2004
DOI: 10.1074/jbc.m400925200
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Reductions in Linker Histone Levels Are Tolerated in Developing Spermatocytes but Cause Changes in Specific Gene Expression

Abstract: H1 linker histones are involved in packaging chromatin into 30-nm fibers and higher order structures. Most eukaryotic cells contain nearly one H1 molecule for each nucleosome core particle. Male germ cells in mammals contain large amounts of a germ cell-specific linker histone, HIST1HT, herein denoted H1t, which is particularly abundant in pachytene spermatocytes. Despite its abundance in male germ cells and significant divergence in primary sequence from other H1 subtypes, inactivation of the H1t gene in mice… Show more

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Cited by 48 publications
(46 citation statements)
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References 45 publications
(55 reference statements)
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“…This allows H1 to bind at random sites and inhibit transcription. Consistent with this idea, transcription profiling of H1 knock-out cells indicates effects on very few genes when compared with the wild-type cells in mice (25). Along with the transcriptional repression on transiently transfected DNA, H1 overexpression resulted in structural changes of the template as evidenced by reduced restriction enzyme accessibility.…”
Section: Discussionsupporting
confidence: 59%
“…This allows H1 to bind at random sites and inhibit transcription. Consistent with this idea, transcription profiling of H1 knock-out cells indicates effects on very few genes when compared with the wild-type cells in mice (25). Along with the transcriptional repression on transiently transfected DNA, H1 overexpression resulted in structural changes of the template as evidenced by reduced restriction enzyme accessibility.…”
Section: Discussionsupporting
confidence: 59%
“…In addition, recent studies using electrospray mass spectrometry demonstrate that prolonged glucocorticoid treatment leads to dephosphorylation of specific histone H1 isoforms in mouse cells (Banks et al 2001). While in vivo data as to the effects of linker histone H1 in NR-mediated gene regulation are still lacking, linker histones are essential for mouse development and play a role in spermatogenesis, biological processes known to be regulated by NRs (Fan & Skoultchi 2003, Lin Q. et al 2004. In particular, inactivation of three mouse histone H1 isoforms (H1·2, Figure 2 Model for the role of the ubiquitin-proteasome system in NR-mediated chromatin structure modification and transcriptional regulation.…”
Section: Ubiquitin-proteasome and Nr-dependent Chromatin Remodeling: mentioning
confidence: 99%
“…However, other studies suggest that H1 can have both positive and negative effects on gene expression (Shen and Gorovsky 1996;Lin et al 2004;Fan et al 2005). To test the role of H1 on transcriptional silencing in vivo in Drosophila, we analyzed the effect of H1 depletion on PEV.…”
Section: Linker Histone H1 Is Essential For Drosophila Developmentmentioning
confidence: 99%