首页> 外文期刊>Journal of cellular biochemistry. >Phosphorylation of PPP(S/T)P motif of the free LRP6 intracellular domain is not required to activate the Wnt/beta-catenin pathway and attenuate GSK3beta activity.
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Phosphorylation of PPP(S/T)P motif of the free LRP6 intracellular domain is not required to activate the Wnt/beta-catenin pathway and attenuate GSK3beta activity.

机译:不需要LRP6胞内域的PPP(S / T)P基序的磷酸化来激活Wnt /β-catenin途径并减弱GSK3beta活性。

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摘要

The canonical Wnt/beta-catenin signaling pathway plays a critical role in numerous physiological and pathological processes. LRP6 is an essential co-receptor for Wnt/beta-catenin signaling; as transduction of the Wnt signal is strongly dependent upon GSK3beta-mediated phosphorylation of multiple PPP(S/T)P motifs within the membrane-anchored LRP6 intracellular domain. Previously, we showed that the free LRP6 intracellular domain (LRP6-ICD) can activate the Wnt/beta-catenin pathway in a beta-catenin and TCF/LEF-1 dependent manner, as well as interact with and attenuate GSK3beta activity. However, it is unknown if the ability of LRP6-ICD to attenuate GSK3beta activity and modulate activation of the Wnt/beta-catenin pathway requires phosphorylation of the LRP6-ICD PPP(S/T)P motifs, in a manner similar to the membrane-anchored LRP6 intracellular domain. Here we provide evidence that the LRP6-ICD does not have to be phosphorylated at its PPP(S/T)P motif by GSK3beta to stabilize endogenous cytosolic beta-catenin resulting in activation of TCF/LEF-1 and the Wnt/beta-catenin pathway. LRP6-ICD and a mutant in which all 5 PPP(S/T)P motifs were changed to PPP(A)P motifs equivalently interacted with and attenuated GSK3beta activity in vitro, and both constructs inhibited the in situ GSK3beta-mediated phosphorylation of beta-catenin and tau to the same extent. These data indicate that the LRP6-ICD attenuates GSK3beta activity similar to other GSK3beta binding proteins, and is not a result of it being a GSK3beta substrate. Our findings suggest the functional and regulatory mechanisms governing the free LRP6-ICD may be distinct from membrane-anchored LRP6, and that release of the LRP6-ICD may provide a complimentary signaling cascade capable of modulating Wnt-dependent gene expression.
机译:规范的Wnt /β-catenin信号通路在许多生理和病理过程中起着至关重要的作用。 LRP6是Wnt /β-catenin信号转导的必不可少的受体。因为Wnt信号的转导强烈依赖于GSK3beta介导的膜锚定LRP6细胞内结构域中的多个PPP(S / T)P基序的磷酸化。以前,我们表明,自由的LRP6细胞内结构域(LRP6-ICD)可以β-catenin和TCF / LEF-1依赖性方式激活Wnt /β-catenin途径,并与GSK3beta活性相互作用并减弱其活性。然而,尚不清楚LRP6-ICD减弱GSK3beta活性并调节Wnt /β-catenin途径激活的能力是否需要以类似于膜的方式磷酸化LRP6-ICD PPP(S / T)P基序锚定的LRP6细胞内结构域。在这里,我们提供证据表明LRP6-ICD不必在其PPP(S / T)P基序上被GSK3beta磷酸化以稳定内源性胞质β-catenin,从而激活TCF / LEF-1和Wnt / beta-catenin途径。 LRP6-ICD和一个突变体,其中所有5个PPP(S / T)P基序均变为PPP(A)P基序,在体外与GSK3beta活性等效相互作用并减弱其活性,并且两种构建体均抑制原位GSK3beta介导的β磷酸化-catenin和tau程度相同。这些数据表明,LRP6-ICD与其他GSK3beta结合蛋白相似,减弱了GSK3beta活性,而不是因为它是GSK3beta底物。我们的发现表明,控制游离LRP6-ICD的功能和调节机制可能与膜锚定的LRP6不同,并且LRP6-ICD的释放可能提供能够调节Wnt依赖性基因表达的互补信号级联。

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