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  • A Conserved Noncoding Locus Regulates Random Monoallelic Xist Expression across a Topological Boundary.

A Conserved Noncoding Locus Regulates Random Monoallelic Xist Expression across a Topological Boundary.

Molecular cell (2019-11-25)
Rafael Galupa, Elphège Pierre Nora, Rebecca Worsley-Hunt, Christel Picard, Chris Gard, Joke Gerarda van Bemmel, Nicolas Servant, Yinxiu Zhan, Fatima El Marjou, Colin Johanneau, Patricia Diabangouaya, Agnès Le Saux, Sonia Lameiras, Juliana Pipoli da Fonseca, Friedemann Loos, Joost Gribnau, Sylvain Baulande, Uwe Ohler, Luca Giorgetti, Edith Heard
ABSTRACT

cis-Regulatory communication is crucial in mammalian development and is thought to be restricted by the spatial partitioning of the genome in topologically associating domains (TADs). Here, we discovered that the Xist locus is regulated by sequences in the neighboring TAD. In particular, the promoter of the noncoding RNA Linx (LinxP) acts as a long-range silencer and influences the choice of X chromosome to be inactivated. This is independent of Linx transcription and independent of any effect on Tsix, the antisense regulator of Xist that shares the same TAD as Linx. Unlike Tsix, LinxP is well conserved across mammals, suggesting an ancestral mechanism for random monoallelic Xist regulation. When introduced in the same TAD as Xist, LinxP switches from a silencer to an enhancer. Our study uncovers an unsuspected regulatory axis for X chromosome inactivation and a class of cis-regulatory effects that may exploit TAD partitioning to modulate developmental decisions.

MATERIALS
Product Number
Brand
Product Description

Roche
Nick Translation Kit, sufficient for 50 labeling reactions, kit of 1 (7 components), suitable for FISH