Site-selective chemical conjugation of synthetic molecules to proteins expands their functional and therapeutic capacity. Current protein modification methods, based on synthetic and biochemical technologies, can achieve site selectivity, but these techniques often require extensive sequence engineering or are restricted to the N- or C-terminus. Here we show the computer-assisted design of sulfonyl acrylate reagents for the modification of a single lysine residue on native protein sequences. This feature of the designed sulfonyl acrylates, together with the innate and subtle reactivity differences conferred by the unique local microenvironment surrounding each lysine, contribute to the observed regioselectivity of the reaction. Moreover, th...
Proteins and enzymes perform important functions of life. Further expanding and regulating their fun...
AbstractProtein modifications are often required to study structure and function relationships. Inst...
Nature has produced intricate machinery to covalently diversify the structure of proteins after thei...
Site-selective chemical conjugation of synthetic molecules to proteins expands their functional and ...
Site-selective chemical conjugation of synthetic molecules to proteins expands their functional and ...
Site-selective chemical conjugation of synthetic molecules to proteins expands their functional and ...
Site-selective chemical conjugation of synthetic molecules to proteins expands their functional and ...
Site-selective chemical conjugation of synthetic molecules to proteins expands their functional and ...
Site-selective chemical conjugation of synthetic molecules to proteins expands their functional and ...
Site-selective chemical conjugation of synthetic molecules to proteins expands their functional and ...
This protocol details a novel bioconjugation strategy that uses a methanesulfonyl acrylate reagent t...
This protocol details a novel bioconjugation strategy that uses a methanesulfonyl acrylate reagent t...
This protocol details a novel bioconjugation strategy that uses a methanesulfonyl acrylate reagent t...
The complex social ecosystem regulates the spectrum of human behavior. However, it becomes relativel...
Chemical modification of proteins is an important tool for probing natural systems, creating therape...
Proteins and enzymes perform important functions of life. Further expanding and regulating their fun...
AbstractProtein modifications are often required to study structure and function relationships. Inst...
Nature has produced intricate machinery to covalently diversify the structure of proteins after thei...
Site-selective chemical conjugation of synthetic molecules to proteins expands their functional and ...
Site-selective chemical conjugation of synthetic molecules to proteins expands their functional and ...
Site-selective chemical conjugation of synthetic molecules to proteins expands their functional and ...
Site-selective chemical conjugation of synthetic molecules to proteins expands their functional and ...
Site-selective chemical conjugation of synthetic molecules to proteins expands their functional and ...
Site-selective chemical conjugation of synthetic molecules to proteins expands their functional and ...
Site-selective chemical conjugation of synthetic molecules to proteins expands their functional and ...
This protocol details a novel bioconjugation strategy that uses a methanesulfonyl acrylate reagent t...
This protocol details a novel bioconjugation strategy that uses a methanesulfonyl acrylate reagent t...
This protocol details a novel bioconjugation strategy that uses a methanesulfonyl acrylate reagent t...
The complex social ecosystem regulates the spectrum of human behavior. However, it becomes relativel...
Chemical modification of proteins is an important tool for probing natural systems, creating therape...
Proteins and enzymes perform important functions of life. Further expanding and regulating their fun...
AbstractProtein modifications are often required to study structure and function relationships. Inst...
Nature has produced intricate machinery to covalently diversify the structure of proteins after thei...