AbstractClassifying proteins into functionally distinct families based only on primary sequence information remains a difficult task. We describe here a method to generate a large data set of small molecule affinity fingerprints for a group of closely related enzymes, the papain family of cysteine proteases. Binding data was generated for a library of inhibitors based on the ability of each compound to block active-site labeling of the target proteases by a covalent activity based probe (ABP). Clustering algorithms were used to automatically classify a reference group of proteases into subfamilies based on their small molecule affinity fingerprints. This approach was also used to identify cysteine protease targets modified by the ABP in com...
The unveiling of rules that govern drug-protein interactions is of paramount importance in drug disc...
Protein kinases have emerged as one of the major drug target classes that are amenable to the develo...
Compounds known to be potent against a specific protein target may potentially contain a signature p...
AbstractClassifying proteins into functionally distinct families based only on primary sequence info...
The function-based protein classification holds tremendous promise for molecular recognition and the...
Support vector machine (SVM) database search strategies are presented that aim at the identification...
AbstractBackground: There are many ways to represent a molecule's properties, including atomic-conne...
Most small-molecule probes and drugs alter cell circuitry by interacting with 1 or more proteins. A ...
The objective of this work is to analyze the structural interaction between serine proteases and the...
Motivation Protein cleavage is an important cellular event, involved in a myriad of processes, from ...
Discovery and optimization of small molecule inhibitors as therapeutic drugs have immensely benefite...
Abstract Although protein–protein interactions (PPIs) have emerged as the basis of potential new the...
International audienceSerine proteases, implicated in important physiological functions, have a high...
International audienceProtein-protein interactions (PPIs) may represent one of the next major classe...
Serine proteases, implicated in important physiological functions, have a high intra-family similari...
The unveiling of rules that govern drug-protein interactions is of paramount importance in drug disc...
Protein kinases have emerged as one of the major drug target classes that are amenable to the develo...
Compounds known to be potent against a specific protein target may potentially contain a signature p...
AbstractClassifying proteins into functionally distinct families based only on primary sequence info...
The function-based protein classification holds tremendous promise for molecular recognition and the...
Support vector machine (SVM) database search strategies are presented that aim at the identification...
AbstractBackground: There are many ways to represent a molecule's properties, including atomic-conne...
Most small-molecule probes and drugs alter cell circuitry by interacting with 1 or more proteins. A ...
The objective of this work is to analyze the structural interaction between serine proteases and the...
Motivation Protein cleavage is an important cellular event, involved in a myriad of processes, from ...
Discovery and optimization of small molecule inhibitors as therapeutic drugs have immensely benefite...
Abstract Although protein–protein interactions (PPIs) have emerged as the basis of potential new the...
International audienceSerine proteases, implicated in important physiological functions, have a high...
International audienceProtein-protein interactions (PPIs) may represent one of the next major classe...
Serine proteases, implicated in important physiological functions, have a high intra-family similari...
The unveiling of rules that govern drug-protein interactions is of paramount importance in drug disc...
Protein kinases have emerged as one of the major drug target classes that are amenable to the develo...
Compounds known to be potent against a specific protein target may potentially contain a signature p...