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Discovery of PF-06928215 as a high affinity inhibitor of cGAS enabled by a novel fluorescence polarization assay.


ABSTRACT: Cyclic GMP-AMP synthase (cGAS) initiates the innate immune system in response to cytosolic dsDNA. After binding and activation from dsDNA, cGAS uses ATP and GTP to synthesize 2', 3' -cGAMP (cGAMP), a cyclic dinucleotide second messenger with mixed 2'-5' and 3'-5' phosphodiester bonds. Inappropriate stimulation of cGAS has been implicated in autoimmune disease such as systemic lupus erythematosus, thus inhibition of cGAS may be of therapeutic benefit in some diseases; however, the size and polarity of the cGAS active site makes it a challenging target for the development of conventional substrate-competitive inhibitors. We report here the development of a high affinity (KD = 200 nM) inhibitor from a low affinity fragment hit with supporting biochemical and structural data showing these molecules bind to the cGAS active site. We also report a new high throughput cGAS fluorescence polarization (FP)-based assay to enable the rapid identification and optimization of cGAS inhibitors. This FP assay uses Cy5-labelled cGAMP in combination with a novel high affinity monoclonal antibody that specifically recognizes cGAMP with no cross reactivity to cAMP, cGMP, ATP, or GTP. Given its role in the innate immune response, cGAS is a promising therapeutic target for autoinflammatory disease. Our results demonstrate its druggability, provide a high affinity tool compound, and establish a high throughput assay for the identification of next generation cGAS inhibitors.

SUBMITTER: Hall J 

PROVIDER: S-EPMC5608272 | biostudies-literature | 2017

REPOSITORIES: biostudies-literature

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Discovery of PF-06928215 as a high affinity inhibitor of cGAS enabled by a novel fluorescence polarization assay.

Hall Justin J   Brault Amy A   Vincent Fabien F   Weng Shawn S   Wang Hong H   Dumlao Darren D   Aulabaugh Ann A   Aivazian Dikran D   Castro Dana D   Chen Ming M   Culp Jeffrey J   Dower Ken K   Gardner Joseph J   Hawrylik Steven S   Golenbock Douglas D   Hepworth David D   Horn Mark M   Jones Lyn L   Jones Peter P   Latz Eicke E   Li Jing J   Lin Lih-Ling LL   Lin Wen W   Lin David D   Lovering Frank F   Niljanskul Nootaree N   Nistler Ryan R   Pierce Betsy B   Plotnikova Olga O   Schmitt Daniel D   Shanker Suman S   Smith James J   Snyder William W   Subashi Timothy T   Trujillo John J   Tyminski Edyta E   Wang Guoxing G   Wong Jimson J   Lefker Bruce B   Dakin Leslie L   Leach Karen K  

PloS one 20170921 9


Cyclic GMP-AMP synthase (cGAS) initiates the innate immune system in response to cytosolic dsDNA. After binding and activation from dsDNA, cGAS uses ATP and GTP to synthesize 2', 3' -cGAMP (cGAMP), a cyclic dinucleotide second messenger with mixed 2'-5' and 3'-5' phosphodiester bonds. Inappropriate stimulation of cGAS has been implicated in autoimmune disease such as systemic lupus erythematosus, thus inhibition of cGAS may be of therapeutic benefit in some diseases; however, the size and polari  ...[more]

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