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Implications for tetraspanin-enriched microdomain assembly based on structures of CD9 with EWI-F.

Wout Oosterheert ,
Katerina T Xenaki ,
Viviana Neviani ,
Wouter Pos ,
Sofia Doulkeridou ,
Jip Manshande ,
Nicholas M Pearce ,
Loes Mj Kroon-Batenburg ,
Martin Lutz ,
Paul Mp van Bergen En Henegouwen ,
Piet Gros

Abstract

Tetraspanins are eukaryotic membrane proteins that contribute to a variety of signaling processes by organizing partner-receptor molecules in the plasma membrane. How tetraspanins bind and cluster partner receptors into tetraspanin-enriched microdomains is unknown. Here, we present crystal structures of the large extracellular loop of CD9 bound to nanobodies 4C8 and 4E8 and, the cryo-EM structure of 4C8-bound CD9 in complex with its partner EWI-F. CD9-EWI-F displays a tetrameric arrangement with two central EWI-F molecules, dimerized through their ectodomains, and two CD9 molecules, one bound to each EWI-F transmembrane helix through CD9-helices h3 and h4. In the crystal structures, nanobodies 4C8 and 4E8 bind CD9 at loops C and D, which is in agreement with the 4C8 conformation in the CD9-EWI-F complex. The complex varies from nearly twofold symmetric (with the two CD9 copies nearly anti-parallel) to ca. 50° bent arrangements. This flexible arrangement of CD9-EWI-F with potential CD9 homo-dimerization at either end provides a "concatenation model" for forming short linear or circular assemblies, which may explain the occurrence of tetraspanin-enriched microdomains.

More about this publication

Life science alliance

Volume 3
Issue nr. 11
Publication date 01-11-2020

Full text links

Publisher website (DOI) 10.26508/lsa.202000883
Europe PubMed Central 32958604
Pubmed 32958604

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