A long noncoding RNA influences the choice of the X chromosome to be inactivated
Andreas Hierholzer1, Corinne Chureau2, Alessandra Liverziani1
1Epigenetics and Neurobiology Unit, EMBL Rome, Monterotondo, 00015, Italy.
Abstract:
X chromosome inactivation (XCI) is the process of silencing one of the X chromosomes in cells of the female mammal which ensures dosage compensation between the sexes. Although theoretically random in somatic tissues, the choice of which X chromosome is chosen to be inactivated can be biased in mice by genetic element(s) associated with the so-called X-controlling element (Xce). Although the Xce was first described and genetically localized nearly 40 y ago, its mode of action remains elusive. In the approach presented here, we identify a single long noncoding RNA (lncRNA) within the Xce locus, Lppnx, which may be the driving factor in the choice of which X chromosome will be inactivated in the developing female mouse embryo. Comparing weak and strong Xce alleles we show that Lppnx modulates the expression of Xist lncRNA, one of the key factors in XCI, by controlling the occupancy of pluripotency factors at Intron1 of Xist. This effect is counteracted by enhanced binding of Rex1 in DxPas34, another key element in XCI regulating the activity of Tsix lncRNA, the main antagonist of Xist, in the strong but not in the weak Xce allele. These results suggest that the different susceptibility for XCI observed in weak and strong Xce alleles results from differential transcription factor binding of Xist Intron 1 and DxPas34, and that Lppnx represents a decisive factor in explaining the action of the Xce.
Insights
A novel long noncoding RNA, Lppnx, has been identified as a key factor in X chromosome inactivation (XCI) bias in female mice. Lppnx influences Xist expression, impacting which X chromosome is silenced during development.
Area of Science:
- Epigenetics
- Genetics
- Developmental Biology
Background:
- X chromosome inactivation (XCI) is crucial for dosage compensation in female mammals.
- The X-controlling element (Xce) influences XCI choice, but its mechanism is unknown.
- Identifying the genetic basis of Xce is essential for understanding XCI regulation.
Purpose of the Study:
- To identify the molecular factor(s) responsible for X-controlling element (Xce) activity.
- To elucidate the mechanism by which Xce influences X chromosome inactivation (XCI) choice.
- To investigate the role of long noncoding RNAs (lncRNAs) in XCI regulation.
Main Methods:
- Comparative analysis of weak and strong Xce alleles in mouse embryos.
- Identification and characterization of lncRNAs within the Xce locus.
- Assays to measure Xist lncRNA expression and transcription factor binding.
Main Results:
- A single lncRNA, Lppnx, was identified within the Xce locus.
- Lppnx modulates Xist lncRNA expression by affecting pluripotency factor binding to Xist Intron 1.
- Differential transcription factor binding at Xist Intron 1 and DxPas34 correlates with Xce allele strength.
Conclusions:
- Lppnx is a critical factor driving XCI choice mediated by the Xce.
- The differential regulation of Xist and Tsix by Lppnx explains Xce-mediated XCI bias.
- This finding provides a molecular explanation for the long-standing mystery of Xce function.
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