Spatial overlap of claudin- and phosphatidylinositol phosphate-binding sites on the first PDZ domain of zonula occludens 1 studied by NMR

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Abstract

Background: The tight junction is an intercellular adhesion complex composed of claudins (CLDs), occludin, and the scaffolding proteins zonula occludens 1 (ZO-1) and its two paralogs ZO-2 and ZO-3. ZO-1 is a multifunctional protein that contains three PSD95/Discs large/ZO-1(PDZ) domains. A key functional domain of ZO-1 is the first PDZ domain (ZO-1(PDZ1)) that recognizes the conserved C-termini of CLDs. Methods: In this study, we confirmed that phosphoinositides bound directly to ZO-1(PDZ1) by biochemical and solution NMR experiments. We further determined the solution structure of mouse ZO-1(PDZ1) by NMR and mapped the phosphoinositide binding site onto its molecular surface. Results: The phosphoinositide binding site was spatially overlapped with the CLD-binding site of ZO-1(PDZ1). Accordingly, inositol-hexaphosphate (phytic acid), an analog of the phosphoinositide head group, competed with ZO-1(PDZ)-CLD interaction. Conclusions: The results suggested that the PDZ domain–phosphoinositide interaction plays a regulatory role in biogenesis and homeostasis of the tight junction.

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Hiroaki, H., Satomura, K., Goda, N., Nakakura, Y., Hiranuma, M., Tenno, T., … Ikegami, T. (2018). Spatial overlap of claudin- and phosphatidylinositol phosphate-binding sites on the first PDZ domain of zonula occludens 1 studied by NMR. Molecules, 23(10). https://doi.org/10.3390/molecules23102465

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