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A widely-applicable high-throughput cellular thermal shift assay (CETSA) using split Nano Luciferase.

Sci Rep. 2018; 
Martinez Natalia J,Asawa Rosita R,Cyr Matthew G,Zakharov Alexey,Urban Daniel J,Roth Jacob S,Wallgren Eric,Klumpp-Thomas Carleen,Coussens Nathan P,Rai Ganesha,Yang Shyh-Ming,Hall Matthew D,Marugan Juan J,Simeonov Anton,Henderson Ma
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Catalog Antibody 11S and 86b proteins were pro- duced by GenScript.... Proteins were analyzed by SDS-PAGE and Western blot using standard protocols and a mouse-anti-His mAb (GenScript, Cat. Get A Quote

摘要

Assessment of the interactions between a drug and its protein target in a physiologically relevant cellular environment constitutes a major challenge in the pre-clinical drug discovery space. The Cellular Thermal Shift Assay (CETSA) enables such an assessment by quantifying the changes in the thermal stability of proteins upon ligand binding in intact cells. Here, we present the development and validation of a homogeneous, standardized, target-independent, and high-throughput (384- and 1536-well formats) CETSA platform that uses a split Nano Luciferase approach (SplitLuc CETSA). The broad applicability of the assay was demonstrated for diverse targets, and its performance was compared with independe... More

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