonium salts was independent of the configuration of the double bond. N,N-Dimethylphenylsulfinamide of > or =99% ee was obtained in good yield as a further reaction product. Conversion of the sulfinamide to N,S-dimethyl-S-phenylsulfoximine of > or =99% ee, the starting material for the synthesis of the allylic sulfoximines, had been accomplished previously. Finally, cleavage of the tert-butylsulfonyl protecting group with anhydrous acid furnished the fused bicyclic proline analogue containing an unsaturated six-membered ring in high yield.

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Year:  2003        PMID: 14570500     DOI: 10.1021/ja030324y

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  7 in total

1.  Stereospecific ring expansion of chiral vinyl aziridines.

Authors:  Matthew Brichacek; Mauricio Navarro Villalobos; Alexandra Plichta; Jon T Njardarson
Journal:  Org Lett       Date:  2011-02-10       Impact factor: 6.005

Review 2.  Synthesis and Transformations of NH-Sulfoximines.

Authors:  Michael Andresini; Arianna Tota; Leonardo Degennaro; James A Bull; Renzo Luisi
Journal:  Chemistry       Date:  2021-10-13       Impact factor: 5.020

3.  Novel Pieces for the Emerging Picture of Sulfoximines in Drug Discovery: Synthesis and Evaluation of Sulfoximine Analogues of Marketed Drugs and Advanced Clinical Candidates.

Authors:  Juan Alberto Sirvent; Ulrich Lücking
Journal:  ChemMedChem       Date:  2017-03-22       Impact factor: 3.466

Review 4.  Recent Developments in Vinylsulfonium and Vinylsulfoxonium Salt Chemistry.

Authors:  Mukulesh Mondal; Shi Chen; Nessan J Kerrigan
Journal:  Molecules       Date:  2018-03-23       Impact factor: 4.411

5.  N-Arylation of NH-Sulfoximines via Dual Nickel Photocatalysis.

Authors:  Alexander Wimmer; Burkhard König
Journal:  Org Lett       Date:  2019-04-02       Impact factor: 6.005

6.  Identification of Atuveciclib (BAY 1143572), the First Highly Selective, Clinical PTEFb/CDK9 Inhibitor for the Treatment of Cancer.

Authors:  Ulrich Lücking; Arne Scholz; Philip Lienau; Gerhard Siemeister; Dirk Kosemund; Rolf Bohlmann; Hans Briem; Ildiko Terebesi; Kirstin Meyer; Katja Prelle; Karsten Denner; Ulf Bömer; Martina Schäfer; Knut Eis; Ray Valencia; Stuart Ince; Franz von Nussbaum; Dominik Mumberg; Karl Ziegelbauer; Bert Klebl; Axel Choidas; Peter Nussbaumer; Matthias Baumann; Carsten Schultz-Fademrecht; Gerd Rühter; Jan Eickhoff; Michael Brands
Journal:  ChemMedChem       Date:  2017-10-16       Impact factor: 3.466

7.  Visible-Light-Mediated Photoredox-Catalyzed N-Arylation of NH-Sulfoximines with Electron-Rich Arenes.

Authors:  Alexander Wimmer; Burkhard König
Journal:  Adv Synth Catal       Date:  2018-08-02       Impact factor: 5.837

  7 in total

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