140 results on '"Francisco-Velilla, Rosario"'
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2. Phosphorylation of T897 in the dimerization domain of Gemin5 modulates protein interactions and translation regulation
3. Structural basis for Gemin5 decamer-mediated mRNA binding
4. Gemin5-dependent RNA association with polysomes enables selective translation of ribosomal and histone mRNAs
5. Alternative splicing events driven by altered levels of GEMIN5 undergo translation
6. Identification of RNA-Binding Proteins Associated to RNA Structural Elements
7. IRES Elements: Issues, Controversies and Evolutionary Perspectives
8. RNA–protein interaction methods to study viral IRES elements
9. Picornavirus IRES elements: RNA structure and host protein interactions
10. TPL2 kinase expression is regulated by the p38γ/p38δ-dependent association of aconitase-1 with TPL2 mRNA
11. Functional and structural deficiencies of Gemin5 variants associated with neurological disorders
12. Phosphorylation of T897 in the dimerization domain of Gemin5 modulates protein interactions and translation regulation
13. Functional and structural deficiencies of Gemin5 variants associated with neurological disorders
14. Picornavirus translation strategies
15. Autosomal Recessive Cerebellar Atrophy and Spastic Ataxia in Patients With Pathogenic Biallelic Variants in GEMIN5
16. The RBS1 domain of Gemin5 is intrinsically unstructured and interacts with RNA through conserved Arg and aromatic residues.
17. The RBS1 domain of Gemin5 is intrinsically unstructured and interacts with RNA through conserved Arg and aromatic residues
18. Rna-binding proteins at the host-pathogen interface targeting viral regulatory elements
19. The RBS1 domain of Gemin5 is intrinsically unstructured and interacts with RNA through conserved Arg and aromatic residues
20. Identification of novel non-canonical RNA-binding sites in Gemin5 involved in internal initiation of translation
21. RNA-Binding Proteins at the Host-Pathogen Interface Targeting Viral Regulatory Elements
22. Emerging Roles of Gemin5: From snRNPs Assembly to Translation Control
23. Emerging Roles of Gemin5: From snRNPs Assembly to Translation Control
24. Carboxy terminal modifications of the P0 protein reveal alternative mechanisms of nuclear ribosomal stalk assembly
25. RNA-protein coevolution study of Gemin5 uncovers the role of the PXSS motif of RBS1 domain for RNA binding
26. Emerging Roles of Gemin5: From snRNPs Assembly to Translation Control
27. Role and dynamics of the ribosomal protein P0 and its related trans-acting factor Mrt4 during ribosome assembly in Saccharomyces cerevisiae
28. Structural basis for the dimerization of Gemin5 and its role in protein recruitment and translation control
29. Rab1b and ARF5 are novel RNA-binding proteins involved in FMDV IRES-driven RNA localization
30. Structural basis for the dimerization of Gemin5 and its role in protein recruitment and translation control
31. A novel dimerization module in Gemin5 is critical for protein recruitment and translation control
32. Impact of RNA–Protein Interaction Modes on Translation Control: The Versatile Multidomain Protein Gemin5
33. Rab1b and ARF5 are novel RNA-binding proteins involved in FMDV IRES–driven RNA localization
34. The landscape of the non-canonical RNA-binding site of Gemin5 unveils a feedback loop counteracting the negative effect on translation
35. Ribosome-dependent conformational flexibility changes and RNA dynamics of IRES domains revealed by differential SHAPE
36. Insights into structural and mechanistic features of viral IRES elements
37. Deconstructing internal ribosome entry site elements: an update of structural motifs and functional divergences
38. Structural basis for the dimerization of Gemin5 and its role in protein recruitment and translation control.
39. Deconstructing internal ribosome entry site elements: an update of structural motifs and functional divergences
40. Missense mutations have unexpected consequences: The McArdle disease paradigm
41. Rab1b and ARF5 are novel RNA-binding proteins involved in IRES-driven RNA localization
42. The landscape of the non-canonical RNA-binding site of Gemin5 unveils a feedback loop counteracting the negative effect on translation
43. Ribosome-dependent conformational flexibility changes and RNA dynamics of IRES domains revealed by differential SHAPE
44. Insights into Structural and Mechanistic Features of Viral IRES Elements
45. The RNA-binding protein Gemin5 binds directly to the ribosome and regulates global translation
46. The RNA-binding protein Gemin5 binds directly to the ribosome and regulates global translation
47. Gemin 5: a multitasking RNA-binding protein involved in translational control
48. Picornavirus IRES elements: RNA structure and host protein interactions
49. RNA-protein interaction methods to study viral IRES elements
50. Gemin5: A Multitasking RNA-Binding Protein Involved in Translation Control
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