A substrate-driven allosteric switch that enhances PDI catalytic activity.

Nat Commun
Authors
Abstract

Protein disulfide isomerase (PDI) is an oxidoreductase essential for folding proteins in the endoplasmic reticulum. The domain structure of PDI is a-b-b'-x-a', wherein the thioredoxin-like a and a' domains mediate disulfide bond shuffling and b and b' domains are substrate binding. The b' and a' domains are connected via the x-linker, a 19-amino-acid flexible peptide. Here we identify a class of compounds, termed bepristats, that target the substrate-binding pocket of b'. Bepristats reversibly block substrate binding and inhibit platelet aggregation and thrombus formation in vivo. Ligation of the substrate-binding pocket by bepristats paradoxically enhances catalytic activity of a and a' by displacing the x-linker, which acts as an allosteric switch to augment reductase activity in the catalytic domains. This substrate-driven allosteric switch is also activated by peptides and proteins and is present in other thiol isomerases. Our results demonstrate a mechanism whereby binding of a substrate to thiol isomerases enhances catalytic activity of remote domains.

Year of Publication
2016
Journal
Nat Commun
Volume
7
Pages
12579
Date Published
2016 Aug 30
ISSN
2041-1723
DOI
10.1038/ncomms12579
PubMed ID
27573496
PubMed Central ID
PMC5013553
Links
Grant list
U54 HG005032 / HG / NHGRI NIH HHS / United States
R01 HL112809 / HL / NHLBI NIH HHS / United States
T32 HL116324 / HL / NHLBI NIH HHS / United States
R03 DA032476 / DA / NIDA NIH HHS / United States
R01 HL125275 / HL / NHLBI NIH HHS / United States
R01 GM105404 / GM / NIGMS NIH HHS / United States
U54 HL112302 / HL / NHLBI NIH HHS / United States
T32 HL007917 / HL / NHLBI NIH HHS / United States