The use of selenocysteines and various cross-linkers to induce helicity in a bioactive peptide is described. The higher reactivity of selenocysteine, relative to cysteine, facilitates rapid cross-linking within unprotected linear peptides under mild aqueous conditions. Alkylating agents of variable topology and electrophilicity were used to link pairs of selenocysteines within a p53 peptide. Facile selenoether formation enables diverse tailoring of the helical peptide structure
The development of constrained peptides for inhibition of protein–protein interactions is an emergin...
Selenocysteine does the job: Lanthionine bridges are important structural elements in naturally occu...
Synthesis of selenoxo peptides by the treatment of N α- protected peptide esters with a combination...
The use of selenocysteines and various cross-linkers to induce helicity in a bioactive peptide is de...
Polyproline sequences are highly abundant in prokaryotic 10 and eukaryotic proteins, where they serv...
The convergent assembly of peptide fragments by native chemical ligation has revolutionized the way ...
Peptide ligation chemistry has revolutionized protein science by facilitating access to synthetic pr...
Peptide ligation chemistry has revolutionized protein science by facilitating access to synthetic pr...
peer reviewedGiven the potential of peptide selenoesters for protein total synthesis and the paucity...
The use of native chemical ligation at selenocysteine (Sec) with peptide thioesters and additive-fre...
Proteins play a crucial role in living organisms and in almost all biological mechanisms. The total ...
The chemical synthesis of moderate-sized proteins has benefited enormously from the development of c...
Despite the unique chemical properties of selenocysteine (Sec), ligation at Sec is an under‐utilized...
Peptides and proteins are nature’s functional biomolecules which orchestrate virtually all the biolo...
The chemical synthesis of moderate-sized proteins has benefited enormously from the development of c...
The development of constrained peptides for inhibition of protein–protein interactions is an emergin...
Selenocysteine does the job: Lanthionine bridges are important structural elements in naturally occu...
Synthesis of selenoxo peptides by the treatment of N α- protected peptide esters with a combination...
The use of selenocysteines and various cross-linkers to induce helicity in a bioactive peptide is de...
Polyproline sequences are highly abundant in prokaryotic 10 and eukaryotic proteins, where they serv...
The convergent assembly of peptide fragments by native chemical ligation has revolutionized the way ...
Peptide ligation chemistry has revolutionized protein science by facilitating access to synthetic pr...
Peptide ligation chemistry has revolutionized protein science by facilitating access to synthetic pr...
peer reviewedGiven the potential of peptide selenoesters for protein total synthesis and the paucity...
The use of native chemical ligation at selenocysteine (Sec) with peptide thioesters and additive-fre...
Proteins play a crucial role in living organisms and in almost all biological mechanisms. The total ...
The chemical synthesis of moderate-sized proteins has benefited enormously from the development of c...
Despite the unique chemical properties of selenocysteine (Sec), ligation at Sec is an under‐utilized...
Peptides and proteins are nature’s functional biomolecules which orchestrate virtually all the biolo...
The chemical synthesis of moderate-sized proteins has benefited enormously from the development of c...
The development of constrained peptides for inhibition of protein–protein interactions is an emergin...
Selenocysteine does the job: Lanthionine bridges are important structural elements in naturally occu...
Synthesis of selenoxo peptides by the treatment of N α- protected peptide esters with a combination...