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1. Structure of LRRK2 in Parkinson’s disease and model for microtubule interaction

2. Type-II kinase inhibitors that target Parkinson's Disease-associated LRRK2.

3. Cryo-EM visualizes multiple steps of dynein's activation pathway.

4. A designed ankyrin-repeat protein that targets Parkinson's disease-associated LRRK2.

5. Cryo-electron tomography reveals the microtubule-bound form of inactive LRRK2.

6. Elf1 promotes Rad26's interaction with lesion-arrested Pol II for transcription-coupled repair.

7. Inhibition of Parkinson's disease-related LRRK2 by type I and type II kinase inhibitors: Activity and structures.

9. Structure of LRRK1 and mechanisms of autoinhibition and activation.

10. Lis1 relieves cytoplasmic dynein-1 autoinhibition by acting as a molecular wedge.

11. Structures of human dynein in complex with the lissencephaly 1 protein, LIS1.

12. Structural basis for Parkinson's disease-linked LRRK2's binding to microtubules.

13. Structural basis for cytoplasmic dynein-1 regulation by Lis1.

14. Structure Analysis of Proteins and Peptides by Difference Circular Dichroism Spectroscopy.

15. Structural Biology of LRRK2 and its Interaction with Microtubules.

16. Structures and function of the amino acid polymerase cyanophycin synthetase.

17. Structural insights into assembly and function of the RSC chromatin remodeling complex.

18. Cockayne syndrome B protein acts as an ATP-dependent processivity factor that helps RNA polymerase II overcome nucleosome barriers.

19. Structure and dynamics of the ASB9 CUL-RING E3 Ligase.

20. LIS1 promotes the formation of activated cytoplasmic dynein-1 complexes.

21. 3.1 Å structure of yeast RNA polymerase II elongation complex stalled at a cyclobutane pyrimidine dimer lesion solved using streptavidin affinity grids.

22. A structural mechanism for phosphorylation-dependent inactivation of the AP2 complex.

23. cryoem-cloud-tools: A software platform to deploy and manage cryo-EM jobs in the cloud.

24. Actin-related proteins regulate the RSC chromatin remodeler by weakening intramolecular interactions of the Sth1 ATPase.

25. Structural basis for the initiation of eukaryotic transcription-coupled DNA repair.

26. Lis1 Has Two Opposing Modes of Regulating Cytoplasmic Dynein.

27. Structure of Fam20A reveals a pseudokinase featuring a unique disulfide pattern and inverted ATP-binding.

28. Low cost, high performance processing of single particle cryo-electron microscopy data in the cloud.

29. Mechanism and regulation of cytoplasmic dynein.

30. Lis1 regulates dynein by sterically blocking its mechanochemical cycle.

31. Traffic control: adaptor proteins guide dynein-cargo takeoff.

32. Molecular architecture of the ATP-dependent chromatin-remodeling complex SWR1.

33. Tug-of-war in motor protein ensembles revealed with a programmable DNA origami scaffold.

34. Structural basis for microtubule binding and release by dynein.

35. Lis1 acts as a "clutch" between the ATPase and microtubule-binding domains of the dynein motor.

36. Electron microscopy studies of nucleosome remodelers.

37. Validation of the orthogonal tilt reconstruction method with a biological test sample.

38. Introduction of customized inserts for s-treamlined assembly and optimization of BioBrick synthetic genetic circuits.

39. A dimeric structure for archaeal box C/D small ribonucleoproteins.

40. Architecture of the Dam1 kinetochore ring complex and implications for microtubule-driven assembly and force-coupling mechanisms.

41. Conformational flexibility in the chromatin remodeler RSC observed by electron microscopy and the orthogonal tilt reconstruction method.

42. Visualizing flexibility at molecular resolution: analysis of heterogeneity in single-particle electron microscopy reconstructions.

43. Nucleotide-dependent conformational changes in the DnaA-like core of the origin recognition complex.

44. The orthogonal tilt reconstruction method: an approach to generating single-class volumes with no missing cone for ab initio reconstruction of asymmetric particles.

45. Structural studies of the human PBAF chromatin-remodeling complex.

46. The architecture of the gammadelta resolvase crossover site synaptic complex revealed by using constrained DNA substrates.

47. A model for the gamma delta resolvase synaptic complex.

48. Contacts between the 5' nuclease of DNA polymerase I and its DNA substrate.

49. In vitro transposition of Tn552: a tool for DNA sequencing and mutagenesis.

50. Tn552 transposase catalyzes concerted strand transfer in vitro.

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