Nuclear positioning and pairing of X-chromosome inactivation centers are not primary determinants during initiation of random X-inactivation

被引:0
作者
Tim Pollex
Edith Heard
机构
[1] Mammalian Developmental Epigenetics Group,
[2] Genetics and Developmental Biology Unit,undefined
[3] Institut Curie,undefined
[4] PSL Research University,undefined
[5] CNRS UMR3215,undefined
[6] INSERM U934,undefined
[7] European Molecular Biology Laboratory,undefined
来源
Nature Genetics | 2019年 / 51卷
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摘要
During X-chromosome inactivation (XCI), one of the two X-inactivation centers (Xics) upregulates the noncoding RNA Xist to initiate chromosomal silencing in cis. How one Xic is chosen to upregulate Xist remains unclear. Models proposed include localization of one Xic at the nuclear envelope or transient homologous Xic pairing followed by asymmetric transcription factor distribution at Xist’s antisense Xite/Tsix locus. Here, we use a TetO/TetR system that can inducibly relocate one or both Xics to the nuclear lamina in differentiating mouse embryonic stem cells. We find that neither nuclear lamina localization nor reduction of Xic homologous pairing influences monoallelic Xist upregulation or choice-making. We also show that transient pairing is associated with biallelic expression, not only at Xist/Tsix but also at other X-linked loci that can escape XCI. Finally, we show that Xic pairing occurs in wavelike patterns, coinciding with genome dynamics and the onset of global regulatory programs during early differentiation.
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页码:285 / 295
页数:10
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