2009Synthetic CommunicationsRequires access

Efficient Procedure for the Preparation of Oligomer-Free Nα-Fmoc Amino Acids

Shaik Nowshuddin, M. Narayana Rao, A. Ram Reddy

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Abstract

A two-step method is presented for the peptide-free, high-purity, and high-yield synthesis of Nα-Fmoc amino acids. The first step involves the preparation of stable dicyclohexylammonium–amino acid ionic adduct in acetone. Subsequently, the ionic adducts, on reaction with Fmoc-Nosu under mild alkaline conditions, give dipeptide-free Nα-Fmoc amino acids. The positive charge of the dicyclohexylammonium counterion in the ionic salt has a longer radius, moderating the nucleophilicity of the carboxylate ion of the amino acid and preventing by-products by arresting the formation of mixed anhydrides, the precursors of oligopeptide impurities.

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What this paper is about

A two-step method is presented for the peptide-free, high-purity, and high-yield synthesis of Nα-Fmoc amino acids. The first step involves the preparation of stable dicyclohexylammonium–amino acid ionic adduct in acetone. Subsequently, the ionic adducts, on reaction with Fmoc-Nosu under mild alkaline conditions, give dipeptide-free Nα-Fmoc amino acids. The positive charge of the dicyclohexylammonium counterion in the ionic salt has a longer radius, moderating the nucleophilicity of the carboxylate ion of the amino acid and preventing by-products by arresting the formation of mixed anhydrides, the precursors of oligopeptide impurities.

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Available abstract

A two-step method is presented for the peptide-free, high-purity, and high-yield synthesis of Nα-Fmoc amino acids. The first step involves the preparation of stable dicyclohexylammonium–amino acid ionic adduct in acetone. Subsequently, the ionic adducts, on reaction with Fmoc-Nosu under mild alkaline conditions, give dipeptide-free Nα-Fmoc amino acids. The positive charge of the dicyclohexylammonium counterion in the ionic salt has a longer radius, moderating the nucleophilicity of the carboxylate ion of the amino acid and preventing by-products by arresting the formation of mixed anhydrides, the precursors of oligopeptide impurities.

Key concepts: Chemistry, Adduct, Amino acid, Counterion, Dipeptide, Oligomer, Carboxylate, Yield (engineering)

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