Divergent synthetic routes to biologically relevant types of compounds: chiral polyfunctional γ-lactams and amino acids

Divergent and versatile synthetic routes leading to the title compounds are described. They start from a common chiral precursor derived from (−)-(S)-verbenone and afford polyfunctional γ-lactams and γ- and ε-amino acids. The cyclobutane moiety in these molecules acts as a chiral and polyfunctional...

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Veröffentlicht in:Tetrahedron 2014-09, Vol.70 (37), p.6546-6553
Hauptverfasser: Aguilera, Jordi, Moglioni, Albertina, Mor, Àlex, Ospina, Jimena, Illa, Ona, Ortuño, Rosa M.
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container_end_page 6553
container_issue 37
container_start_page 6546
container_title Tetrahedron
container_volume 70
creator Aguilera, Jordi
Moglioni, Albertina
Mor, Àlex
Ospina, Jimena
Illa, Ona
Ortuño, Rosa M.
description Divergent and versatile synthetic routes leading to the title compounds are described. They start from a common chiral precursor derived from (−)-(S)-verbenone and afford polyfunctional γ-lactams and γ- and ε-amino acids. The cyclobutane moiety in these molecules acts as a chiral and polyfunctional platform providing stereogenic centres with unambiguous absolute configuration that control the chirality of the newly produced asymmetric carbons. Furthermore, it affords functional groups and carbon chains suitable not only to create the basic skeleton of the desired products but additional functional groups. These features confer on these derivatives a great versatility for further uses in the development of new drugs and as synthetic building blocks. [Display omitted]
doi_str_mv 10.1016/j.tet.2014.07.011
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subjects (−)-(S)-Verbenone
Amino acids
Asymmetry
Carbon
Chirality
Derivatives
Divergent synthesis
Functional groups
Platforms
Polyfunctional scaffolds
Precursors
Tetrahedrons
γ-Lactams
title Divergent synthetic routes to biologically relevant types of compounds: chiral polyfunctional γ-lactams and amino acids
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