Structural basis for coupling of the WASH subunit FAM21 with the endosomal SNX27–Retromer complex

Author:

Guo Qian1,Chen Kai-en1ORCID,Gimenez-Andres Manuel2ORCID,Jellett Adam P.2,Gao Ya1ORCID,Simonetti Boris2ORCID,Liu Meihan1ORCID,Danson Chris M.2,Heesom Kate J.3ORCID,Cullen Peter J.2ORCID,Collins Brett M.1ORCID

Affiliation:

1. The University of Queensland, Institute for Molecular Bioscience, St Lucia, QLD 4072, Australia

2. School of Biochemistry, Faculty of Life Sciences, University of Bristol, Bristol BS8 1TD, United Kingdom

3. Bristol Proteomics Facility, School of Biochemistry, Faculty of Life Sciences, University of Bristol, Bristol BS8 1TD, United Kingdom

Abstract

Endosomal membrane trafficking is mediated by specific protein coats and formation of actin-rich membrane domains. The Retromer complex coordinates with sorting nexin (SNX) cargo adaptors including SNX27, and the SNX27–Retromer assembly interacts with the Wiskott–Aldrich syndrome protein and SCAR homolog (WASH) complex which nucleates actin filaments establishing the endosomal recycling domain. Crystal structures, modeling, biochemical, and cellular validation reveal how the FAM21 subunit of WASH interacts with both Retromer and SNX27. FAM21 binds the FERM domain of SNX27 using acidic-Asp-Leu-Phe (aDLF) motifs similar to those found in the SNX1 and SNX2 subunits of the ESCPE-1 complex. Overlapping FAM21 repeats and a specific Pro-Leu containing motif bind three distinct sites on Retromer involving both the VPS35 and VPS29 subunits. Mutation of the major VPS35-binding site does not prevent cargo recycling; however, it partially reduces endosomal WASH association indicating that a network of redundant interactions promote endosomal activity of the WASH complex. These studies establish the molecular basis for how SNX27–Retromer is coupled to the WASH complex via overlapping and multiplexed motif-based interactions required for the dynamic assembly of endosomal membrane recycling domains.

Funder

DHAC | National Health and Medical Research Council

Wellcome Trust

UKRI | Medical Research Council

Royal Society

Publisher

Proceedings of the National Academy of Sciences

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