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The nuclear matrix protein CIZ1 facilitates localization of Xist RNA to the inactive X-chromosome territory.

Genes Dev. 2017 May 01;31(9):876-888. Epub 2017 May 25
Rebeca Ridings-Figueroa 1 , Emma R Stewart 1 , Tatyana B Nesterova 2 , Heather Coker 2 , Greta Pintacuda 2 , Jonathan Godwin 2 , Rose Wilson 1 , Aidan Haslam 1 , Fred Lilley 1 , Renate Ruigrok 3 , Sumia A Bageghni 3 , Ghadeer Albadrani 4 , William Mansfield 5 , Jo-An Roulson 6 , Neil Brockdorff 2 , Justin F X Ainscough 3 , Dawn Coverley 1
Rebeca Ridings-Figueroa 1 , Emma R Stewart 1 , Tatyana B Nesterova 2 , Heather Coker 2 , Greta Pintacuda 2 , Jonathan Godwin 2 , Rose Wilson 1 , Aidan Haslam 1 , Fred Lilley 1 , Renate Ruigrok 3 , Sumia A Bageghni 3 , Ghadeer Albadrani 4 , William Mansfield 5 , Jo-An Roulson 6 , Neil Brockdorff 2 , Justin F X Ainscough 3 , Dawn Coverley 1
+ et al

[No authors listed]

Author information
  • 1 Department of Biology, University of York, York YO10 5DD, United Kingdom.
  • 2 Department of Biochemistry, University of Oxford, Oxford OX1 3QU, United Kingdom.
  • 3 Leeds Institute of Cardiovascular and Metabolic Medicine (LICAMM), University of Leeds, Leeds LS2 9JT, United Kingdom.
  • 4 Princess Nourah Bint Abdulrahman University (PNU), Riyadh, Kingdom of Saudi Arabia.
  • 5 Stem Cell Institute, University of Cambridge, Cambridge CB2 1QR, United Kingdom.
  • 6 Leeds Institute of Molecular Medicine (LIMM), University of Leeds, Leeds LS9 7TF, United Kingdom.

摘要


The nuclear matrix protein Cip1-interacting zinc finger protein 1 (CIZ1) promotes DNA replication in association with cyclins and has been linked to adult and pediatric cancers. Here we show that CIZ1 is highly enriched on the inactive X chromosome (Xi) in mouse and human female cells and is retained by interaction with the RNA-dependent nuclear matrix. CIZ1 is recruited to Xi in response to expression of X inactive-specific transcript (Xist) RNA during the earliest stages of X inactivation in embryonic stem cells and is dependent on the C-terminal nuclear matrix anchor domain of CIZ1 and the E repeats of Xist CIZ1-null mice, although viable, display fully penetrant female-specific lymphoproliferative disorder. Interestingly, in mouse embryonic fibroblast cells derived from CIZ1-null embryos, Xist RNA localization is disrupted, being highly dispersed through the nucleoplasm rather than focal. Focal localization is reinstated following re-expression of CIZ1. Focal localization of Xist RNA is also disrupted in activated B and T cells isolated from CIZ1-null animals, suggesting a possible explanation for female-specific lymphoproliferative disorder. Together, these findings suggest that CIZ1 has an essential role in anchoring Xist to the nuclear matrix in specific somatic lineages.

KEYWORDS: CIZ1, X-chromosome inactivation, Xist, lymphoproliferative disorder, nuclear matrix