Xist RNA binds select autosomal genes and depends on Repeat B to regulate their expression
Shengze Yao1,2, Yesu Jeon1,2, Barry Kesner1,2
1Department of Molecular Biology, Massachusetts General Hospital, Boston, United States.
Elife
|June 9, 2025
Summary
Xist RNA, crucial for X chromosome inactivation, targets approximately 100 autosomal genes beyond the inactive X chromosome in mice. Its Repeat B motif is key for this function, and disruption can be chemically inhibited.
Area of Science:
- Epigenetics
- Genomics
- RNA Biology
Background:
- Xist is a long noncoding RNA essential for X chromosome inactivation (XCI).
- Xist was traditionally considered a cis-acting RNA, binding only to the inactive X chromosome (Xi).
- Evidence suggested Xist might have functions beyond the Xi under certain conditions.
Purpose of the Study:
- To investigate whether Xist RNA can localize and function beyond the inactive X chromosome.
- To identify the targets and characteristics of Xist binding in trans.
- To determine the role of Xist's Repeat B motif in its in-trans function.
Main Methods:
- Analysis of Xist RNA localization and binding in mouse embryonic stem cells (ES) and fibroblasts (MEFs).
- Gene expression analysis to assess the impact of Xist binding on autosomal genes.
- Studies involving transgenic ES cells with altered Xist expression and deletion of the Repeat B motif.
- Treatment with a small molecule inhibitor (X1) targeting Xist.
Main Results:
- Xist RNA was found to localize beyond the Xi, binding to approximately 100 autosomal genes in ES and MEF cells.
- Target genes are actively transcribed and located in regions with low Polycomb occupancy, differing from human XIST patterns.
- Xist binding leads to down-modulation, but not complete silencing, of autosomal gene expression.
- The Repeat B motif of Xist is critical for its autosomal binding and regulatory function.
- Inhibition of Xist with X1 disrupts autosomal gene suppression.
Conclusions:
- Xist RNA exhibits trans-acting functions in mice, targeting a specific set of ~100 autosomal genes.
- The Repeat B domain is essential for Xist's in-trans binding and regulatory activity.
- Autosomal gene targeting by Xist can be modulated by small molecule inhibitors, offering potential therapeutic avenues.
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