Expanding the genetic code of organisms by incorporating non‐canonical amino acids (ncAAs) into target proteins through the suppression of stop codons in vivo has profoundly impacted how we perform protein modification or detect proteins and their interaction partners in their native environment. Yet, with genetic code expansion strategies maturing over the past 15 years, new applications that make use – or indeed repurpose – these techniques are beginning to emerge. This concept article highlights three of these developments: (1) the incorporation of ncAAs for the biosynthesis and selection of bioactive macrocyclic peptides with novel ring architectures, (2) synthetic biocontainment strategies based on the addiction of microorganisms to nc...
Directly incorporating noncanonical amino acids (NCAAs) into proteins in living cells is an indispen...
Thesis advisor: Abhishek ChatterjeeAbstract Unnatural amino acid (UAA) incorporation is a powerful ...
Peptide therapeutics have shown unique abilities in targeting protein-protein interactions involved ...
Expanding the genetic code of organisms by incorporating non‐canonical amino acids (ncAAs) into targ...
Expanding the genetic code of organisms by incorporating non‐canonical amino acids (ncAAs) into targ...
Incorporation of noncanonical amino acids (ncAAs) via genetic code expansion (GCE) opens up new poss...
Since the establishment of site-specific mutagenesis of single amino acids to interrogate protein fu...
The emergence of robust methods to expand the genetic code allows incorporation of non-canonical ami...
In vivo selections are powerful tools for the directed evolution of enzymes. However, the need to li...
The standard proteinogenic amino acids grant access to a myriad of chemistries that harmonize to cre...
The incorporation of non-canonical amino acids (ncAA) is an elegant way for the chemical diversifica...
AbstractThe addition of new and versatile chemical and biological properties to proteins pursued thr...
Genetic code expansion allows unnatural (non-canonical) amino acid incorporation into proteins of in...
The natural genetic code is largely shared amongst all terrestrial life, though variations do exist ...
AbstractCodon-specific incorporation of noncoded amino acids into proteins can diversify the genetic...
Directly incorporating noncanonical amino acids (NCAAs) into proteins in living cells is an indispen...
Thesis advisor: Abhishek ChatterjeeAbstract Unnatural amino acid (UAA) incorporation is a powerful ...
Peptide therapeutics have shown unique abilities in targeting protein-protein interactions involved ...
Expanding the genetic code of organisms by incorporating non‐canonical amino acids (ncAAs) into targ...
Expanding the genetic code of organisms by incorporating non‐canonical amino acids (ncAAs) into targ...
Incorporation of noncanonical amino acids (ncAAs) via genetic code expansion (GCE) opens up new poss...
Since the establishment of site-specific mutagenesis of single amino acids to interrogate protein fu...
The emergence of robust methods to expand the genetic code allows incorporation of non-canonical ami...
In vivo selections are powerful tools for the directed evolution of enzymes. However, the need to li...
The standard proteinogenic amino acids grant access to a myriad of chemistries that harmonize to cre...
The incorporation of non-canonical amino acids (ncAA) is an elegant way for the chemical diversifica...
AbstractThe addition of new and versatile chemical and biological properties to proteins pursued thr...
Genetic code expansion allows unnatural (non-canonical) amino acid incorporation into proteins of in...
The natural genetic code is largely shared amongst all terrestrial life, though variations do exist ...
AbstractCodon-specific incorporation of noncoded amino acids into proteins can diversify the genetic...
Directly incorporating noncanonical amino acids (NCAAs) into proteins in living cells is an indispen...
Thesis advisor: Abhishek ChatterjeeAbstract Unnatural amino acid (UAA) incorporation is a powerful ...
Peptide therapeutics have shown unique abilities in targeting protein-protein interactions involved ...