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1. Mechanism and regulation of cargo entry into the Commander endosomal recycling pathway

2. Loss of the batten disease protein CLN3 leads to mis-trafficking of M6PR and defective autophagic-lysosomal reformation

3. Multi-omic approach characterises the neuroprotective role of retromer in regulating lysosomal health

4. Five Inhibitory Receptors Display Distinct Vesicular Distributions in Murine T Cells

5. SNX3-retromer requires an evolutionary conserved MON2:DOPEY2:ATP9A complex to mediate Wntless sorting and Wnt secretion

6. SNX27-Retromer directly binds ESCPE-1 to transfer cargo proteins during endosomal recycling.

7. Sorting nexin-27 regulates AMPA receptor trafficking through the synaptic adhesion protein LRFN2

10. Structure of the Commander Endosomal Trafficking Complex Linked to X-Linked Intellectual Disability/Ritscher-Schinzel Syndrome

11. CHC22 clathrin membrane recruitment uses SNX5 in bipartite interaction with secretory tether p115

12. Structural insights into the architecture and membrane interactions of the conserved COMMD proteins

13. Multiomic Approach Characterises the Neuroprotective Role of Retromer in Regulating Lysosomal Health

14. Structure of the endosomal Commander complex linked to Ritscher-Schinzel syndrome

15. ESCPE-1 mediates retrograde endosomal sorting of the SARS-CoV-2 host factor Neuropilin-1

17. Proteomic identification and structural basis for the interaction between sorting nexin SNX17 and PDLIM family proteins

18. SNX27-Retromer directly binds ESCPE-1 to transfer cargo proteins during endosomal recycling

19. Mechanistic basis for SNX27-Retromer coupling to ESCPE-1 in promoting endosomal cargo recycling

20. Proteomic identification and structural basis for the interaction between sorting nexin SNX17 and PDLIM family proteins

21. Sorting nexin-27 regulates AMPA receptor trafficking through the synaptic adhesion protein LRFN2

22. TFEB controls retromer expression in response to nutrient availability

23. Molecular identification of a BAR domain-containing coat complex for endosomal recycling of transmembrane proteins

24. Proteomic Identification and Structural Basis for the Interaction between Sorting Nexin Snx17 and Pdlim Family Proteins

25. Sorting nexin 5 mediates virus-induced autophagy and immunity

26. Neuropilin-1 is a host factor for SARS-CoV-2 infection

28. Acute inactivation of retromer and ESCPE-1 leads to time-resolved defects in endosomal cargo sorting

29. Neuropilin-1 is a host factor for SARS-CoV-2 infection

30. Mammalian copper homeostasis requires retromer-dependent recycling of the high-affinity copper transporter 1

31. Mammalian copper homeostasis requires retromer-dependent recycling of the high-affinity copper transporter 1 (CTR1/SLC31A1)

32. A heterodimeric SNX4:SNX7 SNX-BAR autophagy complex coordinates ATG9A trafficking for efficient autophagosome assembly

33. IP3 3-kinase opposes NGF driven neurite outgrowth.

34. Sequence-dependent cargo recognition by SNX-BARs mediates retromer-independent transport of CI-MPR

35. Retriever is a multiprotein complex for retromer-independent endosomal cargo recycling

36. Endoplasmic Reticulum–Endosome Contact Sites: Specialized Interfaces for Orchestrating Endosomal Tubule Fission?

37. Acute perturbation of retromer and ESCPE-1 leads to functionally distinct and temporally resolved defects in endosomal cargo sorting

40. Endosomal Sorting:Architecture of the Retromer Coat

41. To degrade or not to degrade:mechanisms and significance of endocytic recycling

42. Endosomal Retrieval of Cargo:Retromer Is Not Alone

43. Sorting nexin-21 is a scaffold for the endosomal recruitment of huntingtin

44. Retromer Controls Planar Polarity Protein Levels and Asymmetric Localization at Intercellular Junctions

45. Actin-dependent endosomal receptor recycling

47. Retromer associates with the cytoplasmic amino-terminus of polycystin-2

48. Parkinson’s disease-associated mutant VPS35 causes mitochondrial dysfunction by recycling DLP1 complexes

49. Retromer and sorting nexins in endosomal sorting

50. Retromer- and WASH-dependent sorting of nutrient transporters requires a multivalent interaction network with ANKRD50

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