417 results on '"Modis, Yorgo"'
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2. Cryo-electron tomography of NLRP3-activated ASC complexes reveals organelle co-localization
3. Imaging and Visualizing SARS-CoV-2 in a New Era for Structural Biology
4. Contrasting functions of ATP hydrolysis by MDA5 and LGP2 in viral RNA sensing
5. Periphilin self-association underpins epigenetic silencing by the HUSH complex
6. TASOR is a pseudo-PARP that directs HUSH complex assembly and epigenetic transposon control.
7. TASOR is a pseudo-PARP that directs HUSH complex assembly and epigenetic transposon control
8. Periphilin self-association underpins epigenetic silencing by the HUSH complex
9. Periphilin self-association underpins epigenetic silencing by the HUSH complex
10. Structure and functional mapping of the KRAB‐KAP1 repressor complex
11. A type III complement factor D deficiency: Structural insights for inhibition of the alternative pathway
12. SARS-CoV-2 evolution during treatment of chronic infection
13. Crystal structure and biochemical activity of the macrodomain from rubella virus p150
14. Data publication with the structural biology data grid supports live analysis.
15. Pi Release Limits the Intrinsic and RNA-Stimulated ATPase Cycles of DEAD-Box Protein 5 (Dbp5)
16. Structure and methyl-lysine binding selectivity of the HUSH complex subunit MPP8
17. Structure of KAP1 tripartite motif identifies molecular interfaces required for retroelement silencing
18. MDA5 disease variant M854K prevents ATP-dependent structural discrimination of viral and cellular RNA
19. A Spatial Simulation Approach to Account for Protein Structure When Identifying Non-Random Somatic Mutations
20. A Graph Theoretic Approach to Utilizing Protein Structure to Identify Non-Random Somatic Mutations
21. Utilizing Protein Structure to Identify Non-Random Somatic Mutations
22. Author Correction: SARS-CoV-2 evolution during treatment of chronic infection
23. Structural studies of viperin, an antiviral radical SAM enzyme
24. A Ligand-Binding Pocket in the Dengue Virus Envelope Glycoprotein
25. Contrasting functions of ATP hydrolysis by MDA5 and LGP2 in viral RNA sensing
26. Multiomic Analysis Identifies Metabolic Enhancement of Immune Memory by Increased Glutaminolysis in Cells, Mice and Humans
27. Class II Fusion Proteins
28. A novel membrane fusion protein family in Flaviviridae?
29. Molecular Mechanisms of Flaviviral Membrane Fusion
30. Imaging and visualizing SARS-CoV-2 in a new era for structural biology
31. Peroxiredoxin-1 from the Human Hookworm Ancylostoma ceylanicum Forms a Stable Oxidized Decamer and Is Covalently Inhibited by Conoidin A
32. Crystal structure of glycoprotein E2 from bovine viral diarrhea virus
33. Crystal structure of glycoprotein C from Rift Valley fever virus
34. MDA5 assembles into a polar helical filament on dsRNA
35. Exploiting structural biology in the fight against parasitic diseases
36. A bioactive phlebovirus-like envelope protein in a hookworm endogenous virus
37. Structure and functional mapping of the KRAB-KAP1 repressor complex
38. The Vaccinia virus chondroitin sulfate binding protein drives host membrane curvature to facilitate fusion
39. How Influenza Virus Is Locked out of the Cell
40. Conserved Structures in the Viral Macrodomain of Rubella Virus Confers Protection Against SARS-CoV-2-Induced Pulmonary Pathology
41. RNA:DNA hybrids are a novel molecular pattern sensed by TLR9
42. Flunarizine Arrests Hepatitis C Virus Membrane Fusion
43. A bioactive phlebovirus-like envelope protein in a hookworm endogenous retrovirus
44. Imaging and visualizing SARS-CoV-2 in a new era for structural biology
45. Cryo-electron tomography of NLRP3-activated ASC complexes reveals organelle co-localization
46. Correction: Corrigendum: IL-13Rα2 uses TMEM219 in chitinase 3-like-1-induced signalling and effector responses
47. An Inheritable variant of the innate immune receptor melanoma differentiation-associated gene 5 promotes clearance of hepatitis C virus
48. MDA5 cooperatively forms dimers and ATP‐sensitive filaments upon binding double‐stranded RNA
49. DNA binding to proteolytically activated TLR9 is sequence‐independent and enhanced by DNA curvature
50. Class II Fusion Proteins
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