Extensive remodelling of XIST regulatory networks during primate evolution
Cazottes, E.; Alfeghaly, C.; Rognard, C.; Loda, A.; Castel, G.; Villacorta, L.; Dong, M.; Heard, E.; Aksoy, I.; Savatier, P.; Morey, C.; Rougeulle, C.
Show abstract
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.
Matching journals
The top 1 journal accounts for 50% of the predicted probability mass.
Similar papers in this journal
- TAD Evolutionary and functional characterization reveals diversity in mammalian TAD boundary properties and function 98%
- The chromatin, topological and regulatory properties of pluripotency-associated poised enhancers are conserved in vivo 97%
- Single-cell dynamics of genome-nucleolus interactions captured by nucleolar laser microdissection (NoLMseq) 97%
Similar papers in this journal
- Dynamic network-guided CRISPRi screen reveals CTCF loop-constrained nonlinear enhancer-gene regulatory activity in cell state transitions 97%
- Integrated annotation and analysis of genomic features reveal new types of functional elements and large-scale epigenetic phenomena in the developing zebrafish 97%
- Systematic Epigenome Editing Captures the Context-dependent Instructive Function of Chromatin Modifications 97%
Similar papers in this journal
- Recruitment of Homodimeric Proneural Factors by Conserved CAT-CAT E-Boxes Drives Major Epigenetic Reconfiguration in Cortical Neurogenesis 97%
- Extensive long-range polycomb interactions and weak compartmentalization are hallmarks of human neuronal 3D genome 97%
- A high-resolution map of functional miR-181 response elements in the thymus reveals the role of coding sequence targeting and an alternative seed match 96%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.