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1. A mouse model of ATRX deficiency with cognitive deficits and autistic traits.

2. Systemic and intrinsic functions of ATRX in glial cell fate and CNS myelination in male mice.

3. Selective isolation of mouse glial nuclei optimized for reliable downstream omics analyses.

4. Atrx Deletion in Neurons Leads to Sexually Dimorphic Dysregulation of miR-137 and Spatial Learning and Memory Deficits.

5. Effects of a postnatal Atrx conditional knockout in neurons on autism-like behaviours in male and female mice.

6. Inactivation of ATRX in forebrain excitatory neurons affects hippocampal synaptic plasticity.

7. Histone deacetylase 1 and 2 drive differentiation and fusion of progenitor cells in human placental trophoblasts.

8. CTCF Governs the Identity and Migration of MGE-Derived Cortical Interneurons.

9. Inactivation of hepatic ATRX in Atrx Foxg1cre mice prevents reversal of aging-like phenotypes by thyroxine.

10. Epigenetic Etiology of Intellectual Disability.

11. Identification of epigenetic signature associated with alpha thalassemia/mental retardation X-linked syndrome.

12. Mosaic expression of Atrx in the mouse central nervous system causes memory deficits.

13. A new prescription for growth? Statins, cholesterol and cartilage homeostasis.

14. ATRX promotes gene expression by facilitating transcriptional elongation through guanine-rich coding regions.

15. Emerging roles of ATRX in cancer.

16. ATRX is required for maintenance of the neuroprogenitor cell pool in the embryonic mouse brain.

17. Implantation failure in female Kiss1-/- mice is independent of their hypogonadic state and can be partially rescued by leukemia inhibitory factor.

18. Analysis of neonatal brain lacking ATRX or MeCP2 reveals changes in nucleosome density, CTCF binding and chromatin looping.

19. Three dimensional dual labelled DNA fluorescent in situ hybridization analysis in fixed tissue sections.

20. Dual effect of CTCF loss on neuroprogenitor differentiation and survival.

21. Loss of ATRX does not confer susceptibility to osteoarthritis.

22. Targeted loss of the ATR-X syndrome protein in the limb mesenchyme of mice causes brachydactyly.

23. Atrx deficiency induces telomere dysfunction, endocrine defects, and reduced life span.

24. Epigenetics, eh! A meeting summary of the Canadian Conference on Epigenetics.

25. ATRX in chromatin assembly and genome architecture during development and disease.

26. Genetic and epigenetic dysregulation of imprinted genes in the brain.

27. ATRX partners with cohesin and MeCP2 and contributes to developmental silencing of imprinted genes in the brain.

28. Loss of ATRX in chondrocytes has minimal effects on skeletal development.

29. Altered visual function and interneuron survival in Atrx knockout mice: inference for the human syndrome.

30. Neuronal death resulting from targeted disruption of the Snf2 protein ATRX is mediated by p53.

31. The SWI/SNF protein ATRX co-regulates pseudoautosomal genes that have translocated to autosomes in the mouse genome.

32. Transcriptional regulators of chondrocyte hypertrophy.

33. Patient mutations alter ATRX targeting to PML nuclear bodies.

34. Loss of ATRX leads to chromosome cohesion and congression defects.

35. Down-regulation of CD9 expression during prostate carcinoma progression is associated with CD9 mRNA modifications.

36. The retinoblastoma protein regulates pericentric heterochromatin.

37. The chromatin-remodeling protein ATRX is critical for neuronal survival during corticogenesis.

38. Neurodevelopmental defects resulting from ATRX overexpression in transgenic mice.

39. Cell cycle-dependent phosphorylation of the ATRX protein correlates with changes in nuclear matrix and chromatin association.

41. Identification of a gene that reverses the immortal phenotype of a subset of cells and is a member of a novel family of transcription factor-like genes.

42. Cloning and characterization of CRF, a novel C1q-related factor, expressed in areas of the brain involved in motor function.

43. The genetics of cellular senescence.

44. Construction and analysis of microcell hybrids containing dual selectable tagged human chromosomes.

45. Suppression of tumorigenicity of human prostate cancer cells by introduction of human chromosome del(12)(q13).

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