The binding of syndapin SH3 domain to dynamin proline-rich domain involves short and long distance elements

  • Lin Luo
  • , Jing Xue
  • , Ann Kwan
  • , Roland Gamsjaeger
  • , Jerome Wielens
  • , Lisa von Kleist
  • , Liza Cubeddu
  • , Zhong Guo
  • , Jennifer L. Stow
  • , Michael W. Parker
  • , Joel P. Mackay
  • , Phillip J. Robinson

Research output: Contribution to journalArticlepeer-review

19 Citations (Scopus)

Abstract

Dynamin is a GTPase that mediates vesicle fission during synaptic vesicle endocytosis. Its long C-terminal proline-rich domain contains 13 PXXP motifs, which orchestrate its interactions with multiple proteins. The SH3 domains of syndapin and endophilin bind the PXXP motifs called Site 2 and 3 (Pro-786-Pro-793) at the N-terminal end of the proline-rich domain, whereas the amphiphysin SH3 binds Site 9 (Pro-833-Pro-836) toward the C-terminal end. In some proteins, SH3/peptide interactions also involve short distance elements, which are 5-15 amino acid extensions flanking the central PXXP motif for high affinity binding. Here we found two previously unrecognized elements in the central and the C-terminal end of the dynamin proline-rich domain that account for a significant increase in syndapin binding affinity compared with a previously reported Site 2 and Site 3 PXXP peptide alone. The first new element (Gly-807-Gly-811) is short distance element on the C-terminal side of Site 2 PXXP, which might contact a groove identified under the RT loop of the SH3 domain. The second element (Arg-838-Pro-844) is located about 50 amino acids downstream of Site 2. These two elements provide additional specificity tothe syndapin SH3 domain outsideofthe well described polyproline-binding groove. Thus, the dynamin/syndapin interaction is mediated via a network of multiple contacts outside the core PXXP motif over a previously unrecognized extended region of the proline-rich domain. To our knowledge this is the first example among known SH3 interactions to involve spatially separated and extended long-range elements that combine to provide a higher affinity interaction. 7copy;2016 by The American Society for Biochemistry and Molecular Biology, Inc.
Original languageEnglish
Pages (from-to)9411-9424
Number of pages14
JournalJournal of Biological Chemistry
Volume291
Issue number18
Publication statusPublished - 2016

Keywords

  • dynamin
  • endocytosis
  • nuclear magnetic resonance
  • protein-protein interactions

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