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Inhibition of the SUV4-20 H1 histone methyltransferase increases frataxin expression in Friedreich's ataxia patient cells

The molecular mechanisms of reduced frataxin (FXN) expression in Friedreich's ataxia (FRDA) are linked to epigenetic modification of the FXN locus caused by the disease-associated GAA expansion. Here, we identify that SUV4-20 histone methyltransferases, specifically SUV4-20 H1, play an importan...

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Autores principales: Vilema-Enríquez, Gabriela, Quinlan, Robert, Kilfeather, Peter, Mazzone, Roberta, Saqlain, Saba, del Molino del Barrio, Irene, Donato, Annalidia, Corda, Gabriele, Li, Fengling, Vedadi, Masoud, Németh, Andrea H., Brennan, Paul E., Wade-Martins, Richard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7939392/
https://www.ncbi.nlm.nih.gov/pubmed/33028632
http://dx.doi.org/10.1074/jbc.RA120.015533
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author Vilema-Enríquez, Gabriela
Quinlan, Robert
Kilfeather, Peter
Mazzone, Roberta
Saqlain, Saba
del Molino del Barrio, Irene
Donato, Annalidia
Corda, Gabriele
Li, Fengling
Vedadi, Masoud
Németh, Andrea H.
Brennan, Paul E.
Wade-Martins, Richard
author_facet Vilema-Enríquez, Gabriela
Quinlan, Robert
Kilfeather, Peter
Mazzone, Roberta
Saqlain, Saba
del Molino del Barrio, Irene
Donato, Annalidia
Corda, Gabriele
Li, Fengling
Vedadi, Masoud
Németh, Andrea H.
Brennan, Paul E.
Wade-Martins, Richard
author_sort Vilema-Enríquez, Gabriela
collection PubMed
description The molecular mechanisms of reduced frataxin (FXN) expression in Friedreich's ataxia (FRDA) are linked to epigenetic modification of the FXN locus caused by the disease-associated GAA expansion. Here, we identify that SUV4-20 histone methyltransferases, specifically SUV4-20 H1, play an important role in the regulation of FXN expression and represent a novel therapeutic target. Using a human FXN–GAA–Luciferase repeat expansion genomic DNA reporter model of FRDA, we screened the Structural Genomics Consortium epigenetic probe collection. We found that pharmacological inhibition of the SUV4-20 methyltransferases by the tool compound A-196 increased the expression of FXN by ∼1.5-fold in the reporter cell line. In several FRDA cell lines and patient-derived primary peripheral blood mononuclear cells, A-196 increased FXN expression by up to 2-fold, an effect not seen in WT cells. SUV4-20 inhibition was accompanied by a reduction in H4K20me2 and H4K20me3 and an increase in H4K20me1, but only modest (1.4–7.8%) perturbation in genome-wide expression was observed. Finally, based on the structural activity relationship and crystal structure of A-196, novel small molecule A-196 analogs were synthesized and shown to give a 20-fold increase in potency for increasing FXN expression. Overall, our results suggest that histone methylation is important in the regulation of FXN expression and highlight SUV4-20 H1 as a potential novel therapeutic target for FRDA.
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spelling pubmed-79393922021-06-08 Inhibition of the SUV4-20 H1 histone methyltransferase increases frataxin expression in Friedreich's ataxia patient cells Vilema-Enríquez, Gabriela Quinlan, Robert Kilfeather, Peter Mazzone, Roberta Saqlain, Saba del Molino del Barrio, Irene Donato, Annalidia Corda, Gabriele Li, Fengling Vedadi, Masoud Németh, Andrea H. Brennan, Paul E. Wade-Martins, Richard J Biol Chem Molecular Bases of Disease The molecular mechanisms of reduced frataxin (FXN) expression in Friedreich's ataxia (FRDA) are linked to epigenetic modification of the FXN locus caused by the disease-associated GAA expansion. Here, we identify that SUV4-20 histone methyltransferases, specifically SUV4-20 H1, play an important role in the regulation of FXN expression and represent a novel therapeutic target. Using a human FXN–GAA–Luciferase repeat expansion genomic DNA reporter model of FRDA, we screened the Structural Genomics Consortium epigenetic probe collection. We found that pharmacological inhibition of the SUV4-20 methyltransferases by the tool compound A-196 increased the expression of FXN by ∼1.5-fold in the reporter cell line. In several FRDA cell lines and patient-derived primary peripheral blood mononuclear cells, A-196 increased FXN expression by up to 2-fold, an effect not seen in WT cells. SUV4-20 inhibition was accompanied by a reduction in H4K20me2 and H4K20me3 and an increase in H4K20me1, but only modest (1.4–7.8%) perturbation in genome-wide expression was observed. Finally, based on the structural activity relationship and crystal structure of A-196, novel small molecule A-196 analogs were synthesized and shown to give a 20-fold increase in potency for increasing FXN expression. Overall, our results suggest that histone methylation is important in the regulation of FXN expression and highlight SUV4-20 H1 as a potential novel therapeutic target for FRDA. American Society for Biochemistry and Molecular Biology 2021-01-13 /pmc/articles/PMC7939392/ /pubmed/33028632 http://dx.doi.org/10.1074/jbc.RA120.015533 Text en © 2020 © 2020 Vilema-Enríquez et al. https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Molecular Bases of Disease
Vilema-Enríquez, Gabriela
Quinlan, Robert
Kilfeather, Peter
Mazzone, Roberta
Saqlain, Saba
del Molino del Barrio, Irene
Donato, Annalidia
Corda, Gabriele
Li, Fengling
Vedadi, Masoud
Németh, Andrea H.
Brennan, Paul E.
Wade-Martins, Richard
Inhibition of the SUV4-20 H1 histone methyltransferase increases frataxin expression in Friedreich's ataxia patient cells
title Inhibition of the SUV4-20 H1 histone methyltransferase increases frataxin expression in Friedreich's ataxia patient cells
title_full Inhibition of the SUV4-20 H1 histone methyltransferase increases frataxin expression in Friedreich's ataxia patient cells
title_fullStr Inhibition of the SUV4-20 H1 histone methyltransferase increases frataxin expression in Friedreich's ataxia patient cells
title_full_unstemmed Inhibition of the SUV4-20 H1 histone methyltransferase increases frataxin expression in Friedreich's ataxia patient cells
title_short Inhibition of the SUV4-20 H1 histone methyltransferase increases frataxin expression in Friedreich's ataxia patient cells
title_sort inhibition of the suv4-20 h1 histone methyltransferase increases frataxin expression in friedreich's ataxia patient cells
topic Molecular Bases of Disease
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7939392/
https://www.ncbi.nlm.nih.gov/pubmed/33028632
http://dx.doi.org/10.1074/jbc.RA120.015533
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