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564 results on '"Methyltransferases metabolism"'

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1. U6 snRNA m6A modification is required for accurate and efficient splicing of C. elegans and human pre-mRNAs.

2. Regulation of m6Am RNA modification and its implications in human diseases.

3. Ocr-mediated suppression of BrxX unveils a phage counter-defense mechanism.

4. Genomic context-dependent histone H3K36 methylation by three Drosophila methyltransferases and implications for dedicated chromatin readers.

5. Increased PTCHD4 expression via m6A modification of PTCHD4 mRNA promotes senescent cell survival.

6. Genetic background of aminoglycoside-modifying enzymes in various genetic lineages of clinical aminoglycosides-resistant E. coli and K. pneumoniae isolates in Tunisia.

7. Methyltransferase TaSAMT1 mediates wheat freezing tolerance by integrating brassinosteroid and salicylic acid signaling.

8. Biochemical Characterization of Rice Xylan Biosynthetic Enzymes in Determining Xylan Chain Elongation and Substitutions.

9. Ribosomal RNA modification enzymes stimulate large ribosome subunit assembly in E. coli.

10. Despite the odds: formation of the SARS-CoV-2 methylation complex.

11. METTL3 confers protection against mitochondrial dysfunction and cognitive impairment in an Alzheimer disease mouse model by upregulating Mfn2 via N6-methyladenosine modification.

12. Specific deletion of Mettl3 in IECs triggers the development of spontaneous colitis and dysbiosis of T lymphocytes in mice.

13. Identification and characterization of two O-methyltransferases involved in biosynthesis of methylated 2-(2-phenethyl)chromones in agarwood.

14. Additive effects of TPMT and NUDT15 on thiopurine toxicity in children with acute lymphoblastic leukemia across multiethnic populations.

15. A data-adaptive methods in detecting exogenous methyltransferase accessible chromatin in human genome using nanopore sequencing.

16. Determinant of m6A regional preference by transcriptional dynamics.

17. A jingmenvirus RNA-dependent RNA polymerase structurally resembles the flavivirus counterpart but with different features at the initiation phase.

18. Programmable RNA 5-methylcytosine (m5C) modification of cellular RNAs by dCasRx conjugated methyltransferase and demethylase.

19. Chaetocin-mediated SUV39H1 inhibition targets stemness and oncogenic networks of diffuse midline gliomas and synergizes with ONC201.

20. MbEOMT1 regulates methyleugenol biosynthesis in Melaleuca bracteata F. Muell.

21. METTL3 drives telomere targeting of TERRA lncRNA through m6A-dependent R-loop formation: a therapeutic target for ALT-positive neuroblastoma.

22. Fat mass and obesity-associated protein inhibit the pathology of rheumatoid arthritis through the NSUN2/SFRP1/Wnt/β-catenin signal axis.

23. Conversion of the CG specific M.MpeI DNA methyltransferase into an enzyme predominantly methylating CCA and CCC sites.

24. Internal RNA 2'-O-methylation on the HIV-1 genome impairs reverse transcription.

25. The Mutational Road not Taken: Using Ancestral Sequence Resurrection to Evaluate the Evolution of Plant Enzyme Substrate Preferences.

26. Catalytic activity of the Bin3/MePCE methyltransferase domain is dispensable for 7SK snRNP function in Drosophila melanogaster.

27. Escherichia coli tRNA (Gm18) methyltransferase (TrmH) requires the correct localization of its methylation site (G18) in the D-loop for efficient methylation.

28. BOLA3 and NFU1 link mitoribosome iron-sulfur cluster assembly to multiple mitochondrial dysfunctions syndrome.

29. Epigenetic Dysregulation in Endometriosis: Implications for Pathophysiology and Therapeutics.

30. Snapper: high-sensitive detection of methylation motifs based on Oxford Nanopore reads.

31. The evolution of strictly monofunctional naphthoquinol C-methyltransferases is vital in cyanobacteria and plastids.

32. METTL14 is a chromatin regulator independent of its RNA N6-methyladenosine methyltransferase activity.

33. The fission yeast methyl phosphate capping enzyme Bmc1 guides 2'-O-methylation of the U6 snRNA.

34. High fidelity DNA strand-separation is the major specificity determinant in DNA methyltransferase CcrM's catalytic mechanism.

35. Low RNA stability signifies increased post-transcriptional regulation of cell identity genes.

36. Nicotinamide-N-methyltransferase regulates lipid metabolism via SAM and 1-methylnicotinamide in the AML12 hepatocyte cell line.

37. METTL3 promotes proliferation of goat endometrial epithelial cells by regulating CTGF in an m6A-dependent manner†.

38. Functional interdependence of N6-methyladenosine methyltransferase complex subunits in Arabidopsis.

39. Vir1p, the yeast homolog of virilizer, is required for mRNA m6A methylation and meiosis.

40. Actinobacillus pleuropneumoniae encodes multiple phase-variable DNA methyltransferases that control distinct phasevarions.

41. The engagement of histone lysine methyltransferases with nucleosomes: structural basis, regulatory mechanisms, and therapeutic implications.

42. Two O-Methyltransferases from Phylogenetically Unrelated Cow Parsley (Anthriscus sylvestris) and Hinoki-Asunaro (Thujopsis dolabrata var. hondae) as a Signature of Lineage-Specific Evolution in Lignan Biosynthesis.

43. Crystal structures and fragment screening of SARS-CoV-2 NSP14 reveal details of exoribonuclease activation and mRNA capping and provide starting points for antiviral drug development.

44. TGS1 impacts snRNA 3'-end processing, ameliorates survival motor neuron-dependent neurological phenotypes in vivo and prevents neurodegeneration.

45. The nucleoplasmic phase of pre-40S formation prior to nuclear export.

46. Erg6p is essential for antifungal drug resistance, plasma membrane properties and cell wall integrity in Candida glabrata.

47. METTL14 Regulates Osteogenesis of Bone Marrow Mesenchymal Stem Cells via Inducing Autophagy Through m6A/IGF2BPs/Beclin-1 Signal Axis.

48. Mettl3 downregulation in germinal vesicle oocytes inhibits mRNA decay and the first polar body extrusion during maturation†.

49. Characterization and utilization of methyltransferase for apramycin production in Streptoalloteichus tenebrarius.

50. LncRNA EPR-induced METTL7A1 modulates target gene translation.

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