Click here to close
Hello! We notice that you are using Internet Explorer, which is not supported by Xenbase and may cause the site to display incorrectly.
We suggest using a current version of Chrome,
FireFox, or Safari.
Proc Natl Acad Sci U S A
2005 Apr 19;10216:5697-702. doi: 10.1073/pnas.0409824102.
Show Gene links
Show Anatomy links
Linker histone variants control chromatin dynamics during early embryogenesis.
Saeki H
,
Ohsumi K
,
Aihara H
,
Ito T
,
Hirose S
,
Ura K
,
Kaneda Y
.
???displayArticle.abstract???
Complex transitions in chromatin structure produce changes in genome function during development in metazoa. Linker histones, the last component of nucleosomes to be assembled into chromatin, comprise considerably divergent subtypes as compared with core histones. In all metazoa studied, their composition changes dramatically during early embryogenesis concomitant with zygotic gene activation, leading to distinct functional changes that are still poorly understood. Here, we show that early embryonic linker histone B4, which is maternally expressed, is functionally different from somatic histone H1 in influencing chromatin structure and dynamics. We developed a chromatin assembly system with nucleosome assembly protein-1 as a linker histone chaperone. This assay system revealed that maternal histone B4 allows chromatin to be remodeled by ATP-dependent chromatin remodeling factor, whereas somatic histone H1 prevents this remodeling. Structural analysis shows that histone B4 does not significantly restrict the accessibility of linker DNA. These findings define the functional significance of developmental changes in linker histone variants. We propose a model that holds that maternally expressed linker histones are key molecules specifying nuclear dynamics with respect to embryonic totipotency.
Becker,
ATP-dependent nucleosome remodeling.
2002,
Pubmed
Brehm,
dMi-2 and ISWI chromatin remodelling factors have distinct nucleosome binding and mobilization properties.
2000,
Pubmed
Fan,
Distinct strategies to make nucleosomal DNA accessible.
2003,
Pubmed
Felsenfeld,
Controlling the double helix.
2003,
Pubmed
Gurdon,
Nuclear reprogramming and stem cell creation.
2003,
Pubmed
,
Xenbase
Hayes,
Preferential and asymmetric interaction of linker histones with 5S DNA in the nucleosome.
1993,
Pubmed
,
Xenbase
Horn,
Phosphorylation of linker histones regulates ATP-dependent chromatin remodeling enzymes.
2002,
Pubmed
,
Xenbase
Ishimi,
Purification and initial characterization of a protein which facilitates assembly of nucleosome-like structure from mammalian cells.
1984,
Pubmed
,
Xenbase
Ito,
Drosophila NAP-1 is a core histone chaperone that functions in ATP-facilitated assembly of regularly spaced nucleosomal arrays.
1996,
Pubmed
Ito,
ACF, an ISWI-containing and ATP-utilizing chromatin assembly and remodeling factor.
1997,
Pubmed
Ito,
ACF consists of two subunits, Acf1 and ISWI, that function cooperatively in the ATP-dependent catalysis of chromatin assembly.
1999,
Pubmed
Jenuwein,
Translating the histone code.
2001,
Pubmed
Konishi,
Involvement of histone H1.2 in apoptosis induced by DNA double-strand breaks.
2003,
Pubmed
Lee,
MSX1 cooperates with histone H1b for inhibition of transcription and myogenesis.
2004,
Pubmed
,
Xenbase
Malik,
Phylogenomics of the nucleosome.
2003,
Pubmed
Ohsumi,
Occurrence of H1 subtypes specific to pronuclei and cleavage-stage cell nuclei of anuran amphibians.
1991,
Pubmed
,
Xenbase
Ohsumi,
Characterization of the ooplasmic factor inducing decondensation of and protamine removal from toad sperm nuclei: involvement of nucleoplasmin.
1991,
Pubmed
,
Xenbase
Smith,
Expression of a histone H1-like protein is restricted to early Xenopus development.
1988,
Pubmed
,
Xenbase
Steinbach,
Somatic linker histones cause loss of mesodermal competence in Xenopus.
1997,
Pubmed
,
Xenbase
Tanaka,
A mammalian oocyte-specific linker histone gene H1oo: homology with the genes for the oocyte-specific cleavage stage histone (cs-H1) of sea urchin and the B4/H1M histone of the frog.
2001,
Pubmed
Teranishi,
Rapid replacement of somatic linker histones with the oocyte-specific linker histone H1foo in nuclear transfer.
2004,
Pubmed
,
Xenbase
Ura,
Differential association of HMG1 and linker histones B4 and H1 with dinucleosomal DNA: structural transitions and transcriptional repression.
1996,
Pubmed
,
Xenbase
Ura,
ATP-dependent chromatin remodeling facilitates nucleotide excision repair of UV-induced DNA lesions in synthetic dinucleosomes.
2001,
Pubmed
Ura,
A positive role for nucleosome mobility in the transcriptional activity of chromatin templates: restriction by linker histones.
1995,
Pubmed
,
Xenbase
Vaquero,
Human SirT1 interacts with histone H1 and promotes formation of facultative heterochromatin.
2004,
Pubmed
Wolffe,
What do linker histones do in chromatin?
1997,
Pubmed
Zhou,
Position and orientation of the globular domain of linker histone H5 on the nucleosome.
1998,
Pubmed