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38 results on '"Methyl-CpG-Binding Protein 2 metabolism"'

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1. Computational analysis of memory consolidation following inhibitory avoidance (IA) training in adult and infant rats: Critical roles of CaMKIIα and MeCP2.

2. Epigenetic marks and their relationship with BDNF in the brain of suicide victims.

3. A novel sensitive detection method for DNA methylation in circulating free DNA of pancreatic cancer.

4. Somatic LINE-1 retrotransposition in cortical neurons and non-brain tissues of Rett patients and healthy individuals.

5. Experience-dependent MeCP2 expression in the excitatory cells of mouse visual thalamus.

6. MeCP2 recognizes cytosine methylated tri-nucleotide and di-nucleotide sequences to tune transcription in the mammalian brain.

7. μ Opioid Receptor Expression after Morphine Administration Is Regulated by miR-212/132 Cluster.

8. Wnt Pathway Stabilizes MeCP2 Protein to Repress PPAR-γ in Activation of Hepatic Stellate Cells.

9. MECP2 Duplication Syndrome: Evidence of Enhanced Oxidative Stress. A Comparison with Rett Syndrome.

10. Circadian cycle-dependent MeCP2 and brain chromatin changes.

11. Fetal alcohol exposure alters proopiomelanocortin gene expression and hypothalamic-pituitary-adrenal axis function via increasing MeCP2 expression in the hypothalamus.

12. Diabetic osteopenia by decreased β-catenin signaling is partly induced by epigenetic derepression of sFRP-4 gene.

13. Epigenetic upregulation of corticotrophin-releasing hormone mediates postnatal maternal separation-induced memory deficiency.

14. Polycomb binding precedes early-life stress responsive DNA methylation at the Avp enhancer.

15. Brain region-specific expression of MeCP2 isoforms correlates with DNA methylation within Mecp2 regulatory elements.

16. Molecular mechanisms mediating a deficit in recall of fear extinction in adult mice exposed to cocaine in utero.

17. A role for MeCP2 in switching gene activity via chromatin unfolding and HP1γ displacement.

18. MeCP2 regulates the synaptic expression of a Dysbindin-BLOC-1 network component in mouse brain and human induced pluripotent stem cell-derived neurons.

19. Multiple-to-multiple relationships between microRNAs and target genes in gastric cancer.

20. Direct homo- and hetero-interactions of MeCP2 and MBD2.

21. The essential role of Mbd5 in the regulation of somatic growth and glucose homeostasis in mice.

22. Drosophila as a model for MECP2 gain of function in neurons.

23. Cell-autonomous alterations in dendritic arbor morphology and connectivity induced by overexpression of MeCP2 in Xenopus central neurons in vivo.

24. Alterations of gene expression and glutamate clearance in astrocytes derived from an MeCP2-null mouse model of Rett syndrome.

25. MeCP2 dependent heterochromatin reorganization during neural differentiation of a novel Mecp2-deficient embryonic stem cell reporter line.

26. Acetyl-L-carnitine improves behavior and dendritic morphology in a mouse model of Rett syndrome.

27. Novel MeCP2 isoform-specific antibody reveals the endogenous MeCP2E1 expression in murine brain, primary neurons and astrocytes.

28. Elevated IKKα accelerates the differentiation of human neuronal progenitor cells and induces MeCP2-dependent BDNF expression.

29. Interplay between SIN3A and STAT3 mediates chromatin conformational changes and GFAP expression during cellular differentiation.

30. Co-localization of the oncogenic transcription factor MYCN and the DNA methyl binding protein MeCP2 at genomic sites in neuroblastoma.

31. Transgenic miR132 alters neuronal spine density and impairs novel object recognition memory.

33. The methyl-CpG binding proteins Mecp2, Mbd2 and Kaiso are dispensable for mouse embryogenesis, but play a redundant function in neural differentiation.

34. A temporal threshold for formaldehyde crosslinking and fixation.

35. Genetic modifiers of MeCP2 function in Drosophila.

36. Mecp2-null mice provide new neuronal targets for Rett syndrome.

37. High levels of MeCP2 depress MHC class I expression in neuronal cells.

38. Metabolic fingerprints of altered brain growth, osmoregulation and neurotransmission in a Rett syndrome model.

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