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Structures of a deAMPylation complex rationalise the switch between antagonistic catalytic activities of FICD (14/96/109)

Authors :
David Ron
Juliette M. Devos
Nathan R. Zaccai
Luke A. Perera
Sylvain Prévost
Michael Haertlein
Steffen Preissler
Publication Year :
2021
Publisher :
Cold Spring Harbor Laboratory, 2021.

Abstract

The endoplasmic reticulum (ER) Hsp70 chaperone BiP is regulated by AMPylation, a reversible inactivating post-translational modification. Both BiP AMPylation and deAMPylation are catalysed by a single ER-localised enzyme, FICD. Here we present long-sought crystallographic and solution structures of a deAMPylation Michaelis complex formed between mammalian AMPylated BiP and FICD. The latter, via its tetratricopeptide repeat domain, binds a surface that is specific to ATP-state Hsp70 chaperones, explaining the exquisite selectivity of FICD for BiP’s ATP-bound conformation both when AMPylating and deAMPylating Thr518. The eukaryotic deAMPylation mechanism thus revealed, rationalises the role of the conserved Fic domain Glu234 as a gatekeeper residue that both inhibits AMPylation and facilitates hydrolytic deAMPylation catalysed by dimeric FICD. These findings point to a monomerisation-induced increase in Glu234 flexibility as the basis of an oligomeric state-dependent switch between FICD’s antagonistic activities, despite a similar mode of engagement of its two substrates — unmodified and AMPylated BiP.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........4624a5c0dc58ea269d02d5d827050afa
Full Text :
https://doi.org/10.1101/2021.04.20.440599