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Dpr Acts as a Molecular Switch Inhibiting Wnt Signaling when Unphosphorylated but Promoting Wnt Signaling when Phosphorylated by Casein Kinase Iδ/ε

机译:Dpr充当分子开关当未磷酸化时抑制Wnt信号传导但在酪蛋白激酶Iδ/ε磷酸化时促进Wnt信号传导。

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摘要

The Wnt pathway is a key regulator of development and tumorigenesis. Dpr (Dact/Frodo) influences Wnt signaling in part through the interaction of its PDZ-B domain with Dsh's PDZ domain. Studies have shown that XDpr1a and its close relative, Frodo, are involved in multiple steps of the Wnt pathway in either inhibitory or activating roles. We found that XDpr1a is phosphorylated by casein kinase Iδ/ε (CKIδ/ε), an activator of Wnt signaling, in the presence of XDsh. Abrogating XDpr1a's ability to bind XDsh through mutation of XDpr1a's PDZ-B domain blocks CK1δ/ε's phosphorylation of XDpr1a. Conversely, XDsh possessing a mutation in its PDZ domain that is unable to bind XDpr1a does not promote XDpr1a phosphorylation. Phosphorylation of XDpr1a and XDsh by CKIδ/ε decreases their interaction. Moreover, the phosphorylation of XDpr1a by CKIδ/ε not only abrogates XDpr1a's promotion of β-catenin degradation but blocks β-catenin degradation. Our data suggest that XDpr1a phosphorylation by CKIδ/ε is dependent on the interaction of XDpr1a's PDZ-B domain with XDsh's PDZ domain, and that the phosphorylation state of XDpr1a determines whether it inhibits or activates Wnt signaling.
机译:Wnt途径是发育和肿瘤发生的关键调节剂。 Dpr(Dact / Frodo)部分地通过其PDZ-B域与Dsh的PDZ域的相互作用来影响Wnt信号。研究表明,XDpr1a及其近亲Frodo以抑制或激活作用参与Wnt途径的多个步骤。我们发现存在XDsh时,XDpr1a被酪蛋白激酶Iδ/ε(CKIδ/ε)(Wnt信号的激活剂)磷酸化。通过XDpr1a的PDZ-B结构域的突变来放弃XDpr1a的结合XDsh的能力会阻止XDpr1a的CK1δ/ε磷酸化。相反,XDsh在其PDZ域中具有无法与XDpr1a结合的突变,不会促进XDpr1a磷酸化。 CKIδ/ε对XDpr1a和XDsh进行磷酸化会降低它们之间的相互作用。此外,CKIδ/ε对XDpr1a的磷酸化作用不仅消除了XDpr1a对β-catenin降解的促进作用,而且阻止了β-catenin的降解。我们的数据表明,CKIδ/ε引起的XDpr1a磷酸化取决于XDpr1a的PDZ-B结构域与XDsh的PDZ结构域的相互作用,并且XDpr1a的磷酸化状态决定了其抑制还是激活Wnt信号传导。

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