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1. Lipid scrambling is a general feature of protein insertases.

2. Spartin-mediated lipid transfer facilitates lipid droplet turnover.

3. Spartin-mediated lipid transfer facilitates lipid droplet turnover.

4. Lipid scrambling is a general feature of protein insertases.

5. ATG2A-mediated bridge-like lipid transport regulates lipid droplet accumulation.

6. Mitoguardin-2-mediated lipid transfer preserves mitochondrial morphology and lipid droplet formation.

7. SHIP164 is a chorein motif lipid transfer protein that controls endosome-Golgi membrane traffic.

8. Structural and biochemical insights into lipid transport by VPS13 proteins.

9. A possible role for VPS13-family proteins in bulk lipid transfer, membrane expansion and organelle biogenesis.

10. Insights into VPS13 properties and function reveal a new mechanism of eukaryotic lipid transport.

11. A model for a partnership of lipid transfer proteins and scramblases in membrane expansion and organelle biogenesis.

12. Mechanisms of nonvesicular lipid transport.

14. Insights into Lysosomal PI(3,5)P 2 Homeostasis from a Structural-Biochemical Analysis of the PIKfyve Lipid Kinase Complex.

15. Inter-organelle lipid transfer: a channel model for Vps13 and chorein-N motif proteins.

16. Cryo-EM reconstruction of a VPS13 fragment reveals a long groove to channel lipids between membranes.

17. ATG2 transports lipids to promote autophagosome biogenesis.

18. VPS13A and VPS13C are lipid transport proteins differentially localized at ER contact sites.

19. Molecular basis for sterol transport by StART-like lipid transfer domains.

20. Architecture of the human PI4KIIIα lipid kinase complex.

22. Lipid transport by TMEM24 at ER-plasma membrane contacts regulates pulsatile insulin secretion.

23. CATCHR, HOPS and CORVET tethering complexes share a similar architecture.

24. SMP-domain proteins at membrane contact sites: Structure and function.

25. Control of plasma membrane lipid homeostasis by the extended synaptotagmins.

26. The leukodystrophy protein FAM126A (hyccin) regulates PtdIns(4)P synthesis at the plasma membrane.

27. The Legionella Anti-autophagy Effector RavZ Targets the Autophagosome via PI3P- and Curvature-Sensing Motifs.

28. Re-visiting the trans insertion model for complexin clamping.

29. Sac1-Vps74 structure reveals a mechanism to terminate phosphoinositide signaling in the Golgi apparatus.

30. Structure of a lipid-bound extended synaptotagmin indicates a role in lipid transfer.

31. Legionella pneumophila subversion of host vesicular transport by SidC effector proteins.

32. A requirement for ER-derived COPII vesicles in phagophore initiation.

33. A half-zippered SNARE complex represents a functional intermediate in membrane fusion.

34. Diversity and plasticity in Rab GTPase nucleotide release mechanism has consequences for Rab activation and inactivation.

35. Structural insights into assembly and regulation of the plasma membrane phosphatidylinositol 4-kinase complex.

36. Conformational dynamics of calcium-triggered activation of fusion by synaptotagmin.

37. The EM structure of the TRAPPIII complex leads to the identification of a requirement for COPII vesicles on the macroautophagy pathway.

38. Structures and mechanisms of vesicle coat components and multisubunit tethering complexes.

39. Structure of Golgi transport proteins.

40. Insights regarding guanine nucleotide exchange from the structure of a DENN-domain protein complexed with its Rab GTPase substrate.

41. A conformational switch in complexin is required for synaptotagmin to trigger synaptic fusion.

42. Complexin cross-links prefusion SNAREs into a zigzag array.

43. Structure and function of the polymerase core of TRAMP, a RNA surveillance complex.

44. Structure of a C-terminal fragment of its Vps53 subunit suggests similarity of Golgi-associated retrograde protein (GARP) complex to a family of tethering complexes.

45. Structure and mechanism in membrane trafficking.

46. Kinetic analysis of the guanine nucleotide exchange activity of TRAPP, a multimeric Ypt1p exchange factor.

47. Insights into MHC class I peptide loading from the structure of the tapasin-ERp57 thiol oxidoreductase heterodimer.

48. The structural basis for activation of the Rab Ypt1p by the TRAPP membrane-tethering complexes.

49. Emerging themes in non-coding RNA quality control.

50. A catalytic coiled coil: structural insights into the activation of the Rab GTPase Sec4p by Sec2p.

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