122 results on '"Wang, En-Duo"'
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2. Mammalian mitochondrial translation infidelity leads to oxidative stress–induced cell cycle arrest and cardiomyopathy
3. Mitochondrial RNA m3C methyltransferase METTL8 relies on an isoform-specific N-terminal extension and modifies multiple heterogenous tRNAs
4. Human TRMT1 catalyzes m2G or m22G formation on tRNAs in a substrate-dependent manner
5. Loss of threonyl-tRNA synthetase-like protein Tarsl2 has little impact on protein synthesis but affects mouse development
6. Data from MicroRNA-155 Functions as an OncomiR in Breast Cancer by Targeting the Suppressor of Cytokine Signaling 1 Gene
7. Supplementary Materials, Figures 1-4 from MicroRNA-155 Functions as an OncomiR in Breast Cancer by Targeting the Suppressor of Cytokine Signaling 1 Gene
8. Supplementary Materials, Figures 1-4 from MicroRNA-155 Functions as an OncomiR in Breast Cancer by Targeting the Suppressor of Cytokine Signaling 1 Gene
9. Data from MicroRNA-155 Functions as an OncomiR in Breast Cancer by Targeting the Suppressor of Cytokine Signaling 1 Gene
10. SLC7A14 imports GABA to lysosomes and impairs hepatic insulin sensitivity via inhibiting mTORC2
11. RNA granule-clustered mitochondrial aminoacyl-tRNA synthetases form multiple complexes with the potential to fine-tune tRNA aminoacylation
12. Molecular basis for human mitochondrial tRNA m3C modification by alternatively spliced METTL8
13. Commonality and diversity in tRNA substrate recognition in t6A biogenesis by eukaryotic KEOPSs
14. Position 34 of tRNA is a discriminative element for m5C38 modification by human DNMT2
15. A dual role of human tRNA methyltransferase hTrmt13 in regulating translation and transcription
16. Modifications of the human tRNA anticodon loop and their associations with genetic diseases
17. ALKBH7-mediated demethylation regulates mitochondrial polycistronic RNA processing
18. The human tRNA taurine modification enzyme GTPBP3 is an active GTPase linked to mitochondrial diseases
19. Distinct pathogenic mechanisms of various RARS1 mutations in Pelizaeus-Merzbacher-like disease
20. Intellectual disability‐associated gene ftsj1 is responsible for 2′‐O‐methylation of specific tRNAs
21. Nitrosative stress inhibits aminoacylation and editing activities of mitochondrial threonyl-tRNA synthetase by S-nitrosation
22. Molecular basis of the multifaceted functions of human leucyl-tRNA synthetase in protein synthesis and beyond
23. Hearing impairment-associated KARS mutations lead to defects in aminoacylation of both cytoplasmic and mitochondrial tRNALys
24. Molecular basis for t6A modification in human mitochondria
25. Newly acquired N-terminal extension targets threonyl-tRNA synthetase-like protein into the multiple tRNA synthetase complex
26. LeuRS can leucylate type I and type II tRNALeus in Streptomyces coelicolor
27. The G3-U70-independent tRNA recognition by human mitochondrial alanyl-tRNA synthetase
28. Archaeal NSUN6 catalyzes m5C72 modification on a wide-range of specific tRNAs
29. Instability of the mitochondrial alanyl-tRNA synthetase underlies fatal infantile-onset cardiomyopathy
30. Structure of Escherichia coli Arginyl-tRNA Synthetase in Complex with tRNAArg: Pivotal Role of the D-loop
31. A natural non-Watson–Crick base pair in human mitochondrial tRNAThr causes structural and functional susceptibility to local mutations
32. A threonyl-tRNA synthetase-like protein has tRNA aminoacylation and editing activities
33. Sensing and Transmitting Intracellular Amino Acid Signals through Reversible Lysine Aminoacylations
34. Editing activity for eliminating mischarged tRNAs is essential in mammalian mitochondria
35. Mutations inKARScause early-onset hearing loss and leukoencephalopathy: Potential pathogenic mechanism
36. Acetylation of lysine ϵ-amino groups regulates aminoacyl-tRNA synthetase activity in Escherichia coli
37. Self-protective responses to norvaline-induced stress in a leucyl-tRNA synthetase editing-deficient yeast strain
38. Structural basis for substrate binding and catalytic mechanism of a human RNA:m5C methyltransferase NSun6
39. Sequence-specific and Shape-selective RNA Recognition by the Human RNA 5-Methylcytosine Methyltransferase NSun6
40. Cryptosporidium and Toxoplasma Parasites Are Inhibited by a Benzoxaborole Targeting Leucyl-tRNA Synthetase
41. Translational Quality Control by Bacterial Threonyl-tRNA Synthetases
42. A Human Disease-causing Point Mutation in Mitochondrial Threonyl-tRNA Synthetase Induces Both Structural and Functional Defects
43. C-terminal Domain of Leucyl-tRNA Synthetase from Pathogenic Candida albicans Recognizes both tRNASer and tRNALeu
44. Degenerate Connective Polypeptide 1 (CP1) Domain from Human Mitochondrial Leucyl-tRNA Synthetase
45. Calpain Cleaves Most Components in the Multiple Aminoacyl-tRNA Synthetase Complex and Affects Their Functions
46. tRNA recognition by a bacterial tRNA Xm32 modification enzyme from the SPOUT methyltransferase superfamily
47. Identification of determinants for tRNA substrate recognition byEscherichia coliC/U34 2′-O-methyltransferase
48. Modulation of Aminoacylation and Editing Properties of Leucyl-tRNA Synthetase by a Conserved Structural Module
49. Pachytene piRNAs instruct massive mRNA elimination during late spermiogenesis
50. Identification of Lethal Mutations in Yeast Threonyl-tRNA Synthetase Revealing Critical Residues in Its Human Homolog
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