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Morey, C.

Publications and source records attributed to Morey, C..

2 recordsLinked to original sources

Extensive remodelling of XIST regulatory networks during primate evolution

Unravelling how gene regulatory networks are remodelled during evolution is crucial to understand how species adapt to environmental changes. We addressed this question for X-chromosome inactivation, a process essential to female development that is governed, in eutherians, by the XIST lncRNA and its cis-regulators. To reach high resolution, we studied closely related primate species, spanning 55 million years of evolution. We show that the XIST regulatory circuitry has diversified extensively over such evolutionary timeframe. The insertion of a HERVK transposon has reshuffled XIST 3D interaction network in macaque embryonic stem cells (ESC) and XIST expression is maintained by the additive effects of the JPX lncRNA gene and a macaque specific enhancer. In contrast, JPX is the main contributor to XIST expression in human ESCs but is not significantly involved in XIST regulation in marmoset ESCs. None of these entities are however under purifying selection, which suggests that neutrally evolving non-coding elements harbour high adaptive potentials.

genomics↗

Altered X-chromosome inactivation predisposes to autoimmune manifestations in mice

In mammals, males and females show marked differences in immune responses. Males are globally more sensitive to infectious diseases while females are more susceptible to systemic autoimmunity. X-chromosome inactivation (XCI), the epigenetic mechanism that ensures the silencing of one X in females, may participate in these sex-biases. Here, we perturbed the expression of the trigger of XCI, the non-coding RNA Xist, in female mice. This resulted in reactivation of genes on the inactive X, including members of the Toll-like receptor 7 (TLR7) signalling pathway, in monocyte/macrophages, dendritic and B cells. Consequently, female mice spontaneously developed inflammatory signs typical of lupus, including anti-nucleic acid autoantibodies, increased frequencies of age-associated and germinal centre B cells and expansion of monocyte/macrophages and dendritic cells. Mechanistically, TLR7 signalling is dysregulated in macrophages, which leads to sustained expression of target genes upon stimulation. These findings provide a direct link between maintenance of XCI and female-biased autoimmune manifestations and highlight altered XCI as a cause of autoimmunity. TeaserThe reason why autoimmunity mostly affects women is unclear. Here, we show that aberrant expression of genes on the X induces signs of lupus in female mice.

immunology↗