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Engagement of Foxh1 in chromatin regulation revealed by protein interactome analyses. , Zhou JJ , Pham PD, Han H, Wang W, Cho KWY., Dev Growth Differ. August 1, 2022; 64 (6): 297-305.
Structures of monomeric and dimeric PRC2: EZH1 reveal flexible modules involved in chromatin compaction. , Grau D, Zhang Y , Lee CH , Valencia-Sánchez M, Zhang J, Wang M, Holder M, Svetlov V, Tan D, Nudler E, Reinberg D, Walz T, Armache KJ., Nat Commun. January 29, 2021; 12 (1): 714.
JARID2 and AEBP2 regulate PRC2 in the presence of H2AK119ub1 and other histone modifications. , Kasinath V, Beck C, Sauer P, Poepsel S, Kosmatka J, Faini M, Toso D, Aebersold R, Nogales E., Science. January 22, 2021; 371 (6527):
Structural basis for PRC2 decoding of active histone methylation marks H3K36me2/3. , Finogenova K, Bonnet J, Poepsel S, Schäfer IB, Finkl K, Schmid K, Litz C, Strauss M, Benda C, Müller J., Elife. November 19, 2020; 9
Regeneration enhancers: Starting a journey to unravel regulatory events in tissue regeneration. , Rodriguez AM, Kang J., Semin Cell Dev Biol. January 1, 2020;
Snail2/ Slug cooperates with Polycomb repressive complex 2 (PRC2) to regulate neural crest development. , Tien CL, Jones A, Wang H, Gerigk M, Nozell S, Chang C ., Development. February 15, 2015; 142 (4): 722-31.
Polycomb repressive complex PRC2 regulates Xenopus retina development downstream of Wnt/ β-catenin signaling. , Aldiri I , Moore KB , Hutcheson DA , Zhang J, Vetter ML ., Development. July 1, 2013; 140 (14): 2867-78.
KDM2B links the Polycomb Repressive Complex 1 ( PRC1) to recognition of CpG islands. , Farcas AM, Blackledge NP, Sudbery I, Long HK, McGouran JF, Rose NR, Lee S, Sims D , Cerase A, Sheahan TW, Koseki H, Brockdorff N, Ponting CP, Kessler BM, Klose RJ., Elife. December 18, 2012; 1 e00205.
PRC2 during vertebrate organogenesis: A complex in transition. , Aldiri I , Vetter ML ., Dev Biol. July 15, 2012; 367 (2): 91-9.
Corepressor protein CDYL functions as a molecular bridge between polycomb repressor complex 2 and repressive chromatin mark trimethylated histone lysine 27. , Zhang Y , Zhang Y , Yang X, Gui B, Xie G, Zhang D, Shang Y, Liang J., J Biol Chem. December 9, 2011; 286 (49): 42414-42425.
Characterization of the expression pattern of the PRC2 core subunit Suz12 during embryonic development of Xenopus laevis. , Aldiri I , Vetter ML ., Dev Dyn. December 1, 2009; 238 (12): 3185-92.
Xtr, a plural tudor domain-containing protein, coexists with FRGY2 both in cytoplasmic mRNP particle and germ plasm in Xenopus embryo: its possible role in translational regulation of maternal mRNAs. , Golam Mostafa M, Sugimoto T, Hiyoshi M, Kawasaki H, Kubo H , Matsumoto K , Abe S , Takamune K ., Dev Growth Differ. August 1, 2009; 51 (6): 595-605.
Defining synphenotype groups in Xenopus tropicalis by use of antisense morpholino oligonucleotides. , Rana AA, Collart C , Gilchrist MJ , Smith JC ., PLoS Genet. November 17, 2006; 2 (11): e193.
Cell-autonomous and signal-dependent expression of liver and intestine marker genes in pluripotent precursor cells from Xenopus embryos. , Chen Y , Chen Y , Jürgens K, Hollemann T , Claussen M, Ramadori G, Pieler T ., Mech Dev. March 1, 2003; 120 (3): 277-88.
Characterization of Xenopus EED pseudogene, a Polycomb group gene. , Cho JK, Chung HM., DNA Seq. August 1, 2002; 13 (4): 225-9.
Identification of putative interaction partners for the Xenopus Polycomb-group protein Xeed. , Showell C , Cunliffe VT., Gene. May 29, 2002; 291 (1-2): 95-104.
The polycomb group protein EED interacts with YY1, and both proteins induce neural tissue in Xenopus embryos. , Satijn DP, Hamer KM, den Blaauwen J, Otte AP., Mol Cell Biol. February 1, 2001; 21 (4): 1360-9.