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a dynamic view of domain-motif interactionsdomain-motif交互的动态视图
A Dynamic View of Domain-Motif Interactions
Eyal Akiva¤a, Gilgi Friedlander¤b, Zohar Itzhaki¤c, Hanah Margalit*
Department of Microbiology and Molecular Genetics, IMRIC, Faculty of Medicine, The Hebrew University of Jerusalem, Jerusalem, Israel
Abstract
Many protein-protein interactions are mediated by domain-motif interaction, where a domain in one protein binds a short
linear motif in its interacting partner. Such interactions are often involved in key cellular processes, necessitating their tight
regulation. A common strategy of the cell to control protein function and interaction is by post-translational modifications
of specific residues, especially phosphorylation. Indeed, there are motifs, such as SH2-binding motifs, in which motif
phosphorylation is required for the domain-motif interaction. On the contrary, there are other examples where motif
phosphorylation prevents the domain-motif interaction. Here we present a large-scale integrative analysis of experimental
human data of domain-motif interactions and phosphorylation events, demonstrating an intriguing coupling between the
two. We report such coupling for SH3, PDZ, SH2 and WW domains, where residue phosphorylation within or next to the
motif is implied to be associated with switching on or off domain binding. For domains that require motif phosphorylation
for binding, such as SH2 domains, we found coupled phosphorylation events other than the ones required for domain
binding. Furthermore, we show that phosphorylation might function as a double switch, concurrently enabling interaction
of the motif with one domain and disabling interaction with another domain. Evolutionary analysis shows that co-evolution
of the motif and the proximal residues capable of phosphorylation predominates over other evolutionary scenarios, in
which the motif appeared
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