Small molecule FICD inhibitors suppress endogenous and pathologic FICD-mediated protein AMPylation

Author:

Chatterjee Bhaskar K.,Alam Maroof,Chakravorty Arghya,Lacy Shannon M.,Rech Jason,Brooks Charles L.ORCID,Arvan Peter D.,Truttmann Matthias C.

Abstract

SummaryThe AMP transferase, FICD, is an emerging drug target finetuning stress signaling in the endoplasmic reticulum (ER). FICD is a bi-functional enzyme, catalyzing both AMP addition (AMPylation) and removal (deAMPylation) from the ER resident chaperone BiP/GRP78. Despite increasing evidence linking excessive BiP/GRP78 AMPylation to human diseases, small molecules to inhibit pathogenic FICD variants are lacking. Using anin-vitrohigh-throughput screen, we identify two small-molecule FICD inhibitors, C22 and C73. Both molecules significantly inhibit FICD-mediated BiP/GRP78 AMPylation in intact cells while only weakly inhibiting BiP/GRP78 deAMPylation. C22 and C73 also efficiently inhibit pathogenic FICD variants and improve proinsulin processing in β cells. Our study identifies and validates FICD inhibitors, highlighting a novel therapeutic avenue against pathologic protein AMPylation.

Publisher

Cold Spring Harbor Laboratory

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