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(2005)
Fluorescent analysis of Drosophila embryos. W
B. Loppin, Emilie Bonnefoy, C. Anselme, A. Laurençon, T. Karr, P. Couble (2005)
The histone H3.3 chaperone HIRA is essential for chromatin assembly in the male pronucleusNature, 437
Sunil Raja, R. Renkawitz-Pohl (2005)
Replacement by Drosophila melanogaster Protamines and Mst77F of Histones during Chromatin Condensation in Late Spermatids and Role of Sesame in the Removal of These Proteins from the Male PronucleusMolecular and Cellular Biology, 25
(1996)
Dev. Biol
G. Callaini, M. Riparbelli (1996)
Fertilization in Drosophila melanogaster: centrosome inheritance and organization of the first mitotic spindle.Developmental biology, 176 2
For Drosophila genetics information, see FlyBase.org
A. Loyola, Jing-Yi Huang, G. Leroy, Sherrie Hu, Yuh-Hwa Wang, R. Donnelly, William Lane, Sheng‐Chung Lee, D. Reinberg (2003)
Functional Analysis of the Subunits of the Chromatin Assembly Factor RSFMolecular and Cellular Biology, 23
(1997)
Nature
T. Swartz, T. Tseng, Marcus Frederickson, Gastón Paris, D. Comerci, G. Rajashekara, Jung-Gun Kim, M. Mudgett, G. Splitter, R. Ugalde, F. Goldbaum, W. Briggs, R. Bogomolni (2007)
Blue-Light-Activated Histidine Kinases: Two-Component Sensors in BacteriaScience, 317
(1200)
Copyright 2016 by the American Association for the in December
Takashi Ito, Mark Levenstein, Dmitry Fyodorov, Alan Kutach, Ryuji Kobayashi, J. Kadonaga (1999)
ACF consists of two subunits, Acf1 and ISWI, that function cooperatively in the ATP-dependent catalysis of chromatin assembly.Genes & development, 13 12
Jingji Jin, Yong Cai, Bing Li, R. Conaway, J. Workman, J. Conaway, T. Kusch (2005)
In and out: histone variant exchange in chromatin.Trends in biochemical sciences, 30 12
Materials and methods are available as supporting material on Science Online
T. Woodage, M. Basrai, A. Baxevanis, P. Hieter, F. Collins (1997)
Characterization of the CHD family of proteins.Proceedings of the National Academy of Sciences of the United States of America, 94 21
H. Tagami, D. Ray-Gallet, G. Almouzni, Y. Nakatani (2004)
Histone H3.1 and H3.3 Complexes Mediate Nucleosome Assembly Pathways Dependent or Independent of DNA SynthesisCell, 116
(2005)
Nat. Struct. Mol. Biol
D. Fyodorov, J. Kadonaga (2001)
The Many Faces of Chromatin Remodeling SWItching beyond TranscriptionCell, 106
A. Lusser, D. Urwin, J. Kadonaga (2005)
Distinct activities of CHD1 and ACF in ATP-dependent chromatin assemblyNature Structural &Molecular Biology, 12
K. Ahmad, S. Henikoff (2002)
The histone variant H3.3 marks active chromatin by replication-independent nucleosome assembly.Molecular cell, 9 6
(2005)
Trends Biochem. Sci
S. Henikoff, K. Ahmad (2005)
Assembly of variant histones into chromatin.Annual review of cell and developmental biology, 21
R. Deuring, L. Fanti, Jennifer Armstrong, Melinda Sarte, O. Papoulas, Matthias Prestel, G. Daubresse, M. Verardo, Sarah Moseley, M. Berloco, T. Tsukiyama, Carl Wu, S. Pimpinelli, J. Tamkun (2000)
The ISWI chromatin-remodeling protein is required for gene expression and the maintenance of higher order chromatin structure in vivo.Molecular cell, 5 2
We thank M. Goralik-Schramel for technical assistance
R. Sims, R. Belotserkovskaya, D. Reinberg (2004)
Elongation by RNA polymerase II: the short and long of it.Genes & development, 18 20
M. Torres-Padilla, Andrew Bannister, P. Hurd, T. Kouzarides, M. Zernicka-Goetz (2006)
Dynamic distribution of the replacement histone variant H3.3 in the mouse oocyte and preimplantation embryos.The International journal of developmental biology, 50 5
J. Walfridsson, P. Bjerling, Maria Thalen, E. Yoo, S. Park, K. Ekwall (2005)
The CHD remodeling factor Hrp1 stimulates CENP-A loading to centromeresNucleic Acids Research, 33
姚利晓, 蔡幼民, 林矫矫, 刘金明 (2005)
IL-13受体α2降低血吸虫病肉芽肿的炎症反应并延长宿主存活时间[英]/Mentink-Kane MM,Cheever AW,Thompson RW,et al//Proc Natl Acad Sci U S A, 32
(2005)
Nucleic Acids Res
(1999)
Genes Dev
(2000)
Mol. Cell
Skoultchi for critical reading of the manuscript and A. Tokareva for References
P. Varga-Weisz, M. Wilm, E. Bonte, Katia Dumas, M. Mann, P. Becker (1997)
Chromatin-remodelling factor CHRAC contains the ATPases ISWI and topoisomerase IINature, 388
Science – Unpaywall
Published: Aug 24, 2007
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