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Rietdijk, R.

Publications and source records attributed to Rietdijk, R..

2 recordsLinked to original sources

HCFC1 and YY1 mediate recruitment of COMPASS and Integrator to initiate X chromosome inactivation.

The evolution of mammalian sex chromosomes has driven the emergence of mechanisms that balance X-linked gene dosage between male (XY) and female (XX) cells. In females, dosage compensation is achieved through X chromosome inactivation (XCI), initiated by upregulation of the long non-coding RNA Xist, which spreads in cis, recruiting chromatin modifiers to silence gene expression on one X chromosome. Here, we conducted a forward genetic screen and identified X-encoded Host Cell Factor 1 (HCFC1), a member of the COMPASS H3K4 methyltransferase complex, as a dose-dependent XCI-activator. HCFC1 loss results in genome-wide reduction of H3K4me3 at specific regulatory elements and downregulation of nearby genes, including Xist. We show that HCFC1 and YY1 are co-recruited genome-wide to gene regulatory elements. Mass spectrometry analysis confirmed an interaction of HCFC1 and YY1 and uncovered the Integrator complex as another prominent YY1 partner. YY1 depletion results in genome-wide loss of Integrator recruitment at gene regulatory elements and reduced expression of nearby genes, including Xist cis-regulatory genes Jpx and Ftx. These results highlight a co-regulatory role for HCFC1 in COMPASS recruitment and Xist activation, alongside YY1-mediated recruitment of Integrator to Xist regulatory elements and genes to activate female-exclusive XCI.

molecular biology↗

Sex chromosomes shape the transcriptional landscape of the preimplantation mouseembryo

Sex chromosomes are emerging as key regulators of adult health and disease in males (XY) and females (XX), but their impact on embryo development is poorly understood. Using single-cell RNA sequencing (scRNA-seq) on wild type and aneuploid mouse embryos, we show that sex chromosomes significantly shape the preimplantation embryo transcriptional landscape. A hierarchy of effects are identified, distinctly mediated by the Y chromosome, the dosage of X chromosomes, X-chromosome imprinting, and by Xist, the non-coding RNA that initiates X-inactivation. The sex chromosomes have strong trans effects on autosomal gene expression throughout preimplantation development. The Y chromosome has an unexpectedly pronounced impact on the trophectoderm, the precursor of the placenta, and this property is shared with genes expressed from the inactive X chromosome. The paternal and maternal X chromosomes differentially promote preimplantation growth, and we identify multiple novel candidate X-linked imprinted genes mediating this effect. Our findings show that sex chromosomes impact the embryo from the beginning of life, long before the appearance of overt sex differences.

developmental biology↗