scholarly journals Structures of a deAMPylation complex rationalise the switch between antagonistic catalytic activities of FICD

2021 ◽  
Vol 12 (1) ◽  
Author(s):  
Luke A. Perera ◽  
Steffen Preissler ◽  
Nathan R. Zaccai ◽  
Sylvain Prévost ◽  
Juliette M. Devos ◽  
...  

AbstractThe 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 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.

2021 ◽  
Author(s):  
Luke A Perera ◽  
Steffen Preissler ◽  
Nathan R Zaccai ◽  
Sylvain Prevost ◽  
Juliette M Devos ◽  
...  

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.


2020 ◽  
Author(s):  
Cassandra M. Joiner ◽  
Forrest A. Hammel ◽  
John Janetzko ◽  
Suzanne Walker

ABSTRACTGlycosylation of nuclear and cytoplasmic proteins is an essential post-translational modification in mammals. O-GlcNAc transferase (OGT), the sole enzyme responsible for this modification, glycosylates over a thousand unique nuclear and cytoplasmic substrates. How OGT selects its substrates is a fundamental question that must be answered to understand OGT’s unusual biology. OGT contains a long tetratricopeptide repeat (TPR) domain that has been implicated in substrate selection, but there is almost no information about how changes to this domain affect glycosylation of individual substrates. Here, we used proteome-wide glycosylation profiling and probed glycosylation of selected purified substrates to show that asparagine and aspartate ladders that extend the full length of OGT’s TPR lumen control substrate glycosylation. We also found that substrates with glycosylation sites close to the C-terminus bypass lumenal binding. Our findings demonstrate that substrates can engage OGT in a variety of different ways for glycosylation.


2003 ◽  
Vol 278 (19) ◽  
pp. 17388-17394 ◽  
Author(s):  
Joyce Cheung-Flynn ◽  
Patricia J. Roberts ◽  
Daniel L. Riggs ◽  
David F. Smith

Genetics ◽  
2016 ◽  
Vol 203 (3) ◽  
pp. 1439-1451 ◽  
Author(s):  
Yang Yu ◽  
Zhigang Zhao ◽  
Yanrong Shi ◽  
Hua Tian ◽  
Linglong Liu ◽  
...  

Hepatology ◽  
2020 ◽  
Vol 71 (6) ◽  
pp. 2067-2079 ◽  
Author(s):  
Ranad Shaheen ◽  
Saud Alsahli ◽  
Nour Ewida ◽  
Fatema Alzahrani ◽  
Hanan E. Shamseldin ◽  
...  

2016 ◽  
Vol 6 (1) ◽  
Author(s):  
Lee Wei Lim ◽  
Smeeta Shrestha ◽  
Yu Zuan Or ◽  
Shawn Zheng Kai Tan ◽  
Hwa Hwa Chung ◽  
...  

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