4.8 Article

PDZ domain binding selectivity is optimized across the mouse proteome

Journal

SCIENCE
Volume 317, Issue 5836, Pages 364-369

Publisher

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.1144592

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Funding

  1. NIGMS NIH HHS [5 T32 GM07598-25, R01 GM072872, 1 RO1 GM072872-01, R01 GM072872-04] Funding Source: Medline

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PDZ domains have long been thought to cluster into discrete functional classes defined by their peptide-binding preferences. We used protein microarrays and quantitative fluorescence polarization to characterize the binding selectivity of 157 mouse PDZ domains with respect to 217 genome-encoded peptides. We then trained a multidomain selectivity model to predict PDZ domain-peptide interactions across the mouse proteome with an accuracy that exceeds many large-scale, experimental investigations of protein-protein interactions. Contrary to the current paradigm, PDZ domains do not fall into discrete classes; instead, they are evenly distributed throughout selectivity space, which suggests that they have been optimized across the proteome to minimize cross-reactivity. We predict that focusing on families of interaction domains, which facilitates the integration of experimentation and modeling, will play an increasingly important role in future investigations of protein function.

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