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1. The tubulin structure, a quarter of a century later.

2. Streptavidin-Affinity Grid Fabrication for Cryo-Electron Microscopy Sample Preparation.

3. Heterologous Assembly of Pleomorphic Bacterial Microcompartment Shell Architectures Spanning the Nano- to Microscale.

4. A trailing ribosome speeds up RNA polymerase at the expense of transcript fidelity via force and allostery.

5. Molecular organization of the early stages of nucleosome phase separation visualized by cryo-electron tomography.

6. CRISPR-Cas9 bends and twists DNA to read its sequence.

7. Molecular organization of the early stages of nucleosome phase separation visualized by cryo-electron tomography.

8. Structures of a phycobilisome in light-harvesting and photoprotected states.

9. CRISPR-Cas9 bends and twists DNA to read its sequence.

10. Chimeric CRISPR-CasX enzymes and guide RNAs for improved genome editing activity.

11. Structure and flexibility of the yeast NuA4 histone acetyltransferase complex.

12. Discovery and characterization of a novel family of prokaryotic nanocompartments involved in sulfur metabolism.

13. 2.5 Å-resolution structure of human CDK-activating kinase bound to the clinical inhibitor ICEC0942.

14. The encapsulin from Thermotoga maritima is a flavoprotein with a symmetry matched ferritin-like cargo protein.

15. JARID2 and AEBP2 regulate PRC2 in the presence of H2AK119ub1 and other histone modifications

16. 2.5 Å-resolution structure of human CDK-activating kinase bound to the clinical inhibitor ICEC0942.

17. Discovery and characterization of a novel family of prokaryotic nanocompartments involved in sulfur metabolism.

18. The encapsulin from Thermotoga maritima is a flavoprotein with a symmetry matched ferritin-like cargo protein.

19. JARID2 and AEBP2 regulate PRC2 in the presence of H2AK119ub1 and other histone modifications.

20. JARID2 and AEBP2 regulate PRC2 in the presence of H2AK119ub1 and other histone modifications

21. Cryo-EM

26. The cryoelectron microscopy structure of the human CDK-activating kinase.

27. The cryoelectron microscopy structure of the human CDK-activating kinase.

28. Challenges and opportunities in the high-resolution cryo-EM visualization of microtubules and their binding partners.

29. Structural Insights into the Eukaryotic Transcription Initiation Machinery.

30. Structural dynamics and DNA interaction of human TFIID.

31. Towards a mechanistic understanding of core promoter recognition from cryo-EM studies of human TFIID.

32. Eva Nogales

33. Eva Nogales

34. Structural dynamics and DNA interaction of human TFIID.

35. Challenges and opportunities in the high-resolution cryo-EM visualization of microtubules and their binding partners.

36. Towards a mechanistic understanding of core promoter recognition from cryo-EM studies of human TFIID.

37. Structural Insights into the Eukaryotic Transcription Initiation Machinery.

38. Temperature-Responsive Competitive Inhibition of CRISPR-Cas9.

39. CasX enzymes comprise a distinct family of RNA-guided genome editors.

40. The complete structure of the human TFIIH core complex.

41. Architecture of the chromatin remodeler RSC and insights into its nucleosome engagement.

42. Target preference of Type III-A CRISPR-Cas complexes at the transcription bubble.

43. Target preference of Type III-A CRISPR-Cas complexes at the transcription bubble.

44. CasX enzymes comprise a distinct family of RNA-guided genome editors.

45. Temperature-Responsive Competitive Inhibition of CRISPR-Cas9.

46. Architecture of the chromatin remodeler RSC and insights into its nucleosome engagement.

47. The complete structure of the human TFIIH core complex.

48. Recent Structural Insights into Polycomb Repressive Complex 2 Regulation and Substrate Binding.

49. Cryo-EM studies of NAIP-NLRC4 inflammasomes.

50. Structure of a P element transposase-DNA complex reveals unusual DNA structures and GTP-DNA contacts.

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