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Publication : Mammalian ChlR1 has a role in heterochromatin organization.

First Author  Inoue A Year  2011
Journal  Exp Cell Res Volume  317
Issue  17 Pages  2522-35
PubMed ID  21854770 Mgi Jnum  J:178401
Mgi Id  MGI:5298300 Doi  10.1016/j.yexcr.2011.08.006
Citation  Inoue A, et al. (2011) Mammalian ChlR1 has a role in heterochromatin organization. Exp Cell Res 317(17):2522-35
abstractText  The ChlR1 DNA helicase, encoded by DDX11 gene, which is responsible for Warsaw breakage syndrome (WABS), has a role in sister-chromatid cohesion. In this study, we show that human ChlR1 deficient cells exhibit abnormal heterochromatin organization. While constitutive heterochromatin is discretely localized at perinuclear and perinucleolar regions in control HeLa cells, ChlR1-depleted cells showed dispersed localization of constitutive heterochromatin accompanied by disrupted centromere clustering. Cells isolated from Ddx11(-/-) embryos also exhibited diffuse localization of centromeres and heterochromatin foci. Similar abnormalities were found in HeLa cells depleted of combinations of HP1alpha and HP1beta. Immunofluorescence and chromatin immunoprecipitation showed a decreased level of HP1alpha at pericentric regions in ChlR1-depleted cells. Trimethyl-histone H3 at lysine 9 (H3K9-me3) was also modestly decreased at pericentric sequences. The abnormality in pericentric heterochromatin was further supported by decreased DNA methylation within major satellite repeats of Ddx11(-/-) embryos. Furthermore, micrococcal nuclease (MNase) assay revealed a decreased chromatin density at the telomeres. These data suggest that in addition to a role in sister-chromatid cohesion, ChlR1 is also involved in the proper formation of heterochromatin, which in turn contributes to global nuclear organization and pleiotropic effects.
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