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Histone variant H3.3 residue S31 is essential for Xenopus gastrulation regardless of the deposition pathway. , Sitbon D , Boyarchuk E , Dingli F, Loew D, Almouzni G ., Nat Commun. March 9, 2020; 11 (1): 1256.
Shaping Chromatin in the Nucleus: The Bricks and the Architects. , Sitbon D , Podsypanina K, Yadav T, Almouzni G ., Cold Spring Harb Symp Quant Biol. January 1, 2017; 82 1-14.
HIRA dependent H3.3 deposition is required for transcriptional reprogramming following nuclear transfer to Xenopus oocytes. , Jullien J , Astrand C, Szenker E, Garrett N, Almouzni G , Gurdon JB ., Epigenetics Chromatin. October 29, 2012; 5 (1): 17.
A developmental requirement for HIRA-dependent H3.3 deposition revealed at gastrulation in Xenopus. , Szenker E, Lacoste N, Almouzni G ., Cell Rep. June 28, 2012; 1 (6): 730-40.
Stepwise arteriovenous fate acquisition during mammalian vasculogenesis. , Chong DC, Koo Y, Xu K, Fu S, Cleaver O ., Dev Dyn. September 1, 2011; 240 (9): 2153-65.
Xenopus HJURP and condensin II are required for CENP-A assembly. , Bernad R, Sánchez P, Rivera T, Rodríguez-Corsino M, Boyarchuk E , Vassias I, Ray-Gallet D, Arnaoutov A, Dasso M, Almouzni G , Losada A., J Cell Biol. February 21, 2011; 192 (4): 569-82.
Epigenetic memory: H3.3 steps in the groove. , Lacoste N, Almouzni G ., Nat Cell Biol. January 1, 2008; 10 (1): 7-9.
The histone chaperone Asf1 is dispensable for direct de novo histone deposition in Xenopus egg extracts. , Ray-Gallet D, Quivy JP, Silljé HW, Nigg EA, Almouzni G ., Chromosoma. October 1, 2007; 116 (5): 487-96.
Chromatin assembly of DNA templates microinjected into Xenopus oocytes. , Roche D, Almouzni G , Quivy JP., Methods Mol Biol. January 1, 2006; 322 139-47.
Compaction kinetics on single DNAs: purified nucleosome reconstitution systems versus crude extract. , Wagner G, Bancaud A, Quivy JP, Clapier C, Almouzni G , Viovy JL., Biophys J. November 1, 2005; 89 (5): 3647-59.
DNA synthesis-dependent and -independent chromatin assembly pathways in Xenopus egg extracts. , Ray-Gallet D, Almouzni G ., Methods Enzymol. January 1, 2004; 375 117-31.
HIRA is critical for a nucleosome assembly pathway independent of DNA synthesis. , Ray-Gallet D, Quivy JP, Scamps C, Martini EM, Lipinski M, Almouzni G ., Mol Cell. May 1, 2002; 9 (5): 1091-100.
Maintenance of nucleolar machineries and pre-rRNAs in remnant nucleolus of erythrocyte nuclei and remodeling in Xenopus egg extracts. , Verheggen C, Le Panse S, Almouzni G , Hernandez-Verdun D., Exp Cell Res. September 10, 2001; 269 (1): 23-34.
Incomplete RNA polymerase II phosphorylation in Xenopus laevis early embryos. , Palancade B, Bellier S, Almouzni G , Bensaude O., J Cell Sci. July 1, 2001; 114 (Pt 13): 2483-9.
Dimerization of the largest subunit of chromatin assembly factor 1: importance in vitro and during Xenopus early development. , Quivy JP, Grandi P, Almouzni G ., EMBO J. April 17, 2001; 20 (8): 2015-27.
Fast kinetics of chromatin assembly revealed by single-molecule videomicroscopy and scanning force microscopy. , Ladoux B, Quivy JP, Doyle P, du Roure O, Almouzni G , Viovy JL., Proc Natl Acad Sci U S A. December 19, 2000; 97 (26): 14251-6.
Tetracycline-regulated gene expression switch in Xenopus laevis. , Ridgway P, Quivy JP, Almouzni G ., Exp Cell Res. May 1, 2000; 256 (2): 392-9.
The ribosomal RNA processing machinery is recruited to the nucleolar domain before RNA polymerase I during Xenopus laevis development. , Verheggen C, Almouzni G , Hernandez-Verdun D., J Cell Biol. April 17, 2000; 149 (2): 293-306.
Hormone activation induces nucleosome positioning in vivo. , Belikov S, Gelius B, Almouzni G , Wrange O., EMBO J. March 1, 2000; 19 (5): 1023-33.
Nucleotide excision repair coupled to chromatin assembly. , Gaillard PH, Roche D, Almouzni G ., Methods Mol Biol. January 1, 1999; 119 231-43.
Presence of pre-rRNAs before activation of polymerase I transcription in the building process of nucleoli during early development of Xenopus laevis. , Verheggen C, Le Panse S, Almouzni G , Hernandez-Verdun D., J Cell Biol. September 7, 1998; 142 (5): 1167-80.
Initiation and bidirectional propagation of chromatin assembly from a target site for nucleotide excision repair. , Gaillard PHL, Moggs JG, Roche DM, Quivy JP, Becker PB, Wood RD, Almouzni G ., EMBO J. October 15, 1997; 16 (20): 6281-9.
Histone acetylation: influence on transcription, nucleosome mobility and positioning, and linker histone-dependent transcriptional repression. , Ura K, Kurumizaka H, Dimitrov S, Almouzni G , Wolffe AP ., EMBO J. April 15, 1997; 16 (8): 2096-107.
Phosphorylation of the RNA polymerase II largest subunit during Xenopus laevis oocyte maturation. , Bellier S, Dubois MF, Nishida E , Almouzni G , Bensaude O., Mol Cell Biol. March 1, 1997; 17 (3): 1434-40.
Chromatin assembly coupled to DNA repair: a new role for chromatin assembly factor I. , Gaillard PHL, Martini EM, Kaufman PD, Stillman B, Moustacchi E, Almouzni G ., Cell. September 20, 1996; 86 (6): 887-96.
The heat shock response in Xenopus oocytes, embryos, and somatic cells: a regulatory role for chromatin. , Landsberger N, Ranjan M, Almouzni G , Stump D, Wolffe AP ., Dev Biol. July 1, 1995; 170 (1): 62-74.
Constraints on transcriptional activator function contribute to transcriptional quiescence during early Xenopus embryogenesis. , Almouzni G , Wolffe AP ., EMBO J. April 18, 1995; 14 (8): 1752-65.
Histone acetylation influences both gene expression and development of Xenopus laevis. , Almouzni G , Khochbin S , Dimitrov S, Wolffe AP ., Dev Biol. October 1, 1994; 165 (2): 654-69.
Chromatin transitions during early Xenopus embryogenesis: changes in histone H4 acetylation and in linker histone type. , Dimitrov S, Almouzni G , Dasso M, Wolffe AP ., Dev Biol. November 1, 1993; 160 (1): 214-27.
Replication-coupled chromatin assembly is required for the repression of basal transcription in vivo. , Almouzni G , Wolffe AP ., Genes Dev. October 1, 1993; 7 (10): 2033-47.
TFIIIC relieves repression of U6 snRNA transcription by chromatin. , Burnol AF, Margottin F, Huet J, Almouzni G , Prioleau MN, Méchali M, Sentenac A., Nature. April 1, 1993; 362 (6419): 475-7.
Nuclear assembly, structure, and function: the use of Xenopus in vitro systems. , Almouzni G , Wolffe AP ., Exp Cell Res. March 1, 1993; 205 (1): 1-15.
Transcription factor access to DNA in the nucleosome. , Wolffe AP , Almouzni G , Ura K, Pruss D, Hayes JJ., Cold Spring Harb Symp Quant Biol. January 1, 1993; 58 225-35.
Transcription complex disruption caused by a transition in chromatin structure. , Almouzni G , Méchali M, Wolffe AP ., Mol Cell Biol. February 1, 1991; 11 (2): 655-65.
Chromatin assembly on replicating DNA in vitro. , Almouzni G , Clark DJ, Méchali M, Wolffe AP ., Nucleic Acids Res. October 11, 1990; 18 (19): 5767-74.
Genes and mechanisms involved in early embryonic development in Xenopus laevis. , Méchali M, Almouzni G , Andéol Y, Moreau J , Vriz S, Leibovici M, Hourdry J, Géraudie J, Soussi T, Gusse M., Int J Dev Biol. March 1, 1990; 34 (1): 51-9.
Competition between transcription complex assembly and chromatin assembly on replicating DNA. , Almouzni G , Méchali M, Wolffe AP ., EMBO J. February 1, 1990; 9 (2): 573-82.
Mismatch repair involving localized DNA synthesis in extracts of Xenopus eggs. , Brooks P, Dohet C, Almouzni G , Méchali M, Radman M., Proc Natl Acad Sci U S A. June 1, 1989; 86 (12): 4425-9.
Xenopus egg extracts: a model system for chromatin replication. , Almouzni G , Méchali M., Biochim Biophys Acta. December 20, 1988; 951 (2-3): 443-50.
Assembly of spaced chromatin involvement of ATP and DNA topoisomerase activity. , Almouzni G , Méchali M., EMBO J. December 20, 1988; 7 (13): 4355-65.
Oligonucleotide site-directed mutagenesis in Xenopus egg extracts. , Almouzni G , Mousseron-Grall S, Méchali M., Nucleic Acids Res. September 12, 1988; 16 (17): 8525-39.
Proto-oncogenes and embryonic development. , Méchali M, Gusse M, Vriz S, Taylor M, Andéol Y, Moreau J , Hourdry J, Leibovici M, Brulfert A, Almouzni G ., Biochimie. July 1, 1988; 70 (7): 895-8.
Assembly of spaced chromatin promoted by DNA synthesis in extracts from Xenopus eggs. , Almouzni G , Méchali M., EMBO J. March 1, 1988; 7 (3): 665-72.