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82 results on '"DHX36"'

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1. Differential Gene Expression following DHX36 / G4R1 Knockout Is Associated with G-Quadruplex Content and Cancer.

2. piR-36249 and DHX36 together inhibit testicular cancer cells progression by upregulating OAS2

3. DHX36 maintains genomic integrity by unwinding G‐quadruplexes.

4. To unwind the biological knots: The DNA/RNA G‐quadruplex resolvase RHAU (DHX36) in development and disease

5. A Cytoplasm‐Specific Fluorescent Ligand for Selective Imaging of RNA G‐Quadruplexes in Live Cancer Cells.

6. An RNA G‐Quadruplex Structure within the ADAR 5′UTR Interacts with DHX36 Helicase to Regulate Translation.

7. DNA/RNA helicase DHX36 is required for late stages of spermatogenesis.

8. Kinetics measurements of G-quadruplex binding and unfolding by helicases.

9. Mechanism of recognition of parallel G-quadruplexes by DEAH/RHAU helicase DHX36 explored by molecular dynamics simulations

10. The G4 Resolvase DHX36 Possesses a Prognosis Significance and Exerts Tumour Suppressing Function Through Multiple Causal Regulations in Non-Small Cell Lung Cancer

11. The G4 Resolvase DHX36 Possesses a Prognosis Significance and Exerts Tumour Suppressing Function Through Multiple Causal Regulations in Non-Small Cell Lung Cancer.

12. RNA G-quadruplex regulates microRNA-26a biogenesis and function.

13. Exploring the biological roles of DHX36, a DNA/RNA G-quadruplex helicase, highlights functions in male infertility: A comprehensive review.

14. Structural Basis of DEAH/RHA Helicase Activity.

15. G-quadruplexes unfolding by RHAU helicase.

16. DHX36 prevents the accumulation of translationally inactive mRNAs with G4-structures in untranslated regions

17. RNA G-quadruplex is resolved by repetitive and ATP-dependent mechanism of DHX36

18. Structural Basis of DEAH/RHA Helicase Activity

19. The RNA helicase DHX36–G4R1 modulates C9orf72 GGGGCC hexanucleotide repeat–associated translation

20. DNA/RNA helicase DHX36 is required for late stages of spermatogenesis.

21. Insights into G-quadruplex specific recognition by the DEAH-box helicase RHAU: Solution structure of a peptide-quadruplex complex.

22. G4-PROTAC: targeted degradation of a G-quadruplex binding protein

23. Lockd promotes myoblast proliferation and muscle regeneration via binding with DHX36 to facilitate 5′ UTR rG4 unwinding and Anp32e translation.

24. The DEAH-box helicase DHX36 mediates dendritic localization of the neuronal precursor-microRNA-134.

25. Function of Auxiliary Domains of the DEAH/RHA Helicase DHX36 in RNA Remodeling

26. Cytosolic sensors for pathogenic viral and bacterial nucleic acids in fish

27. DHX36, BAX, and ARPC1B May Be Critical for the Diagnosis and Treatment of Tuberculosis

28. A 5’ UTR G-quadruplex controls localisation and translation of a potassium leak channel mRNA

29. G-Quadruplexes and the DNA/RNA helicase DHX36 in health, disease, and aging.

30. RNA G-quadruplexes mark repressive upstream open reading frames in human mRNAs

31. Yin Yang 1 contains G-quadruplex structures in its promoter and 5′-UTR and its expression is modulated by G4 resolvase 1

32. The DEAH-box RNA helicase RHAU binds an intramolecular RNA G‐quadruplex in TERC and associates with telomerase holoenzyme

33. G4 Resolvase 1 tightly binds and unwinds unimolecular G4-DNA

34. A G-quadruplex DNA-affinity Approach for Purification of Enzymatically Active G4 Resolvase1

35. Correction to: RNA G-quadruplexes at upstream open reading frames cause DHX36- and DHX9-dependent translation of human mRNAs

36. General and Target-Specific DExD/H RNA Helicases in Eukaryotic Translation Initiation.

37. Using Magnetic Tweezers to Unravel the Mechanism of the G-quadruplex Binding and Unwinding Activities of DHX36 Helicase.

38. Identification of DHX36 as a tumour suppressor through modulating the activities of the stress-associated proteins and cyclin-dependent kinases in breast cancer.

39. Recognition of different base tetrads by RHAU (DHX36): X-ray crystal structure of the G4 recognition motif bound to the 3′-end tetrad of a DNA G-quadruplex.

40. Molecular characterization and expression of the teleost cytosolic DNA sensor genes cGAS, LSm14A, DHX9, and DHX36 in Japanese medaka, Oryzias latipes.

41. Insights into G-quadruplex specific recognition by the DEAH-box helicase RHAU: Solution structure of a peptide–quadruplex complex

42. Quadruplex DNA: sequence, topology and structure

43. Dead-box proteins: a family affair—active and passive players in RNP-remodeling

44. QGRS Mapper: a web-based server for predicting G-quadruplexes in nucleotide sequences

46. Binding of G-quadruplexes to the N-terminal Recognition Domain of the RNA Helicase Associated with AU-rich Element (RHAU)*

47. The DEAH-box helicase DHX36 mediates dendritic localization of the neuronal precursor-microRNA-134

48. Quantitative Visualization of DNA G-quadruplex Structures in Human Cells

49. DExD/H-box RNA helicases as mediators of anti-viral innate immunity and essential host factors for viral replication

50. The 5′ Guanosine Tracts of Human Telomerase RNA Are Recognized by the G-Quadruplex Binding Domain of the RNA Helicase DHX36 and Function To Increase RNA Accumulation ▿

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