In Nature, multicyclic peptides constitute a versatile molecule class with various biological functions. For their pharmaceutical exploitation, chemical methodologies that enable selective consecutive macrocyclizations are required. We disclose a combination of enzymatic macrocyclization, CLIPS alkylation, and oxime ligation to prepare tetracyclic peptides. Five new small molecular scaffolds and differently sized model peptides featuring noncanonical amino acids were synthesized. Enzymatic macrocyclization, followed by one-pot scaffold-assisted cyclizations, yielded 21 tetracyclic peptides in a facile and robust manner.</p
Peptides are biomolecules that commonly engage in biological activities of native bio-systems, and ...
Natural products comprise a diverse array of molecules many of which are biologically active. Most n...
Peptide-derived macrocycles are a potentially rich source of biologically active lead structures, wh...
In Nature, multicyclic peptides constitute a versatile molecule class with various biological functi...
In Nature, multicyclic peptides constitute a versatile molecule class with various biological functi...
Cyclic and multicyclic peptides are ubiquitous in Nature. They show interesting biological activitie...
A broadly applicable one-pot methodology for the facile transformation of linear peptides into tetra...
The renaissance of peptides as prospective therapeutics has fostered the development of novel strate...
Cyclic peptides have emerged as a highly potent class of molecules for therapeutic applications. So ...
Thesis (Ph. D.)--University of Rochester. Department of Chemistry, 2015.Owing to their potent and di...
Strategies for the efficient synthesis of peptide macrocycles have been a long-standing goal. In thi...
Strategies for the efficient synthesis of peptide macrocycles have been a long-standing goal. In thi...
Peptide macrocycles form an outstanding class of natural and synthetic bioactive compounds. This cha...
Natural products comprise a diverse array of molecules, many of which are biologically active. Most ...
Cyclic tetrapeptides are an intriguing class of natural products. To synthesize highly strained cycl...
Peptides are biomolecules that commonly engage in biological activities of native bio-systems, and ...
Natural products comprise a diverse array of molecules many of which are biologically active. Most n...
Peptide-derived macrocycles are a potentially rich source of biologically active lead structures, wh...
In Nature, multicyclic peptides constitute a versatile molecule class with various biological functi...
In Nature, multicyclic peptides constitute a versatile molecule class with various biological functi...
Cyclic and multicyclic peptides are ubiquitous in Nature. They show interesting biological activitie...
A broadly applicable one-pot methodology for the facile transformation of linear peptides into tetra...
The renaissance of peptides as prospective therapeutics has fostered the development of novel strate...
Cyclic peptides have emerged as a highly potent class of molecules for therapeutic applications. So ...
Thesis (Ph. D.)--University of Rochester. Department of Chemistry, 2015.Owing to their potent and di...
Strategies for the efficient synthesis of peptide macrocycles have been a long-standing goal. In thi...
Strategies for the efficient synthesis of peptide macrocycles have been a long-standing goal. In thi...
Peptide macrocycles form an outstanding class of natural and synthetic bioactive compounds. This cha...
Natural products comprise a diverse array of molecules, many of which are biologically active. Most ...
Cyclic tetrapeptides are an intriguing class of natural products. To synthesize highly strained cycl...
Peptides are biomolecules that commonly engage in biological activities of native bio-systems, and ...
Natural products comprise a diverse array of molecules many of which are biologically active. Most n...
Peptide-derived macrocycles are a potentially rich source of biologically active lead structures, wh...