WW Domains Provide a Platform for the Assembly of Multiprotein Networks

Author:

Ingham Robert J.1,Colwill Karen1,Howard Caley1,Dettwiler Sabine2,Lim Caesar S. H.13,Yu Joanna13,Hersi Kadija1,Raaijmakers Judith1,Gish Gerald1,Mbamalu Geraldine1,Taylor Lorne1,Yeung Benny1,Vassilovski Galina1,Amin Manish1,Chen Fu4,Matskova Liudmila4,Winberg Gösta4,Ernberg Ingemar4,Linding Rune1,O'Donnell Paul1,Starostine Andrei1,Keller Walter2,Metalnikov Pavel1,Stark Chris1,Pawson Tony13

Affiliation:

1. Samuel Lunenfeld Research Institute, Mount Sinai Hospital, Toronto, Ontario M5G 1X5, Canada

2. Department of Cell Biology, Biozentrum, University of Basel, Klingelbergstrasse 70, CH-4056 Basel, Switzerland

3. Department of Molecular and Medical Genetics, University of Toronto, Toronto, Ontario M5S 1A8, Canada

4. Karolinska Institutet, Microbiology and Tumor Biology Center (MTC), SE-171 Stockholm, Sweden

Abstract

ABSTRACT WW domains are protein modules that mediate protein-protein interactions through recognition of proline-rich peptide motifs and phosphorylated serine/threonine-proline sites. To pursue the functional properties of WW domains, we employed mass spectrometry to identify 148 proteins that associate with 10 human WW domains. Many of these proteins represent novel WW domain-binding partners and are components of multiprotein complexes involved in molecular processes, such as transcription, RNA processing, and cytoskeletal regulation. We validated one complex in detail, showing that WW domains of the AIP4 E3 protein-ubiquitin ligase bind directly to a PPXY motif in the p68 subunit of pre-mRNA cleavage and polyadenylation factor Im in a manner that promotes p68 ubiquitylation. The tested WW domains fall into three broad groups on the basis of hierarchical clustering with respect to their associated proteins; each such cluster of bound proteins displayed a distinct set of WW domain-binding motifs. We also found that separate WW domains from the same protein or closely related proteins can have different specificities for protein ligands and also demonstrated that a single polypeptide can bind multiple classes of WW domains through separate proline-rich motifs. These data suggest that WW domains provide a versatile platform to link individual proteins into physiologically important networks.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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