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The E3 Ubiquitin Ligase ITCH Negatively Regulates Canonical Wnt Signaling by Targeting Dishevelled Protein

机译:E3泛素连接酶ITCH负调节散乱的蛋白质靶向规范Wnt信号。

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摘要

Dishevelled (Dvl) is a key component in the canonical Wnt signaling pathway and becomes hyperphosphorylated upon Wnt stimulation. Dvl is required for LRP6 phosphorylation, which is essential for subsequent steps of signal transduction, such as Axin recruitment and cytosolic β-catenin stabilization. Here, we identify the HECT-containing Nedd4-like ubiquitin E3 ligase ITCH as a new Dvl-binding protein. ITCH ubiquitinates the phosphorylated form of Dvl and promotes its degradation via the proteasome pathway, thereby inhibiting canonical Wnt signaling. Knockdown of ITCH by RNA interference increased the stability of phosphorylated Dvl and upregulated Wnt reporter gene activity as well as endogenous Wnt target gene expression induced by Wnt stimulation. In addition, we found that both the PPXY motif and the DEP domain of Dvl are critical for its interaction with ITCH, as mutation in the PPXY motif (Dvl2-Y568F) or deletion of the DEP domain led to reduced affinity for ITCH. Consistently, overexpression of ITCH inhibited wild-type Dvl2-induced, but not Dvl2-Y568F mutant-induced, Wnt reporter activity. Moreover, the Y568F mutant, but not wild-type Dvl2, can reverse the ITCH-mediated inhibition of Wnt-induced reporter activity. Collectively, these results indicate that ITCH plays a negative regulatory role in modulating canonical Wnt signaling by targeting the phosphorylated form of Dvl.
机译:Disheveled(Dvl)是经典Wnt信号通路中的关键组成部分,在Wnt刺激后会被过度磷酸化。 Dvl是LRP6磷酸化所必需的,这对于信号转导的后续步骤(如Axin募集和胞质β-catenin稳定化)至关重要。在这里,我们确定包含HECT的Nedd4样泛素E3连接酶ITCH作为新的Dvl结合蛋白。 ITCH泛素化Dvl的磷酸化形式,并通过蛋白酶体途径促进其降解,从而抑制经典Wnt信号传导。通过RNA干扰抑制ITCH可以提高磷酸化Dvl的稳定性,并上调Wnt报道基因的活性,以及​​Wnt刺激诱导的内源性Wnt靶基因的表达。另外,我们发现PPXY基序和Dvl的DEP结构域对于其与ITCH的相互作用都是至关重要的,因为PPXY基序(Dvl2-Y568F)的突变或DEP结构域的缺失导致对ITCH的亲和力降低。一致地,ITCH的过表达抑制野生型Dvl2诱导的,但不抑制Dvl2-Y568F突变体诱导的Wnt报告基因的活性。此外,Y568F突变体(而不是野生型Dvl2)可以逆转ITCH介导的Wnt诱导的报道基因活性的抑制。总的来说,这些结果表明,ITCH通过靶向Dvl的磷酸化形式在调节经典Wnt信号传导中起负调节作用。

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