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Publication : A Translocation Pathway for Vesicle-Mediated Unconventional Protein Secretion.

First Author  Zhang M Year  2020
Journal  Cell Volume  181
Issue  3 Pages  637-652.e15
PubMed ID  32272059 Mgi Jnum  J:292437
Mgi Id  MGI:6442278 Doi  10.1016/j.cell.2020.03.031
Citation  Zhang M, et al. (2020) A Translocation Pathway for Vesicle-Mediated Unconventional Protein Secretion. Cell 181(3):637-652.e15
abstractText  Many cytosolic proteins lacking a signal peptide, called leaderless cargoes, are secreted through unconventional secretion. Vesicle trafficking is a major pathway involved. It is unclear how leaderless cargoes enter into the vesicle. Here, we find a translocation pathway regulating vesicle entry and secretion of leaderless cargoes. We identify TMED10 as a protein channel for the vesicle entry and secretion of many leaderless cargoes. The interaction of TMED10 C-terminal region with a motif in the cargo accounts for the selective release of the cargoes. In an in vitro reconstitution assay, TMED10 directly mediates the membrane translocation of leaderless cargoes into the liposome, which is dependent on protein unfolding and enhanced by HSP90s. In the cell, TMED10 localizes on the endoplasmic reticulum (ER)-Golgi intermediate compartment and directs the entry of cargoes into this compartment. Furthermore, cargo induces the formation of TMED10 homo-oligomers which may act as a protein channel for cargo translocation.
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