Cysteine is the most intrinsically nucleophilic amino acid in proteins, where its reactivity is tuned to perform diverse biochemical functions. The absence of a consensus sequence that defines functional cysteines in proteins has hindered their discovery and characterization. Here, we describe a proteomics method to quantitatively profile the intrinsic reactivity of cysteine residues en masse directly in native biological systems. Hyperreactivity was a rare feature among cysteines and found to specify a wide range of activities, including nucleophilic and reductive catalysis and sites of oxidative modification. Hyperreactive cysteines were identified in several proteins of uncharacterized function, including a residue conserved across eukar...
Cysteines are among the rarest amino acids in nature, and are both functionally and structurally ver...
Cysteine (Cys) residues often play critical roles in proteins; however, identification of their spec...
Proteomic profiling using bioorthogonal chemical probes that selectively react with certain amino ac...
Cysteine is the most intrinsically nucleophilic amino acid in proteins, where its reactivity is tune...
As one of the most intrinsically reactive amino acids, cysteine carries a variety of important bioch...
As one of the most intrinsically reactive amino acids, cysteine carries a variety of important bioch...
As one of the most intrinsically reactive amino acids, cysteine carries a variety of important bioch...
Covalent drug discovery, in particular targeting reactive cysteines, has undergone a resurgence over...
Covalent drug discovery, in particular targeting reactive cysteines, has undergone a resurgence over...
Covalent drug discovery, in particular targeting reactive cysteines, has undergone a resurgence over...
Covalent drug discovery, in particular targeting reactive cysteines, has undergone a resurgence over...
Cysteines, as one of the most intrinsically nucleophilic amino acids, play important roles in protei...
Summary: Differential amino acid reactivity with chemical probes can provide valuable information on...
Cysteine-directed chemoproteomic profiling methods yield high-throughput inventories of redox-sensit...
Post-translational modifications (PTMs) occurring in proteins determine their functions and regulati...
Cysteines are among the rarest amino acids in nature, and are both functionally and structurally ver...
Cysteine (Cys) residues often play critical roles in proteins; however, identification of their spec...
Proteomic profiling using bioorthogonal chemical probes that selectively react with certain amino ac...
Cysteine is the most intrinsically nucleophilic amino acid in proteins, where its reactivity is tune...
As one of the most intrinsically reactive amino acids, cysteine carries a variety of important bioch...
As one of the most intrinsically reactive amino acids, cysteine carries a variety of important bioch...
As one of the most intrinsically reactive amino acids, cysteine carries a variety of important bioch...
Covalent drug discovery, in particular targeting reactive cysteines, has undergone a resurgence over...
Covalent drug discovery, in particular targeting reactive cysteines, has undergone a resurgence over...
Covalent drug discovery, in particular targeting reactive cysteines, has undergone a resurgence over...
Covalent drug discovery, in particular targeting reactive cysteines, has undergone a resurgence over...
Cysteines, as one of the most intrinsically nucleophilic amino acids, play important roles in protei...
Summary: Differential amino acid reactivity with chemical probes can provide valuable information on...
Cysteine-directed chemoproteomic profiling methods yield high-throughput inventories of redox-sensit...
Post-translational modifications (PTMs) occurring in proteins determine their functions and regulati...
Cysteines are among the rarest amino acids in nature, and are both functionally and structurally ver...
Cysteine (Cys) residues often play critical roles in proteins; however, identification of their spec...
Proteomic profiling using bioorthogonal chemical probes that selectively react with certain amino ac...