Protein bioconjugation frequently makes use of aldehydes as reactive handles, with methods for their installation being highly valued. Here a new, powerful strategy to unmask a reactive protein aldehyde is presented. A genetically encoded caged glyoxyl aldehyde, situated in solvent-accessible locations, can be rapidly decade through treatment with just one equivalent of allylpalladium(II) chloride dimer at physiological pH. The protein aldehyde can undergo subsequent oxime ligation for site-selective protein modification. Quick yet mild conditions, orthogonality and powerful exposed reactivity make this strategy of great potential in protein modification
The chemical modification of proteins has been a longstanding interest in the scientific community. ...
The site-selective modification of peptides and proteins facilitates the preparation of targeted the...
Chemical modification of proteins has proved to be an essential tool in engineering proteins for bas...
Protein bioconjugation frequently makes use of aldehydes as reactive handles, with methods for their...
The incorporation of aldehyde handles into proteins, and subsequent chemical reactions thereof, is r...
The α-oxo aldehyde is a highly reactive aldehyde for which many protein bioconjugation strategies ex...
The bioconjugation of proteins with small molecules has proved an invaluable strategy for probing an...
Site-selective chemical methods for protein bioconjugation have revolutionised the fields of cell 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 ...
The bioconjugation of proteins with small molecules has proved an invaluable strategy for probing an...
C–C side chain alteration within intact proteins has the potential to allow native, chemical, post-t...
Chemical protein modification has emerged as an invaluable tool for the development of modified prot...
The ability to chemically modify biomolecules has facilitated our ability to detect, manipulate, and...
A laboratory experiment introducing the concept of chemical bioconjugation of proteins to undergradu...
The chemical modification of proteins has been a longstanding interest in the scientific community. ...
The site-selective modification of peptides and proteins facilitates the preparation of targeted the...
Chemical modification of proteins has proved to be an essential tool in engineering proteins for bas...
Protein bioconjugation frequently makes use of aldehydes as reactive handles, with methods for their...
The incorporation of aldehyde handles into proteins, and subsequent chemical reactions thereof, is r...
The α-oxo aldehyde is a highly reactive aldehyde for which many protein bioconjugation strategies ex...
The bioconjugation of proteins with small molecules has proved an invaluable strategy for probing an...
Site-selective chemical methods for protein bioconjugation have revolutionised the fields of cell 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 ...
The bioconjugation of proteins with small molecules has proved an invaluable strategy for probing an...
C–C side chain alteration within intact proteins has the potential to allow native, chemical, post-t...
Chemical protein modification has emerged as an invaluable tool for the development of modified prot...
The ability to chemically modify biomolecules has facilitated our ability to detect, manipulate, and...
A laboratory experiment introducing the concept of chemical bioconjugation of proteins to undergradu...
The chemical modification of proteins has been a longstanding interest in the scientific community. ...
The site-selective modification of peptides and proteins facilitates the preparation of targeted the...
Chemical modification of proteins has proved to be an essential tool in engineering proteins for bas...