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首页> 外文期刊>Frontiers in Cell and Developmental Biology >SNX9 Inhibits Cell Proliferation and Cyst Development in Autosomal Dominant Polycystic Kidney Disease via Activation of the Hippo-YAP Signaling Pathway
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SNX9 Inhibits Cell Proliferation and Cyst Development in Autosomal Dominant Polycystic Kidney Disease via Activation of the Hippo-YAP Signaling Pathway

机译:SNX9通过激活Hippo-Yap信号通路抑制常染色体显性多囊肾疾病中的细胞增殖和囊肿发育

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Autosomal dominant polycystic kidney disease (ADPKD) is a complex process, involving the alteration of multiple genes and signaling pathways, and the pathogenesis of ADPKD remains largely unknown. Here, we demonstrated the suppressive role of sorting nexin 9 (SNX9) during ADPKD development. SNX9 expression was detected in the kidney tissues of ADPKD patients, for the first time, and SNX9 expression was also detected in Pkd1 knockout (Pkd1-/-) and control mice. Subsequently, a series of gain- and loss-of-function studies were performed, to explore the biological roles and underlying molecular mechanisms of SNX9 in ADPKD progression. The expression of SNX9 was significantly downregulated in ADPKD patients and Pkd1-/- mice compared with control individuals and wild-type mice (Pkd1+/+), respectively. The ectopic expression of SNX9 significantly inhibited ADPKD cell proliferation, renal cyst formation and enlargement, whereas these effects were promoted by SNX9 silencing. Mechanistically, we found that SNX9 interacted directly with yes-associated protein (YAP) and increased the large tumor suppressor kinase 1 (LATS1)-mediated phosphorylation of YAP, resulting in the cytoplasmic retention of YAP, the decreased transcriptional activity of the YAP/TEA domain transcription factor 4 (TEAD4) complex, and, consequently, the inhibition of Hippo target gene expression and ADPKD development. Taken together, our findings provided novel insights into the role played by SNX9 during ADPKD pathogenesis and may reveal novel therapeutic approaches for ADPKD and related kidney diseases.
机译:常染色体占优势性多囊肾疾病(ADPKD)是一种复杂的过程,涉及改变多种基因和信号传导途径,并且ADPKD的发病机制仍然很大程度上是未知的。在这里,我们证明了在ADPKD发育期间分类Nexin 9(SNX9)的抑制作用。在ADPKD患者的肾脏组织中检测到SNX9表达,首次检测到ADPKD患者的肾脏组织中,并且在PKD1敲除(PKD1 - / - )和对照小鼠中也检测到SNX9表达。随后,进行了一系列的增益和函数丧失研究,探讨了SNX9在ADPKD进展中的生物作用和潜在的分子机制。与对照个体和野生型小鼠(PKD1 + / +)相比,在ADPKD患者和PKD1 - / - 小鼠中显着下调SNX9的表达。 SNX9的异位表达显着抑制ADPKD细胞增殖,肾囊肿形成和扩大,而这些效果是通过SNX9沉默促进的。机械地,我们发现SNX9直接用Yes相关的蛋白质(yap)相互作用,并且增加了大肿瘤抑制激酶1(LATS1)介导的YAP磷酸化,导致YAP的细胞质保留,减少yap /茶的转录活性降低结构域转录因子4(Tead4)复合物,因此,抑制河马靶基因表达和ADPKD发育。我们的调查结果集中了,为SNX9在ADPKD发病机制期间提供了新的洞察力,并且可以揭示患有ADPKD和相关肾病的新型治疗方法。

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