A disproportionate impact of G9a methyltransferase deficiency on the X chromosome

G9a is a histone methyltransferase responsible for the dimethylation of histone H3 at lysine 9 (H3K9me2). G9a plays key roles in transcriptional silencing of developmentally regulated genes, but its role in X-chromosome inactivation (XCI) has been under debate. Here, we uncover a female-specific fun...

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Veröffentlicht in:Genes & development 2021-07, Vol.35 (13-14), p.1035-1054
Hauptverfasser: Szanto, Attila, Aguilar, Rodrigo, Kesner, Barry, Blum, Roy, Wang, Danni, Cifuentes-Rojas, Catherine, Del Rosario, Brian C, Kis-Toth, Katalin, Lee, Jeannie T
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Sprache:eng
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Zusammenfassung:G9a is a histone methyltransferase responsible for the dimethylation of histone H3 at lysine 9 (H3K9me2). G9a plays key roles in transcriptional silencing of developmentally regulated genes, but its role in X-chromosome inactivation (XCI) has been under debate. Here, we uncover a female-specific function of G9a and demonstrate that deleting G9a has a disproportionate impact on the X chromosome relative to the rest of the genome. G9a deficiency causes a failure of XCI and female-specific hypersensitivity to drug inhibition of H3K9me2. We show that G9a interacts with Tsix and Xist RNAs, and that competitive inhibition of the G9a-RNA interaction recapitulates the XCI defect. During XCI, Xist recruits G9a to silence X-linked genes on the future inactive X. In parallel on the future Xa, Tsix recruits G9a to silence in Thus, RNA tethers G9a for allele-specific targeting of the H3K9me2 modification and the G9a-RNA interaction is essential for XCI.
ISSN:0890-9369
1549-5477
DOI:10.1101/gad.337592.120