Methods for installing natural and unnatural amino acids and their modifications into proteins in a benign and precise manner are highly sought-after in protein science. Here we describe a protocol for 'post-translational mutagenesis' that enables the programmed installation of protein side chains through the use of rapid, mild and operationally simple free-radical chemistry performed on recombinantly expressed and purified proteins. By introduction of protein dehydroalanine (Dha) residues (in this instance, from a unique cysteine residue introduced by site-directed mutagenesis) as free-radical trapping 'tags' for downstream modification, exquisite control over the site of subsequent modification is achieved. Using readily available alkyl h...
Expansion of the genetic code with unnatural amino acids (Uaas) has significantly increased the chem...
Site-directed (gene) mutagenesis has been the most useful method available for the conversion of one...
Site-directed (gene) mutagenesis has been the most useful method available for the conversion of one...
Methods for installing natural and unnatural amino acids and their modifications into proteins in a ...
The ability to alter protein structure by site-directed mutagenesis has revolutionized biochemical r...
Post-translational modification of proteins expands their structural and functional capabilities bey...
Posttranslational modification of proteins expands their structural and functional capabilities beyo...
Posttranslational modification of proteins expands their structural and functional capabilities beyo...
Posttranslational modification of proteins expands their structural and functional capabilities beyo...
Copyright © 2016, American Association for the Advancement of Science. Posttranslational modificatio...
The naturally occurring post-translational modification of proteins expands the chemical and structu...
Site-directed mutagenesis allows the ready variation of proteinogenic amino acids; genetic code expa...
Chemical modification of proteins is critical for many areas of biochemistry and medicine. Several m...
Site-directed mutagenesis allows the ready variation of proteinogenic amino acids; genetic code expa...
Post-translational modifications (PTMs) greatly expand the structures and functions of proteins in n...
Expansion of the genetic code with unnatural amino acids (Uaas) has significantly increased the chem...
Site-directed (gene) mutagenesis has been the most useful method available for the conversion of one...
Site-directed (gene) mutagenesis has been the most useful method available for the conversion of one...
Methods for installing natural and unnatural amino acids and their modifications into proteins in a ...
The ability to alter protein structure by site-directed mutagenesis has revolutionized biochemical r...
Post-translational modification of proteins expands their structural and functional capabilities bey...
Posttranslational modification of proteins expands their structural and functional capabilities beyo...
Posttranslational modification of proteins expands their structural and functional capabilities beyo...
Posttranslational modification of proteins expands their structural and functional capabilities beyo...
Copyright © 2016, American Association for the Advancement of Science. Posttranslational modificatio...
The naturally occurring post-translational modification of proteins expands the chemical and structu...
Site-directed mutagenesis allows the ready variation of proteinogenic amino acids; genetic code expa...
Chemical modification of proteins is critical for many areas of biochemistry and medicine. Several m...
Site-directed mutagenesis allows the ready variation of proteinogenic amino acids; genetic code expa...
Post-translational modifications (PTMs) greatly expand the structures and functions of proteins in n...
Expansion of the genetic code with unnatural amino acids (Uaas) has significantly increased the chem...
Site-directed (gene) mutagenesis has been the most useful method available for the conversion of one...
Site-directed (gene) mutagenesis has been the most useful method available for the conversion of one...