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1. Rio1 downregulates centromeric RNA levels to promote the timely assembly of structurally fit kinetochores

2. CAG repeat expansion in the Huntington's disease gene shapes linear and circular RNAs biogenesis.

4. Human dyskerin binds to cytoplasmic H/ACA-box-containing transcripts affecting nuclear hormone receptor dependence

5. hnRNP H/F drive RNA G-quadruplex-mediated translation linked to genomic instability and therapy resistance in glioblastoma

6. The Architecture of the Human RNA-Binding Protein Regulatory Network

7. Sleeping beauty genetic screen identifies miR-23b::BTBD7 gene interaction as crucial for colorectal cancer metastasisResearch in context

8. Multilayer and MATR3-dependent regulation of mRNAs maintains pluripotency in human induced pluripotent stem cells

10. Translation control can shape TP53-dependent cell fate

11. Hyperconserved Elements in Human 5′UTRs Shape Essential Post-transcriptional Regulatory Networks

12. A Community Study of SARS-CoV-2 Detection by RT-PCR in Saliva: A Reliable and Effective Method

14. Handshakes and Fights: The Regulatory Interplay of RNA-Binding Proteins

15. Multi-omic profiling of MYCN-amplified neuroblastoma cell-lines

17. MODOMICS: a database of RNA modification pathways. 2021 update.

18. CHD8suppression impacts on histone H3 lysine 36 trimethylation and alters RNA alternative splicing

19. Alterations of ribosomal RNA pseudouridylation in human breast cancer

20. The BioMart community portal: an innovative alternative to large, centralized data repositories.

21. D12 Faulty linear and back-splicing in Huntington’s disease: novel players in the pathologic process hint at innovative RNA biomarkers

23. Genome-wide dynamics of RNA synthesis, processing, and degradation without RNA metabolic labeling

25. Small-Molecule Ebselen Binds to YTHDF Proteins Interfering with the Recognition of

27. Defective linear and circular RNAs biogenesis in Huntington’s disease: CAG repeat expansion hijacks neuronal splicing

28. MODOMICS: a database of RNA modification pathways. 2021 update

31. Introduction to Bioinformatics Resources for Post-transcriptional Regulation of Gene Expression

32. D03 Circular rnas as potential biomarkers in huntington’s disease pathogenesis

33. A04 Circhtt, a circular rna from the huntington’s disease gene locus: functional characterization and possible implications for disease modulation

34. The Architecture of the Human RNA-Binding Protein Regulatory Network

35. DHX30 Coordinates Cytoplasmic Translation and Mitochondrial Function Contributing to Cancer Cell Survival

36. The pseudouridine synthase dyskerin binds to cytoplasmic H/ACA-box snoRNA retaining transcripts affecting nuclear hormone receptor dependence

37. Ythdf is a N6‐methyladenosine reader that modulates Fmr1 target mRNA selection and restricts axonal growth in Drosophila

38. A mark of disease: how mRNA modifications shape genetic and acquired pathologies

39. Translation reprogramming by eIF3 linked to glioblastoma resistance

40. Hyperconserved Elements in Human 5′UTRs Shape Essential Post-transcriptional Regulatory Networks

41. G-Quadruplexes in RNA Biology: Recent Advances and Future Directions

42. DHX30 coordinates cytoplasmic translation and mitochondrial function contributing to cancer cell survival

43. Nutlin-Induced Apoptosis Is Specified by a Translation Program Regulated by PCBP2 and DHX30

44. MATR3-Dependent Multilayer Regulation of OCT4, NANOG and LIN28A is Essential for the Maintenance of the Human Pluripotency

45. p53-induced apoptosis is specified by a translation program regulated by PCBP2 and DHX30

46. Polyglutamine-expanded androgen receptor disrupts muscle triad, calcium dynamics and the excitation-contraction coupling gene expression program

47. Author Correction: hnRNP H/F drive RNA G-quadruplex-mediated translation linked to genomic instability and therapy resistance in glioblastoma

48. A05 Alterations in linear and back-splicing as new players in huntington’s disease pathogenesis

49. An homeotic post-transcriptional network controlled by the RNA-binding protein RBMX

50. Exploring the Role of Fallopian Ciliated Cells in the Pathogenesis of High-Grade Serous Ovarian Cancer

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