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74 results on '"Polycomb Repressive Complex 2 metabolism"'

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1. Nuclear factor-Y-polycomb repressive complex2 dynamically orchestrates starch and seed storage protein biosynthesis in wheat.

2. Polycomb repressive complex 2 is critical for mouse cortical glutamatergic neuron development.

3. Disruption of G-quadruplex dynamicity by BRCA2 abrogation instigates phase separation and break-induced replication at telomeres.

4. Discovery of a polymorphic gene fusion via bottom-up chimeric RNA prediction.

5. Characterization of the Pristionchus pacificus "epigenetic toolkit" reveals the evolutionary loss of the histone methyltransferase complex PRC2.

6. PRC1 directs PRC2-H3K27me3 deposition to shield adult spermatogonial stem cells from differentiation.

7. DNA elements tether canonical Polycomb Repressive Complex 1 to human genes.

8. Binding by the Polycomb complex component BMI1 and H2A monoubiquitination shape local and long-range interactions in the Arabidopsis genome.

9. A cryptic transactivation domain of EZH2 binds AR and AR's splice variant, promoting oncogene activation and tumorous transformation.

10. ATRX histone binding and helicase activities have distinct roles in neuronal differentiation.

11. HDAC1 and PRC2 mediate combinatorial control in SPI1/PU.1-dependent gene repression in murine erythroleukaemia.

12. A coiled-coil protein associates Polycomb Repressive Complex 2 with KNOX/BELL transcription factors to maintain silencing of cell differentiation-promoting genes in the shoot apex.

13. The transcriptional elongation factor CTR9 demarcates PRC2-mediated H3K27me3 domains by altering PRC2 subtype equilibrium.

14. Variational autoencoding of gene landscapes during mouse CNS development uncovers layered roles of Polycomb Repressor Complex 2.

15. Fusarium BP1 is a reader of H3K27 methylation.

16. EAR domain-containing transcription factors trigger PRC2-mediated chromatin marking in Arabidopsis.

17. Single-molecule imaging of epigenetic complexes in living cells: insights from studies on Polycomb group proteins.

18. Cooperative DNA looping by PRC2 complexes.

19. A Polycomb repressive complex is required for RNAi-mediated heterochromatin formation and dynamic distribution of nuclear bodies.

20. Bimodal regulation of the PRC2 complex by USP7 underlies tumorigenesis.

21. ZFP281 recruits polycomb repressive complex 2 to restrict extraembryonic endoderm potential in safeguarding embryonic stem cell pluripotency.

22. The transcriptional repressors VAL1 and VAL2 recruit PRC2 for genome-wide Polycomb silencing in Arabidopsis.

23. Defining the Boundaries of Polycomb Domains in Drosophila .

24. Long noncoding RNA mediates stroke-induced neurogenesis.

25. Bending and looping of long DNA by Polycomb repressive complex 2 revealed by AFM imaging in liquid.

26. EZHIP/CXorf67 mimics K27M mutated oncohistones and functions as an intrinsic inhibitor of PRC2 function in aggressive posterior fossa ependymoma.

27. Prolactin Receptor Signaling Regulates a Pregnancy-Specific Transcriptional Program in Mouse Islets.

28. Distinct functions of polycomb group proteins in regulating Ci transcription in developing Drosophila.

29. Redox-Sensitive Transcription Factor NRF2 Enhances Trophoblast Differentiation via Induction of miR-1246 and Aromatase.

30. Polycomb Protein Eed is Required for Neurogenesis and Cortical Injury Activation in the Subventricular Zone.

31. PRC2 Is Dispensable in Vivo for β-Catenin-Mediated Repression of Chondrogenesis in the Mouse Embryonic Cranial Mesenchyme.

32. Conservation and diversification of polycomb repressive complex 2 (PRC2) proteins in the green lineage.

33. Reciprocal regulation of chromatin state and architecture by HOTAIRM1 contributes to temporal collinear HOXA gene activation.

34. Polycomb Repressive Complex 2 Enacts Wnt Signaling in Intestinal Homeostasis and Contributes to the Instigation of Stemness in Diseases Entailing Epithelial Hyperplasia or Neoplasia.

35. Transcriptional Regulation of Arabidopsis Polycomb Repressive Complex 2 Coordinates Cell-Type Proliferation and Differentiation.

36. The Trans-Spliced Long Noncoding RNA tsRMST Impedes Human Embryonic Stem Cell Differentiation Through WNT5A-Mediated Inhibition of the Epithelial-to-Mesenchymal Transition.

37. The long noncoding RNA Gm15055 represses Hoxa gene expression by recruiting PRC2 to the gene cluster.

38. Mediator complex cooperatively regulates transcription of retinoic acid target genes with Polycomb Repressive Complex 2 during neuronal differentiation.

39. Loss of EZH2 results in precocious mammary gland development and activation of STAT5-dependent genes.

40. DDB2 modulates TGF-β signal transduction in human ovarian cancer cells by downregulating NEDD4L.

41. TET1 is controlled by pluripotency-associated factors in ESCs and downmodulated by PRC2 in differentiated cells and tissues.

42. PRC2 regulates RNA polymerase III transcribed non-translated RNA gene transcription through EZH2 and SUZ12 interaction with TFIIIC complex.

43. A fine balance: epigenetic control of cellular quiescence by the tumor suppressor PRDM2/RIZ at a bivalent domain in the cyclin a gene.

44. Splicing of a non-coding antisense transcript controls LEF1 gene expression.

45. Expression and Dendritic Trafficking of BDNF-6 Splice Variant are Impaired in Knock-In Mice Carrying Human BDNF Val66Met Polymorphism.

46. PCAF-primed EZH2 acetylation regulates its stability and promotes lung adenocarcinoma progression.

47. Epidaurus: aggregation and integration analysis of prostate cancer epigenome.

48. AGO2 and SETDB1 cooperate in promoter-targeted transcriptional silencing of the androgen receptor gene.

49. Targeting histone methyltransferase EZH2 as cancer treatment.

50. SSX2 is a novel DNA-binding protein that antagonizes polycomb group body formation and gene repression.

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