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首页> 外文期刊>Developmental biology >Secreted Wnt antagonist Dickkopf-1 controls kidney papilla development coordinated by Wnt-7b signalling.
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Secreted Wnt antagonist Dickkopf-1 controls kidney papilla development coordinated by Wnt-7b signalling.

机译:分泌的Wnt拮抗剂Dickkopf-1控制Wnt-7b信号传导协调的肾乳头发育。

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摘要

Wnt signalling regulates several aspects of kidney development such as nephrogenesis, ureteric bud branching and organisation of the collecting duct cells. We addressed the potential involvement of Dickkopf-1 (Dkk1), a secreted Wnt pathway antagonist. Dkk1 is expressed in the developing mouse kidney by pretubular cell aggregates and the nephrons derived from them. Besides the mesenchyme cells, the epithelial ureteric bud and more mature ureteric bud derivatives in the medulla and the papilla tip express the Dkk1 gene. To reveal the potential roles of Dkk1, we generated a floxed allele and used three Cre lines to inactivate Dkk1 function in the developing kidney. Interestingly, Dkk1 deficiency induced by Pax8Cre in the kidneys led in newborn mice to an overgrown papilla that was generated by stimulated proliferation of the collecting duct and loop of Henle cells, implying a role for Dkk1 in the collecting duct and/or loop of Henle development. Since Pax8Cre-induced Dkk1 deficiency reduced marker gene expression, Scnn1b in the collecting duct and Slc12a1 in the loop of Henle, these results together with the extended papilla phenotype are likely reasons for the decreased amount of ions and urine produced by Dkk1-deficient kidneys in the adult. Recombinant Dkk1 protein in cultured cells inhibited Wnt-7b-induced canonical Wnt signalling, which is critical for collecting duct and loop of Henle development. Moreover, Dkk1 deficiency led to an increase in the expression of canonical Wnt signalling of target Lef-1 gene expression in the stromal cells of the developing papilla. Based on the results, we propose that Dkk1 controls the degree of Wnt-7b signalling in the papilla to coordinate kidney organogenesis.
机译:Wnt信号传导调节肾脏发育的几个方面,例如肾生成,输尿管芽分支和收集导管细胞的组织。我们探讨了分泌的Wnt途径拮抗剂Dickkopf-1(Dkk1)的潜在作用。 Dkk1在发育中的小鼠肾脏中由肾小管前细胞聚集体和源自它们的肾单位表达。除间充质细胞外,延髓和乳头尖端的输尿管上皮芽和更成熟的输尿管芽衍生物还表达Dkk1基因。为了揭示Dkk1的潜在作用,我们生成了一个等位基因,并使用三个Cre系来灭活正在发育的肾脏中的Dkk1功能。有趣的是,肾脏中Pax8Cre诱导的Dkk1缺乏症导致新生小鼠的乳头过长,这是由刺激的Henle细胞的收集管和环的增殖产生的,这暗示Dkk1在收集管和/或Henle发育的环中起作用。由于Pax8Cre诱导的Dkk1缺乏症减少了标记基因的表达,收集管中的Scnn1b和Henle环中的Slc12a1减少,这些结果与扩展的乳头状表型一起可能是导致Dkk1缺乏的肾脏产生的离子和尿液减少的原因。成人。培养细胞中的重组Dkk1蛋白抑制Wnt-7b诱导的经典Wnt信号传导,这对于收集Henle发育的导管和环至关重要。此外,Dkk1缺乏症导致发育中的乳头基质细胞中目标Lef-1基因表达的经典Wnt信号表达增加。根据结果​​,我们建议Dkk1控制乳头中Wnt-7b信号传导的程度,以协调肾脏器官的发生。

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