The bioconjugation of proteins with small molecules has proved an invaluable strategy for probing and perturbing biological mechanisms. The general use of chemical methods for protein functionalisation can be limited however by the requirement for complicated reaction partners to be present in large excess, and harsh conditions which are incompatible with many protein scaffolds. Herein we describe a site-selective organocatalyst-mediated protein aldol ligation (OPAL) that affords stable carbon–carbon linked bioconjugates at neutral pH. OPAL enables rapid modification of proteins using simple aldehyde probes in minimal excess, and is utilised here in the affinity tagging of proteins in cell lysate. Furthermore we demonstrate that the β-hydro...
The ability to chemically modify biomolecules has facilitated our ability to detect, manipulate, and...
Site-selective chemical conjugation of synthetic molecules to proteins expands their functional and ...
Nature has produced intricate machinery to covalently diversify the structure of proteins after thei...
The bioconjugation of proteins with small molecules has proved an invaluable strategy for probing an...
The bioconjugation of proteins with small molecules has proved an invaluable strategy for probing an...
The bioconjugation of proteins with small molecules has proved an invaluable strategy for probing an...
The chemical modification of proteins to produce protein bioconjugates has revolutionised the field ...
Protein bioconjugation frequently makes use of aldehydes as reactive handles, with methods for their...
Site-selective chemical methods for protein bioconjugation have revolutionised the fields of cell an...
Bioconjugation is an important tool for studying complex biological systems, with site-specificity b...
Use of oxime forming reactions has become a widely applied strategy for peptide and protein bioconju...
The α-oxo aldehyde is a highly reactive aldehyde for which many protein bioconjugation strategies ex...
Chemical protein modification has been used to monitor cellular events and to modify proteins. These...
A large variety of biomolecules such as lipids, DNA, carbohydrates and proteins exist inside cells. ...
As one of the core building blocks of life, proteins play a central role in our efforts to understan...
The ability to chemically modify biomolecules has facilitated our ability to detect, manipulate, and...
Site-selective chemical conjugation of synthetic molecules to proteins expands their functional and ...
Nature has produced intricate machinery to covalently diversify the structure of proteins after thei...
The bioconjugation of proteins with small molecules has proved an invaluable strategy for probing an...
The bioconjugation of proteins with small molecules has proved an invaluable strategy for probing an...
The bioconjugation of proteins with small molecules has proved an invaluable strategy for probing an...
The chemical modification of proteins to produce protein bioconjugates has revolutionised the field ...
Protein bioconjugation frequently makes use of aldehydes as reactive handles, with methods for their...
Site-selective chemical methods for protein bioconjugation have revolutionised the fields of cell an...
Bioconjugation is an important tool for studying complex biological systems, with site-specificity b...
Use of oxime forming reactions has become a widely applied strategy for peptide and protein bioconju...
The α-oxo aldehyde is a highly reactive aldehyde for which many protein bioconjugation strategies ex...
Chemical protein modification has been used to monitor cellular events and to modify proteins. These...
A large variety of biomolecules such as lipids, DNA, carbohydrates and proteins exist inside cells. ...
As one of the core building blocks of life, proteins play a central role in our efforts to understan...
The ability to chemically modify biomolecules has facilitated our ability to detect, manipulate, and...
Site-selective chemical conjugation of synthetic molecules to proteins expands their functional and ...
Nature has produced intricate machinery to covalently diversify the structure of proteins after thei...