Background: Polycomb repressive complex 2 (PRC2) is an epigenetic transcriptional repression system, whose catalytic subunit (ENHANCER OF ZESTE HOMOLOG 2, EZH2 in animals) is responsible for trimethylating histone H3 at lysine 27 (H3K27me3). In mammals, gain-of-function mutations as well as overexpression of EZH2 have been associated with several tumors, therefore making this subunit a suitable target for the development of selective inhibitors. Indeed, highly specific small-molecule inhibitors of EZH2 have been reported. In plants, mutations in some PRC2 components lead to embryonic lethality, but no trial with any inhibitor has ever been reported. Results: We show here that the 1,5-bis (3-bromo-4-methoxyphenyl)penta-1,4-dien-3-one compound (RDS 3434), previously reported as an EZH2 inhibitor in human leukemia cells, is active on the Arabidopsis catalytic subunit of PRC2, since treatment with the drug reduces the total amount of H3K27me3 in a dose-dependent fashion. Consistently, we show that the expression level of two PRC2 targets is significantly increased following treatment with the RDS 3434 compound. Finally, we show that impairment of H3K27 trimethylation in Arabidopsis seeds and seedlings affects both seed germination and root growth. Conclusions: Our results provide a useful tool for the plant community in investigating how PRC2 affects transcriptional control in plant development.

Inhibition of Polycomb Repressive Complex2 activity reduces trimethylation of H3K27 and affects development in Arabidopsis seedlings / Ruta, Veronica; Longo, Chiara; Boccaccini, Alessandra; Madia, VALENTINA NOEMI; Saccoliti, Francesco; Tudino, Valeria; DI SANTO, Roberto; Lorrai, Riccardo; DELLO IOIO, Raffaele; Sabatini, Sabrina; Costi, Roberta; Costantino, Paolo; Vittorioso, Paola. - In: BMC PLANT BIOLOGY. - ISSN 1471-2229. - (2019). [10.1186/s12870-019-2057-7]

Inhibition of Polycomb Repressive Complex2 activity reduces trimethylation of H3K27 and affects development in Arabidopsis seedlings

Veronica Ruta
Primo
Investigation
;
Chiara Longo
Investigation
;
Alessandra Boccaccini
Investigation
;
Valentina Noemi Madia;Francesco Saccoliti;Valeria Tudino;Roberto Di Santo;Riccardo Lorrai;Raffaele Dello Ioio;Sabrina Sabatini;Roberta Costi
Supervision
;
Paolo Costantino
Penultimo
Writing – Review & Editing
;
Paola Vittorioso
Ultimo
Writing – Original Draft Preparation
2019

Abstract

Background: Polycomb repressive complex 2 (PRC2) is an epigenetic transcriptional repression system, whose catalytic subunit (ENHANCER OF ZESTE HOMOLOG 2, EZH2 in animals) is responsible for trimethylating histone H3 at lysine 27 (H3K27me3). In mammals, gain-of-function mutations as well as overexpression of EZH2 have been associated with several tumors, therefore making this subunit a suitable target for the development of selective inhibitors. Indeed, highly specific small-molecule inhibitors of EZH2 have been reported. In plants, mutations in some PRC2 components lead to embryonic lethality, but no trial with any inhibitor has ever been reported. Results: We show here that the 1,5-bis (3-bromo-4-methoxyphenyl)penta-1,4-dien-3-one compound (RDS 3434), previously reported as an EZH2 inhibitor in human leukemia cells, is active on the Arabidopsis catalytic subunit of PRC2, since treatment with the drug reduces the total amount of H3K27me3 in a dose-dependent fashion. Consistently, we show that the expression level of two PRC2 targets is significantly increased following treatment with the RDS 3434 compound. Finally, we show that impairment of H3K27 trimethylation in Arabidopsis seeds and seedlings affects both seed germination and root growth. Conclusions: Our results provide a useful tool for the plant community in investigating how PRC2 affects transcriptional control in plant development.
2019
Arabidopsis, PRC2, H3K27me3, EZH2 inhibitor, H3K4me3
01 Pubblicazione su rivista::01a Articolo in rivista
Inhibition of Polycomb Repressive Complex2 activity reduces trimethylation of H3K27 and affects development in Arabidopsis seedlings / Ruta, Veronica; Longo, Chiara; Boccaccini, Alessandra; Madia, VALENTINA NOEMI; Saccoliti, Francesco; Tudino, Valeria; DI SANTO, Roberto; Lorrai, Riccardo; DELLO IOIO, Raffaele; Sabatini, Sabrina; Costi, Roberta; Costantino, Paolo; Vittorioso, Paola. - In: BMC PLANT BIOLOGY. - ISSN 1471-2229. - (2019). [10.1186/s12870-019-2057-7]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1321741
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