The "tag & modify" strategy for protein modification relies upon the genetic incorporation of an uncommon or unnatural amino acid into a protein backbone, followed by a chemo-selective modification to yield differentially modified proteins. This thesis describes the creation of a protein-based glycoconjugate tool for interrogating biological function. In Chapter 2, the unnatural amino acid, azidohomoalanine was genetically incorporated into a library of distance defined Np276 proteins via a selective pressure incorporation. Methods to prevent the common post translational modification N-terminal gluconylation were identified, including preliminary work on a small molecule intervention. The proteins were subsequently characterised with r...
ABSTRACT: We recently developed a method for genetically incorporating unnatural amino acids site-sp...
In higher organisms, the functions of many proteins are modulated by post-translational modification...
An investigator interested in modifying a protein’s characteristics or in designing a protein de nov...
The "tag & modify" strategy for protein modification relies upon the genetic incorporation of an...
The ability to chemically modify biomolecules has facilitated our ability to detect, manipulate, and...
The ability to chemically modify biomolecules has facilitated our ability to detect, manipulate, and...
Covalent modification can expand a protein's functional capacity. Fluorescent or radioactive labelin...
Chemical modification of proteins has proved to be an essential tool in engineering proteins for bas...
Chemical modification of proteins has proved to be an essential tool in engineering proteins for bas...
Site-directed mutagenesis allows the ready variation of proteinogenic amino acids; genetic code expa...
Post-translational modifications (PTMs) of proteins play key roles in functional pro- teomic by regu...
Post-translational modifications (PTMs) of proteins play key roles in functional pro- teomic by regu...
Chemical protein modification has emerged as an invaluable tool for the development of modified prot...
Post-translational modifications (PTMs) of proteins play key roles in functional pro- teomic by regu...
Nature has evolved 20 amino acids that comprise all the proteins that compose living things. The lim...
ABSTRACT: We recently developed a method for genetically incorporating unnatural amino acids site-sp...
In higher organisms, the functions of many proteins are modulated by post-translational modification...
An investigator interested in modifying a protein’s characteristics or in designing a protein de nov...
The "tag & modify" strategy for protein modification relies upon the genetic incorporation of an...
The ability to chemically modify biomolecules has facilitated our ability to detect, manipulate, and...
The ability to chemically modify biomolecules has facilitated our ability to detect, manipulate, and...
Covalent modification can expand a protein's functional capacity. Fluorescent or radioactive labelin...
Chemical modification of proteins has proved to be an essential tool in engineering proteins for bas...
Chemical modification of proteins has proved to be an essential tool in engineering proteins for bas...
Site-directed mutagenesis allows the ready variation of proteinogenic amino acids; genetic code expa...
Post-translational modifications (PTMs) of proteins play key roles in functional pro- teomic by regu...
Post-translational modifications (PTMs) of proteins play key roles in functional pro- teomic by regu...
Chemical protein modification has emerged as an invaluable tool for the development of modified prot...
Post-translational modifications (PTMs) of proteins play key roles in functional pro- teomic by regu...
Nature has evolved 20 amino acids that comprise all the proteins that compose living things. The lim...
ABSTRACT: We recently developed a method for genetically incorporating unnatural amino acids site-sp...
In higher organisms, the functions of many proteins are modulated by post-translational modification...
An investigator interested in modifying a protein’s characteristics or in designing a protein de nov...