A Concise Approach to Structurally Diverse β-Amino Acids
摘要:
We have demonstrated that the high yields and selectivities of 1,3-dipolar cycloadditions can be translated into facile stereoselective syntheses of a diverse array of beta-amino acids, key components of bioactive natural products, beta-lactams, and peptidomimetics. Simply by selecting different combinations of three readily available starting materials (an oxime, a chiral allylic alcohol, and a nucleophile), we used the reaction sequence to prepare four different beta-amino acid structural types with a variety of substitution patterns in good overall yield. Of particular note is the use of this approach to prepare highly substituted beta-amino acids not readily accessible by previously reported methodologies. This will pave the way for future studies of the structure and function of this important class of molecules.
A Concise Approach to Structurally Diverse β-Amino Acids
作者:Aaron R. Minter、Amelia A. Fuller、Anna K. Mapp
DOI:10.1021/ja0298747
日期:2003.6.1
We have demonstrated that the high yields and selectivities of 1,3-dipolar cycloadditions can be translated into facile stereoselective syntheses of a diverse array of beta-amino acids, key components of bioactive natural products, beta-lactams, and peptidomimetics. Simply by selecting different combinations of three readily available starting materials (an oxime, a chiral allylic alcohol, and a nucleophile), we used the reaction sequence to prepare four different beta-amino acid structural types with a variety of substitution patterns in good overall yield. Of particular note is the use of this approach to prepare highly substituted beta-amino acids not readily accessible by previously reported methodologies. This will pave the way for future studies of the structure and function of this important class of molecules.
Succinct Synthesis of β-Amino Acids via Chiral Isoxazolines
作者:Amelia A. Fuller、Bin Chen、Aaron R. Minter、Anna K. Mapp
DOI:10.1021/ja0431713
日期:2005.4.1
isoxazolines as key intermediates to access five different β-amino acid structural types with excellent selectivity. Of particular note is the use of this approach to prepare highly substituted cis-β-proline analogues. The ready access to these diversely substituted compounds is expected to facilitate future studies of the structure and function of this important class of molecules.