Discovering novel chemical reactions is important for bioanalysis. Herein, we report a tactic for bio-thiol sensing and protein labeling agent design by the installation of a sulfoxide group onto the skeleton of various fluorophores, and powerfully validate its abilities, which may shed light on the development of specific protein tags to give insight into their biological functions
We present a feasible paradigm of developing original fluorescent probes for target biomolecules via...
(Chemical Presented) Strengthening the bond: The introduction of a thiol tag in combination with che...
Protein sulfenylation (RSOH), the redox‐based modification of cysteine thiol side chains by hydrogen...
Discovering novel chemical reactions is important for bioanalysis. Herein, we report a tactic for bi...
We report the fabrication of a patterned protein array using three orthogonal methods of immobilizat...
We report the fabrication of a patterned protein array using three orthogonal methods of immobilizat...
We present a generic method for the site-specific and differential labeling of multiple cysteine res...
The ability to study biomolecules within their naturally occurring context is often complicated by t...
Thiols are important molecules in the environment and in biological processes. Cysteine (Cys), homoc...
The discovery of a method by which proteins of interest can selectively be labeled with a probe of c...
Chemical and biological labeling is essential for the explora-tion of protein function, as fluoresce...
Chemical reactivity is essential for functional modification of biomolecules with small molecules an...
Selective labeling of biological matter enables not only basic research but also improved diagnostic...
We report a novel prosthetic group based on a heterocyclic methylsulfone derivative for the rapid, s...
A novel protein labelling strategy has been developed based on a chemical reaction known as Native C...
We present a feasible paradigm of developing original fluorescent probes for target biomolecules via...
(Chemical Presented) Strengthening the bond: The introduction of a thiol tag in combination with che...
Protein sulfenylation (RSOH), the redox‐based modification of cysteine thiol side chains by hydrogen...
Discovering novel chemical reactions is important for bioanalysis. Herein, we report a tactic for bi...
We report the fabrication of a patterned protein array using three orthogonal methods of immobilizat...
We report the fabrication of a patterned protein array using three orthogonal methods of immobilizat...
We present a generic method for the site-specific and differential labeling of multiple cysteine res...
The ability to study biomolecules within their naturally occurring context is often complicated by t...
Thiols are important molecules in the environment and in biological processes. Cysteine (Cys), homoc...
The discovery of a method by which proteins of interest can selectively be labeled with a probe of c...
Chemical and biological labeling is essential for the explora-tion of protein function, as fluoresce...
Chemical reactivity is essential for functional modification of biomolecules with small molecules an...
Selective labeling of biological matter enables not only basic research but also improved diagnostic...
We report a novel prosthetic group based on a heterocyclic methylsulfone derivative for the rapid, s...
A novel protein labelling strategy has been developed based on a chemical reaction known as Native C...
We present a feasible paradigm of developing original fluorescent probes for target biomolecules via...
(Chemical Presented) Strengthening the bond: The introduction of a thiol tag in combination with che...
Protein sulfenylation (RSOH), the redox‐based modification of cysteine thiol side chains by hydrogen...