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Amyloid β chaperone — lipocalin-type prostaglandin D synthase acts as a peroxidase in the presence of heme

Authors :
Justin Ng Tze Yang
Jeffrey Harmer
Ralf Kather
Konstantin Pervushin
Bhuvaneswari Kannaian
Mu Yuguang
Margaret Phillips
School of Biological Sciences
Source :
Biochemical Journal
Publication Year :
2020
Publisher :
Portland Press Ltd., 2020.

Abstract

The extracellular transporter, lipocalin-type prostaglandin D synthase (L-PGDS) binds to heme and heme metabolites with high affinity. It has been reported that L-PGDS protects neuronal cells against apoptosis induced by exposure to hydrogen peroxide. Our study demonstrates that when human WT L-PGDS is in complex with heme, it exhibits a strong peroxidase activity thus behaving as a pseudo-peroxidase. Electron paramagnetic resonance studies confirm that heme in the L-PGDS-heme complex is hexacoordinated with high-spin Fe(III). NMR titration of heme in L-PGDS points to hydrophobic interaction between heme and several residues within the β-barrel cavity of L-PGDS. In addition to the transporter function, L-PGDS is a key amyloid β chaperone in human cerebrospinal fluid. The presence of high levels of bilirubin and its derivatives, implicated in Alzheimer's disease, by binding to L-PGDS may reduce its chaperone activity. Nevertheless, our ThT binding assay establishes that heme and heme metabolites do not significantly alter the neuroprotective chaperone function of L-PGDS. Guided by NMR data we reconstructed the heme L-PGDS complex using extensive molecular dynamics simulations providing a platform for mechanistic interpretation of the catalytic and transporting functions and their modulation by secondary ligands like Aβ peptides and heme metabolites. Ministry of Education (MOE) Published version The research for this paper was supported by the MOE-Tier 2 grant M4020231. J.R.H. acknowledges support from the ARC (FT120100421).

Details

ISSN :
14708728 and 02646021
Volume :
477
Database :
OpenAIRE
Journal :
Biochemical Journal
Accession number :
edsair.doi.dedup.....3eeca753ca95ab7344dca1af9a4f0620
Full Text :
https://doi.org/10.1042/bcj20190536