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Canonical Wnt inhibitors ameliorate cystogenesis in a mouse ortholog of human ADPKD

机译:规范的Wnt抑制剂可改善人ADPKD小鼠直系同源物中的囊肿形成

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摘要

Autosomal dominant polycystic kidney disease (ADPKD) can be caused by mutations in the PKD1 or PKD2 genes. The PKD1 gene product is a Wnt cell-surface receptor. We previously showed that a lack of the PKD2 gene product, PC2, increases β-catenin signaling in mouse embryonic fibroblasts, kidney renal epithelia, and isolated renal collecting duct cells. However, it remains unclear whether β-catenin signaling plays a role in polycystic kidney disease phenotypes or if a Wnt inhibitor can halt cyst formation in ADPKD disease models. Here, using genetic and pharmacologic approaches, we demonstrated that the elevated β-catenin signaling caused by PC2 deficiency contributes significantly to disease phenotypes in a mouse ortholog of human ADPKD. Pharmacologically inhibiting β-catenin stability or the production of mature Wnt protein, or genetically reducing the expression of Ctnnb1 (which encodes β-catenin), suppressed the formation of renal cysts, improved renal function, and extended survival in ADPKD mice. Our study clearly demonstrates the importance of β-catenin signaling in disease phenotypes associated with Pkd2 mutation. It also describes the effects of two Wnt inhibitors, XAV939 and LGK974, on various Wnt signaling targets as a potential therapeutic modality for ADPKD, for which there is currently no effective therapy.
机译:常染色体显性遗传性多囊肾疾病(ADPKD)可能是由PKD1或PKD2基因突变引起的。 PKD1基因产物是Wnt细胞表面受体。我们先前显示,PKD2基因产物PC2的缺乏会增加小鼠胚胎成纤维细胞,肾肾上皮细胞和分离的肾收集导管细胞中的β-catenin信号传导。但是,尚不清楚β-catenin信号传导是否在多囊性肾脏疾病表型中起作用,或者Wnt抑制剂是否可以阻止ADPKD疾病模型中的囊肿形成。在这里,使用遗传和药理学方法,我们证明了由PC2缺乏引起的升高的β-catenin信号显着促进了人类ADPKD小鼠直系同源基因的疾病表型。在药理学上抑制β-catenin稳定性或产生成熟的Wnt蛋白,或通过遗传降低Ctnnb1(编码β-catenin)的表达,抑制肾囊肿的形成,改善肾功能,并延长ADPKD小鼠的生存期。我们的研究清楚地证明了β-catenin信号在与Pkd2突变相关的疾病表型中的重要性。它还描述了两种Wnt抑制剂XAV939和LGK974对各种Wnt信号转导靶的作用,作为ADPKD的潜在治疗方式,目前尚无有效的治疗方法。

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