PRC1 coordinates timing of sexual differentiation of female primordial germ cells
NATURE
Authors: Yokobayashi, Shihori; Liang, Ching-Yeu; Kohler, Hubertus; Nestorov, Peter; Liu, Zichuan; Vidal, Miguel; van Lohuizen, Maarten; Roloff, Tim C.; Peters, Antoine H. F. M.
Abstract
In mammals, sex differentiation of primordial germ cells (PGCs) is determined by extrinsic cues from the environment(1). In mouse female PGCs, expression of stimulated by retinoic acid gene 8 (Stra8) and meiosis are induced in response to retinoic acid provided from the mesonephroi(2-5). Given the widespread role of retinoic add signalling during development(6,7), the molecular mechanisms that enable PGCs to express Stra8 and enter meiosis in a timely manner are unknown(2,8). Here we identify gene-dosage-dependent roles in PGC development for Ring1 and Rnf2, two central components of the Polycomb repressive complex 1 (PRC1)(9,10). Both paralogues are essential for PGC development between days 10.5 and 11.5 of gestation. Rnf2 is subsequently required in female PGCs to maintain high levels of Oct4 (also known as Pou5f1) and Nanog expression(11), and to prevent premature induction of meiotic gene expression and entry into meiotic prophase. Chemical inhibition of retinoic acid signalling partially suppresses precocious Oct4 downregulation and Stra8 activation in Rnf2-deficient female PGCs. Chromatin immunoprecipitation analyses show that Stra8 is a direct target of PRC1 and PRC2 in PGCs. These data demonstrate the importance of PRC1 gene dosage in PGC development and in coordinating the timing of sex differentiation of female PGCs by antagonizing extrinsic retinoic add signalling.
SUMOylated PRC1 controls histone H3.3 deposition and genome integrity of embryonic heterochromatin
EMBO JOURNAL
Authors: Liu, Zichuan; Tardat, Mathieu; Gill, Mark E.; Royo, Helene; Thierry, Raphael; Ozonov, Evgeniy A.; Peters, Antoine H. F. M.
Abstract
Chromatin integrity is essential for cellular homeostasis. Polycomb group proteins modulate chromatin states and transcriptionally repress developmental genes to maintain cell identity. They also repress repetitive sequences such as major satellites and constitute an alternative state of pericentromeric constitutive heterochromatin at paternal chromosomes (pat-PCH) in mouse pre-implantation embryos. Remarkably, pat-PCH contains the histone H3.3 variant, which is absent from canonical PCH at maternal chromosomes, which is marked by histone H3 lysine 9 trimethylation (H3K9me3), HP1, and ATRX proteins. Here, we show that SUMO2-modified CBX2-containing Polycomb Repressive Complex 1 (PRC1) recruits the H3.3-specific chaperone DAXX to pat-PCH, enabling H3.3 incorporation at these loci. Deficiency of Daxx or PRC1 components Ring1 and Rnf2 abrogates H3.3 incorporation, induces chromatin decompaction and breakage at PCH of exclusively paternal chromosomes, and causes their mis-segregation. Complementation assays show that DAXX-mediated H3.3 deposition is required for chromosome stability in early embryos. DAXX also regulates repression of PRC1 target genes during oogenesis and early embryogenesis. The study identifies a novel critical role for Polycomb in ensuring heterochromatin integrity and chromosome stability in mouse early development.