Covalent [2]Catenane and [2]Rotaxane Synthesis via a δ-Amino Acid Template
Simone Pilon, Steen Ingemann Jørgensen, Jan H. van Maarseveen
Abstract
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Simone Pilon, Steen Ingemann Jørgensen, Jan H. van Maarseveen
Abstract
Open-access reader
Despite the advances in the synthesis of mechanically interlocked molecules, a generally applicable approach to interlocked natural products, such as lasso peptides, is yet to be formulated. While amino acid sequences have been introduced into several rotaxanes, the key structural components have always been dictated by the method used for supramolecular preorganization. In this work, we report the use of an ester-functionalized, aromatic δ-amino acid as the central covalent templating unit in the synthesis of both a [2]catenane and a [2]rotaxane from the same multimacrocyclic intermediate. This represents a key step toward future synthetic peptide-based interlocked products.
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Despite the advances in the synthesis of mechanically interlocked molecules, a generally applicable approach to interlocked natural products, such as lasso peptides, is yet to be formulated. While amino acid sequences have been introduced into several rotaxanes, the key structural components have always been dictated by the method used for supramolecular preorganization. In this work, we report the use of an ester-functionalized, aromatic δ-amino acid as the central covalent templating unit in the synthesis of both a [2]catenane and a [2]rotaxane from the same multimacrocyclic intermediate. This represents a key step toward future synthetic peptide-based interlocked products.
Key concepts: Rotaxane, Catenane, Supramolecular chemistry, Covalent bond, Chemistry, Molecule, Amino acid, Combinatorial chemistry