Potential Binding Sites of Pharmacological Chaperone NCGC00241607 on Mutant β-Glucocerebrosidase and Its Efficacy on Patient-Derived Cell Cultures in Gaucher and Parkinson’s Disease

Author:

Kopytova Alena E.12ORCID,Rychkov George N.13ORCID,Cheblokov Alexander A.1,Grigor’eva Elena V.45,Nikolaev Mikhail A.12ORCID,Yarkova Elena S.4,Sorogina Diana A.4,Ibatullin Farid M.1,Baydakova Galina V.6,Izyumchenko Artem D.12ORCID,Bogdanova Daria A.1,Boitsov Vitali M.7ORCID,Rybakov Akim V.8,Miliukhina Irina V.18,Bezrukikh Vadim A.9,Salogub Galina N.9,Zakharova Ekaterina Y.6,Pchelina Sofya N.12,Emelyanov Anton K.12

Affiliation:

1. Petersburg Nuclear Physics Institute Named by B.P. Konstantinov of National Research Center «Kurchatov Institute», Gatchina 188300, Russia

2. Department of Molecular Genetic and Nanobiological Technologies, Pavlov First Saint-Petersburg State Medical University, Saint-Petersburg 197022, Russia

3. Institute of Biomedical Systems and Biotechnology, Peter the Great St.Petersburg Polytechnic University, Saint-Petersburg 195251, Russia

4. Institute of Cytology and Genetics Siberian Branch of Russian Academy of Sciences, Novosibirsk 630090, Russia

5. Meshalkin National Medical Research Center, Ministry of Health of the Russian Federation, Novosibirsk 630055, Russia

6. Research Centre for Medical Genetics, Moscow 115522, Russia

7. Laboratory of Nanobiotechnology, Saint-Petersburg National Research Academic University of the Russian Academy of Sciences, Saint-Petersburg 194021, Russia

8. N.P. Bechtereva Institute of the Human Brain RAS, Saint-Petersburg 197376, Russia

9. Almazov National Medical Research Centre, Saint-Petersburg 197341, Russia

Abstract

Mutations in the GBA1 gene, encoding the lysosomal enzyme glucocerebrosidase (GCase), cause Gaucher disease (GD) and are the most common genetic risk factor for Parkinson’s disease (PD). Pharmacological chaperones (PCs) are being developed as an alternative treatment approach for GD and PD. To date, NCGC00241607 (NCGC607) is one of the most promising PCs. Using molecular docking and molecular dynamics simulation we identified and characterized six allosteric binding sites on the GCase surface suitable for PCs. Two sites were energetically more preferable for NCGC607 and located nearby to the active site of the enzyme. We evaluated the effects of NCGC607 treatment on GCase activity and protein levels, glycolipids concentration in cultured macrophages from GD (n = 9) and GBA-PD (n = 5) patients as well as in induced human pluripotent stem cells (iPSC)—derived dopaminergic (DA) neurons from GBA-PD patient. The results showed that NCGC607 treatment increased GCase activity (by 1.3-fold) and protein levels (by 1.5-fold), decreased glycolipids concentration (by 4.0-fold) in cultured macrophages derived from GD patients and also enhanced GCase activity (by 1.5-fold) in cultured macrophages derived from GBA-PD patients with N370S mutation (p < 0.05). In iPSC-derived DA neurons from GBA-PD patients with N370S mutation NCGC607 treatment increased GCase activity and protein levels by 1.1-fold and 1.7-fold (p < 0.05). Thus, our results showed that NCGC607 could bind to allosteric sites on the GCase surface and confirmed its efficacy on cultured macrophages from GD and GBA-PD patients as well as on iPSC-derived DA neurons from GBA-PD patients.

Funder

Russian Science Foundation

Publisher

MDPI AG

Reference53 articles.

1. Glucocerebrosidase and Its Relevance to Parkinson Disease;Do;Mol. Neurodegener.,2019

2. Gaucher’s Disease: A Paradigm for Interventional Genetics;Germain;Clin. Genet.,2004

3. The Human Gene Mutation Database (2023, May 19). HGMD Professional 2021.4.1. Available online: https://www.hgmd.cf.ac.uk.

4. Classification of GBA1 Variants in Parkinson’s Disease: The GBA1-PD Browser;Parlar;Mov. Disord.,2023

5. Type 1 Gaucher Disease: Significant Disease Manifestations in “Asymptomatic” Homozygotes Identified by Prenatal Carrier Screening;Balwani;Arch. Intern. Med.,2010

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