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...
Main Authors: | Vilema Enriquez, MG, Quinlan, R, Kilfeather, P, Mazzone, R, Saqlain, S, Del Molino Del Barrio, I, Donato, A, Corda, G, Li, F, Vedadi, M, Németh, AH, Brennan, PE, Wade-Martins, R |
---|---|
Formato: | Journal article |
Idioma: | English |
Publicado em: |
American Society for Biochemistry and Molecular Biology
2020
|
Registos relacionados
-
Epigenetic modification of the frataxin gene for the treatment of Friedreich’s ataxia
Por: Vilema Enriquez, MG
Publicado em: (2018) -
Strategies for increasing frataxin expression in Friedreich's ataxia: modulation of the epigenome and proteome
Por: Quinlan, R
Publicado em: (2021) -
Pharmacological inhibition of the methyltransferases SUV4-20 in cellular models of Friedreich’s ataxia
Por: Maheshwari, S
Publicado em: (2021) -
Simultaneous Quantification of Mitochondrial Mature Frataxin and Extra-Mitochondrial Frataxin Isoform E in Friedreich’s Ataxia Blood
Por: Qingqing Wang, et al.
Publicado em: (2022-04-01) -
DNA methylation in Friedreich ataxia silences expression of frataxin isoform E
Por: Layne N. Rodden, et al.
Publicado em: (2022-03-01)