bioRxiv · 10.1101/2023.06.17.545424
Dynamic X-chromosomal reactivation enhances female brain resilience
Abstract
While random X-chromosome inactivation in female cells of placental mammalians silences one allele of the majority of X-chromosomal genes, a considerable fraction is only incompletely and variably inactivated resulting in a tissue-specific pattern of mono- and biallelic expression. Here we used clonal human female induced pluripotent stem cells (iPSCs) allowing to trace the (in)activation status of the two X-chromosomes individually along neural differentiation trajectories. We discovered X-chromosome-wide locus- and lineage-specific dynamic usage of the two X-chromosomal alleles in female cells induced by differentiation. Leveraging iPSCs derived from patients with an X-linked neurodevelopmental disorder, we demonstrate that activation of alleles on the inactive X-chromosome can exert protective effects on the manifestation of disease phenotypes in female neural cells and tissue. Taken together, our data demonstrate that alleles on the inactive X-chromosome can serve as a critical reservoir reactivated during differentiation, thereby enhancing resilience of female neural tissue.
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Kaeseberg, S., Bertin, M., Menon, R., Gabassi, E., Todorov, H., Frank, S., Brennenstuhl, H., Lohrer, B., Winter, J., Krummeich, J., Winkler, J., Winner, B., Weis, E., Hartwich, D., Diederich, S., Luck, K., Gerber, S., Lunt, P., Berninger, B., Falk, S., Schweiger, S., Karow, M.. 2023-06-21. Dynamic X-chromosomal reactivation enhances female brain resilience. https://doi.org/10.1101/2023.06.17.545424
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