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75 results on '"Agard DA"'

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1. Fertilidade do solo em agroecossistemas familiares urbanos em Manaus, Amazonas

3. Real-space heterogeneous reconstruction, refinement, and disentanglement of CryoEM conformational states with HetSIREN.

4. The Structure of Cilium Inner Junctions Revealed by Electron Cryo-tomography.

5. Poc1 bridges basal body inner junctions to promote triplet microtubule integrity and connections.

6. Functionalized graphene-oxide grids enable high-resolution cryo-EM structures of the SNF2h-nucleosome complex without crosslinking.

7. Cryo-EM reveals how Hsp90 and FKBP immunophilins co-regulate the glucocorticoid receptor.

8. Poc1 is a basal body inner junction protein that promotes triplet microtubule integrity and interconnections.

9. De novo protein identification in mammalian sperm using in situ cryoelectron tomography and AlphaFold2 docking.

10. Next-generation proteomics for quantitative Jumbophage-bacteria interaction mapping.

11. Functionalized graphene-oxide grids enable high-resolution cryo-EM structures of the SNF2h-nucleosome complex without crosslinking.

12. Hsp90 provides a platform for kinase dephosphorylation by PP5.

13. In situ cryo-electron tomography reveals the asymmetric architecture of mammalian sperm axonemes.

14. Next-generation interaction proteomics for quantitative Jumbophage-bacteria interaction mapping.

15. The ϕPA3 phage nucleus is enclosed by a self-assembling 2D crystalline lattice.

16. Improved Analysis of Cross-Linking Mass Spectrometry Data with Kojak 2.0, Advanced by Integration into the Trans-Proteomic Pipeline.

17. Solution of the protein structure prediction problem at last: crucial innovations and next frontiers.

18. AreTomo: An integrated software package for automated marker-free, motion-corrected cryo-electron tomographic alignment and reconstruction.

20. Structure of Hsp90-Hsp70-Hop-GR reveals the Hsp90 client-loading mechanism.

21. Structure of Hsp90-p23-GR reveals the Hsp90 client-remodelling mechanism.

22. Electron cryo-tomography structure of axonemal doublet microtubule from Tetrahymena thermophila .

23. Structures of the HER2-HER3-NRG1β complex reveal a dynamic dimer interface.

24. Proteomic analysis of microtubule inner proteins (MIPs) in Rib72 null Tetrahymena cells reveals functional MIPs.

25. Practical considerations for using K3 cameras in CDS mode for high-resolution and high-throughput single particle cryo-EM.

26. CryoEM and AI reveal a structure of SARS-CoV-2 Nsp2, a multifunctional protein involved in key host processes.

27. CM1-driven assembly and activation of yeast γ-tubulin small complex underlies microtubule nucleation.

28. Microtubules form by progressively faster tubulin accretion, not by nucleation-elongation.

29. Hsp70 chaperone blocks α-synuclein oligomer formation via a novel engagement mechanism.

30. Comparative host-coronavirus protein interaction networks reveal pan-viral disease mechanisms.

31. General and robust covalently linked graphene oxide affinity grids for high-resolution cryo-EM.

32. XMAP215 and γ-tubulin additively promote microtubule nucleation in purified solutions.

33. A molecular pore spans the double membrane of the coronavirus replication organelle.

34. A SARS-CoV-2 protein interaction map reveals targets for drug repurposing.

36. Amino and PEG-amino graphene oxide grids enrich and protect samples for high-resolution single particle cryo-electron microscopy.

37. The mitochondrial HSP90 paralog TRAP1 forms an OXPHOS-regulated tetramer and is involved in mitochondrial metabolic homeostasis.

38. Electron cryotomography of intact motile cilia defines the basal body to axoneme transition.

39. A bacteriophage nucleus-like compartment shields DNA from CRISPR nucleases.

40. Mind the gap: Micro-expansion joints drastically decrease the bending of FIB-milled cryo-lamellae.

41. Novel Small Molecules Targeting the Intrinsically Disordered Structural Ensemble of α-Synuclein Protect Against Diverse α-Synuclein Mediated Dysfunctions.

42. Viral Capsid Trafficking along Treadmilling Tubulin Filaments in Bacteria.

43. Consideration of sample motion in cryo-tomography based on alignment residual interpolation.

44. Electron cryo-tomography provides insight into procentriole architecture and assembly mechanism.

45. Competing protein-protein interactions regulate binding of Hsp27 to its client protein tau.

46. A simple and robust procedure for preparing graphene-oxide cryo-EM grids.

47. Calcium binding to a remote site can replace magnesium as cofactor for mitochondrial Hsp90 (TRAP1) ATPase activity.

48. Insights into centriole geometry revealed by cryotomography of doublet and triplet centrioles.

49. Cryo-tomography tilt-series alignment with consideration of the beam-induced sample motion.

50. Structural basis of mitochondrial receptor binding and constriction by DRP1.

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