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76 results on '"Rhinovirus ultrastructure"'

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1. Individual subunits of a rhinovirus causing common cold exhibit largely different protein-RNA contact site conformations.

2. Catching Common Cold Virus with a Net: Pyridostatin Forms Filaments in Tris Buffer That Trap Viruses-A Novel Antiviral Strategy?

3. Cryo-EM structure of pleconaril-resistant rhinovirus-B5 complexed to the antiviral OBR-5-340 reveals unexpected binding site.

4. A novel druggable interprotomer pocket in the capsid of rhino- and enteroviruses.

5. Enterovirus replication: go with the (counter)flow.

6. Human rhinovirus subviral a particle binds to lipid membranes over a twofold axis of icosahedral symmetry.

7. Sequencing and analyses of all known human rhinovirus genomes reveal structure and evolution.

8. Visualization of single receptor molecules bound to human rhinovirus under physiological conditions.

9. Monitoring RNA release from human rhinovirus by dynamic force microscopy.

10. Cryoelectron microscopy analysis of the structural changes associated with human rhinovirus type 14 uncoating.

11. Dynamic force microscopy imaging of native membranes.

12. Structural analysis of human rhinovirus complexed with ICAM-1 reveals the dynamics of receptor-mediated virus uncoating.

13. The concerted conformational changes during human rhinovirus 2 uncoating.

14. Characterization of the performance of a 200-kV field emission gun for cryo-electron microscopy of biological molecules.

15. Distinct cellular receptor interactions in poliovirus and rhinoviruses.

16. Review: rhinoviruses and their ICAM receptors.

17. Structural studies of two rhinovirus serotypes complexed with fragments of their cellular receptor.

18. Antibody-mediated neutralization of human rhinovirus 14 explored by means of cryoelectron microscopy and X-ray crystallography of virus-Fab complexes.

19. IRIS explorer software for radial-depth cueing reovirus particles and other macromolecular structures determined by cryoelectron microscopy and image reconstruction.

20. The pentamer channel stiffening model for drug action on human rhinovirus HRV-1A.

21. The refined structure of human rhinovirus 16 at 2.15 A resolution: implications for the viral life cycle.

22. Cations in human rhinoviruses.

23. Structural studies on human rhinovirus 14 drug-resistant compensation mutants.

24. Viral cell recognition and entry.

25. Pathway of rhinovirus disruption by soluble intercellular adhesion molecule 1 (ICAM-1): an intermediate in which ICAM-1 is bound and RNA is released.

26. Structure-based drug design of antirhinoviral compounds.

27. Structure determination of an Fab fragment that neutralizes human rhinovirus 14 and analysis of the Fab-virus complex.

28. Human rhinovirus 14 complexed with fragments of active antiviral compounds.

29. Crystallographic and cryo EM analysis of virion-receptor interactions.

30. The use of an algorithmic method for small molecule superimpositions in the design of antiviral agents.

31. Viruses as precipitants of asthma symptoms. III. Rhinoviruses: molecular biology and prospects for future intervention.

32. WIN 52035-2 inhibits both attachment and eclipse of human rhinovirus 14.

33. A comparison of the anti-rhinoviral drug binding pocket in HRV14 and HRV1A.

34. Structure of human rhinovirus complexed with Fab fragments from a neutralizing antibody.

35. Mapping the surface properties of macromolecules.

36. Structure of a human rhinovirus complexed with its receptor molecule.

37. Purification and crystallization of intact human rhinovirus complexed with a neutralizing Fab.

38. Acid-induced structural changes in human rhinovirus 14: possible role in uncoating.

39. Ion channels in icosahedral virus: a comparative analysis of the structures and binding sites at their fivefold axes.

40. Preliminary X-ray crystallographic analysis of intercellular adhesion molecule-1.

41. Calculation of the free energy of association for protein complexes.

42. Human rhinovirus 14 complexed with antiviral compound R 61837.

43. The role of ICAM-1 as a receptor for rhinovirus and malaria.

44. Analysis of the structure of a common cold virus, human rhinovirus 14, refined at a resolution of 3.0 A.

45. The microchip microbe hunters.

46. Effect of dichloroflavan (BW683C) on the stability and uncoating of rhinovirus type 1B.

47. Comparison of the three-dimensional structure of two human rhinoviruses (HRV2 and HRV14).

48. The structure and replication of rhinoviruses.

49. The molecular biology of human rhinoviruses.

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