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The retromer coat complex coordinates endosomal sorting and dynein-mediated transport, with carrier recognition by the trans-Golgi network.

Authors :
Wassmer, T.
Attar, N.
Harterink, M.
van Weering, J.R.
Traer, C.J.
Oakley, J.
Goud, B.
Stephens, D.J.
Verkade, P.
Korswagen, H.C.
Cullen, P.J.
Wassmer, T.
Attar, N.
Harterink, M.
van Weering, J.R.
Traer, C.J.
Oakley, J.
Goud, B.
Stephens, D.J.
Verkade, P.
Korswagen, H.C.
Cullen, P.J.
Source :
Developmental Cell vol.17 (2009) nr.1 p.110-122 [ISSN 1534-5807]
Publication Year :
2009

Abstract

Early endosome-to-trans-Golgi network (TGN) transport is organized by the retromer complex. Consisting of cargo-selective and membrane-bound subcomplexes, retromer coordinates sorting with membrane deformation and carrier formation. Here, we describe four mammalian retromers whose membrane-bound subcomplexes contain specific combinations of the sorting nexins (SNX), SNX1, SNX2, SNX5, and SNX6. We establish that retromer requires a dynamic spatial organization of the endosomal network, which is regulated through association of SNX5/SNX6 with the p150(glued) component of dynactin, an activator of the minus-end directed microtubule motor dynein; an association further defined through genetic studies in C. elegans. Finally, we also establish that the spatial organization of the retromer pathway is mediated through the association of SNX1 with the proposed TGN-localized tether Rab6-interacting protein-1. These interactions describe fundamental steps in retromer-mediated transport and establish that the spatial organization of the retromer network is a critical element required for efficient retromer-mediated sorting.<br />Early endosome-to-trans-Golgi network (TGN) transport is organized by the retromer complex. Consisting of cargo-selective and membrane-bound subcomplexes, retromer coordinates sorting with membrane deformation and carrier formation. Here, we describe four mammalian retromers whose membrane-bound subcomplexes contain specific combinations of the sorting nexins (SNX), SNX1, SNX2, SNX5, and SNX6. We establish that retromer requires a dynamic spatial organization of the endosomal network, which is regulated through association of SNX5/SNX6 with the p150(glued) component of dynactin, an activator of the minus-end directed microtubule motor dynein; an association further defined through genetic studies in C. elegans. Finally, we also establish that the spatial organization of the retromer pathway is mediated through the association of SNX1 with the proposed TGN-localized tether Rab6-interacting protein-1. These interactions describe fundamental steps in retromer-mediated transport and establish that the spatial organization of the retromer network is a critical element required for efficient retromer-mediated sorting.

Details

Database :
OAIster
Journal :
Developmental Cell vol.17 (2009) nr.1 p.110-122 [ISSN 1534-5807]
Notes :
DOI: 10.1016/j.devcel.2009.04.016, Developmental Cell vol.17 (2009) nr.1 p.110-122 [ISSN 1534-5807], English
Publication Type :
Electronic Resource
Accession number :
edsoai.ocn931046715
Document Type :
Electronic Resource