Synthesis of 4-phosphono(difluoromethyl)-D,L-phenylalanine and N-boc and N-Fmoc derivatives suitably protected for solid-phase synthesis of nonhydrolyzable phosphotyrosyl peptide analogues
Author:
Publisher
Elsevier BV
Subject
Organic Chemistry,Drug Discovery,Biochemistry
Reference7 articles.
1. Preparation of 4-[Bis(tert-butoxy)phosphorylmethyl]-N-(fluoren-9-ylmethoxycarbonyl)-DL-phenylalanine. A Hydrolytically Stable Analogue ofO-Phosphotyrosine Potentially Suitable for Peptide Synthesis
2. Solid-phase synthesis of nonhydrolyzable phosphotyrosyl peptide analogues with Nα-Fmoc-(O,O-di-t-butyl)phosphono-p-methylphenylalanine
3. Inhibition of SH2 domain/phosphoprotein association by a nonhydrolyzable phosphonopeptide
4. A general method for the preparation of benzylic α,α-difluorophosphonic acids; non-hydrolyzable mimemtics of phosphotyrosine
5. Preparation of fluoro- and hydroxy-4-(phosphonomethyl)-D,L-phenylalanine suitably protected for solid-phase synthesis of peptides containing hydrolytically stable analogs of O-phosphotyrosine
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1. Asymmetric Synthesis of Chiral Amino Carboxylic‐Phosphonic Acid Derivatives;Advanced Synthesis & Catalysis;2020-12-29
2. Phosphonic acid: preparation and applications;Beilstein Journal of Organic Chemistry;2017-10-20
3. 1,1′-Dibenzyl-bis-(triazolyl)diphenylphosphine dioxide: a new efficient organocatalyst for silicon tetrachloride-mediated enantioselective Abramov-type phosphonylation of aldehydes with trialkyl phosphites;RSC Advances;2017
4. A Stable Pyrophosphoserine Analog for Incorporation into Peptides and Proteins;ACS Chemical Biology;2016-02-05
5. Advances in Fmoc solid‐phase peptide synthesis;Journal of Peptide Science;2016-01
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