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Tytuł pozycji:

The role of the Xist 5’ m6A region and RBM15 in X chromosome inactivation [version 1; peer review: 1 approved, 2 approved with reservations]

Tytuł:
The role of the Xist 5’ m6A region and RBM15 in X chromosome inactivation [version 1; peer review: 1 approved, 2 approved with reservations]
Autorzy:
Heather Coker
Guifeng Wei
Benoit Moindrot
Shabaz Mohammed
Tatyana Nesterova
Neil Brockdorff
Temat:
Medicine
Science
Źródło:
Wellcome Open Research, Vol 5 (2020)
Wydawca:
Wellcome, 2020.
Rok publikacji:
2020
Kolekcja:
LCC:Medicine
LCC:Science
Typ dokumentu:
article
Opis pliku:
electronic resource
Język:
English
ISSN:
2398-502X
Relacje:
https://wellcomeopenresearch.org/articles/5-31/v1; https://doaj.org/toc/2398-502X
DOI:
10.12688/wellcomeopenres.15711.1
Dostęp URL:
https://doaj.org/article/b298b9adf43348348402ac34948230ba  Link otwiera się w nowym oknie
Numer akcesji:
edsdoj.b298b9adf43348348402ac34948230ba
Czasopismo naukowe
Background: X chromosome inactivation in mammals is regulated by the non-coding (nc) RNA, Xist, which represses the chromosome from which it is transcribed. High levels of the N6-methyladenosine (m6A) RNA modification occur within Xist exon I, close to the 5’ end of the transcript, and also further 3’, in Xist exon VII. The m6A modification is catalysed by the METTL3/14 complex that is directed to specific targets, including Xist, by the RNA binding protein RBM15/15B. m6A modification of Xist RNA has been reported to be important for Xist–mediated gene silencing. Methods: We use CRISPR/Cas9 mediated mutagenesis to delete sequences around the 5’ m6A region in interspecific XX mouse embryonic stem cells (mESCs). Following induction of Xist RNA expression, we assay chromosome silencing using allelic RNA-seq and Xist m6A distribution using m6A-seq. Additionally, we use Xist RNA FISH to analyse the effect of deleting the 5’ m6A region on the function of the endogenous Xist promoter. We purify epitope tagged RBM15 from mESCs, and then apply MS/MS analysis to define the RBM15 interactome. Results: We show that a deletion encompassing the entire Xist 5’ m6A region results in a modest reduction in Xist-mediated silencing, and that the 5’ m6A region overlaps essential DNA elements required for activation of the endogenous Xist promoter. Deletion of the Xist A-repeat, to which RBM15 binds, entirely abolishes deposition of m6A in the Xist 5’ m6A region without affecting the modification in exon VII. We show that in mESCs, RBM15 interacts with the m6A complex, the SETD1B histone modifying complex, and several proteins linked to RNA metabolism. Conclusions: Our findings support that RBM15 binding to the Xist A-repeat recruits the m6A complex to the 5’ Xist m6A region and that this region plays a role in Xist-mediated chromosome silencing.

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