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1. Cryo-EM structures of Thogoto virus polymerase reveal unique RNA transcription and replication mechanisms among orthomyxoviruses

3. JMJD3 acts in tandem with KLF4 to facilitate reprogramming to pluripotency

4. Role of Long Non-coding RNAs in Reprogramming to Induced Pluripotency

5. MyoD induced enhancer RNA interacts with hnRNPL to activate target gene transcription during myogenic differentiation

6. A DGCR8-Independent Stable MicroRNA Expression Strategy Reveals Important Functions of miR-290 and miR-183–182 Families in Mouse Embryonic Stem Cells

7. Generation of Human Liver Chimeric Mice with Hepatocytes from Familial Hypercholesterolemia Induced Pluripotent Stem Cells

8. Transcriptome-wide identification of single-stranded RNA binding proteins

9. The RNA m6A reader YTHDC1 silences retrotransposons and guards ES cell identity

10. Global Profiling of the Lysine Crotonylome in Different Pluripotent States

11. Concurrent binding to DNA and RNA facilitates the pluripotency reprogramming activity of Sox2

12. Global Profiling of the Lysine Crotonylome in Different Pluripotent States

13. Identification of mecciRNAs and their roles in the mitochondrial entry of proteins

14. β-Catenin safeguards the ground state of mouse pluripotency by strengthening the robustness of the transcriptional apparatus

15. MyoD induced enhancer RNA interacts with hnRNPL to activate target gene transcription during myogenic differentiation

16. Generation of Human Liver Chimeric Mice with Hepatocytes from Familial Hypercholesterolemia Induced Pluripotent Stem Cells

17. JMJD3 acts in tandem with KLF4 to facilitate reprogramming to pluripotency

18. The identification of mecciRNAs and their roles in mitochondrial entry of proteins

19. Structural insight into arenavirus replication machinery

20. YTHDF2/3 Are Required for Somatic Reprogramming through Different RNA Deadenylation Pathways

21. A Familial Hypercholesterolemia Human Liver Chimeric Mouse Model Using Induced Pluripotent Stem Cell-derived Hepatocytes

22. LncRNA Dum interacts with Dnmts to regulate Dppa2 expression during myogenic differentiation and muscle regeneration

23. Capturing the interactome of newly transcribed RNA

24. Malat1 regulates myogenic differentiation and muscle regeneration through modulating MyoD transcriptional activity

25. Generation of integration-free neural progenitor cells from cells in human urine

26. Fumarylacetoacetate Hydrolase Knock-out Rabbit Model for Hereditary Tyrosinemia Type 1

27. MicroRNA Cluster 302–367 Enhances Somatic Cell Reprogramming by Accelerating a Mesenchymal-to-Epithelial Transition

28. MicroRNA-192 targeting retinoblastoma 1 inhibits cell proliferation and induces cell apoptosis in lung cancer cells

29. Publisher Correction: NCoR/SMRT co-repressors cooperate with c-MYC to create an epigenetic barrier to somatic cell reprogramming

30. Linc-YY1 promotes myogenic differentiation and muscle regeneration through an interaction with the transcription factor YY1

31. The p53-induced lincRNA-p21 derails somatic cell reprogramming by sustaining H3K9me3 and CpG methylation at pluripotency gene promoters

32. Transcriptional pause release is a rate-limiting step for somatic cell reprogramming

33. The hypoxia-inducible factor renders cancer cells more sensitive to vitamin C-induced toxicity

34. Class IIa histone deacetylases and myocyte enhancer factor 2 proteins regulate the mesenchymal-to-epithelial transition of somatic cell reprogramming

35. The mesenchymal-to-epithelial transition in somatic cell reprogramming

36. MicroRNA Cluster 302-367 Enhances Somatic Cell Reprogramming by Accelerating a Mesenchymal-to- Epithelial Transition.

37. The Hypoxia-inducible Factor Renders Cancer Cells More Sensitive to Vitamin C-induced Toxicity.

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