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Disruption of the temporally regulated cloaca endodermal β-catenin signaling causes anorectal malformations

机译:暂时性泄殖腔内胚层β-catenin信号转导的破坏导致肛门直肠畸形

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摘要

The cloaca is temporally formed and eventually divided by the urorectal septum (URS) during urogenital and anorectal organ development. Although congenital malformations, such as anorectal malformations (ARMs), are frequently observed during this process, the underlying pathogenic mechanisms remain unclear. β-Catenin is a critical component of canonical Wnt signaling and is essential for the regulation of cell differentiation and morphogenesis during embryogenesis. The expression of β-catenin is observed in endodermal epithelia, including URS epithelia. We modulated the β-catenin gene conditionally in endodermal epithelia by utilizing tamoxifen-inducible Cre driver line (ShhCreERT2). Both β-catenin loss- and gain-of-function (LOF and GOF) mutants displayed abnormal clefts in the perineal region and hypoplastic elongation of the URS. The mutants also displayed reduced cell proliferation in the URS mesenchyme. In addition, the β-catenin GOF mutants displayed reduced apoptosis and subsequently increased apoptosis in the URS epithelium. This instability possibly resulted in reduced expression levels of differentiation markers, such as keratin 1 and filaggrin, in the perineal epithelia. The expression of bone morphogenetic protein (Bmp) genes, such as Bmp4 and Bmp7, was also ectopically induced in the epithelia of the URS in the β-catenin GOF mutants. The expression of the Msx2 gene and phosphorylated-Smad1/5/8, possible readouts of Bmp signaling, was also increased in the mutants. Moreover, we introduced an additional mutation for a Bmp receptor gene: BmprIA. The ShhCreERT2/+; β-cateninflox(ex3)/+; BmprIAflox/− mutants displayed partial restoration of URS elongation compared with the β-catenin GOF mutants. These results indicate that some ARM phenotypes in the β-catenin GOF mutants were caused by abnormal Bmp signaling. The current analysis revealed the close relation of endodermal β-catenin signaling to the ARM phenotypes. These results are considered to shed light on the pathogenic mechanisms of human ARMs.
机译:泄殖腔是暂时形成的,并最终在泌尿生殖器和肛门直肠器官发育过程中被尿道隔(URS)分开。尽管在此过程中经常观察到先天性畸形,例如肛门直肠畸形(ARMs),但其潜在的致病机制仍不清楚。 β-连环蛋白是经典Wnt信号传导的关键组成部分,对于胚胎发生过程中细胞分化和形态发生的调控至关重要。在包括URS上皮在内的内皮上皮中观察到β-catenin的表达。我们利用他莫昔芬诱导的Cre驱动程序系(Shh CreERT2 )有条件地调节了内皮上皮中的β-catenin基因。 β-catenin功能丧失和功能获得(LOF和GOF)突变体均在会阴区出现异常裂痕,URS发育不良。突变体在URS间充质中也显示出细胞增殖减少。此外,β-cateninGOF突变体在URS上皮细胞中显示出减少的细胞凋亡,并随后增加了细胞凋亡。这种不稳定性可能会导致会阴上皮细胞中分化标记物(例如角蛋白1和丝聚蛋白)的表达水平降低。在β-cateninGOF突变体中,URS的上皮细胞也异位诱导了骨形态发生蛋白(Bmp)基因的表达,例如Bmp4和Bmp7。 Msx2基因和磷酸化的Smad1 / 5/8,可能的Bmp信号读数的表达在突变体中也增加了。此外,我们引入了Bmp受体基因的另一个突变:BmprIA。 Shh CreERT2 / + ; β-catenin flox(ex3)/ + ;与β-cateninGOF 突变体相比,BmprIA flox /- 突变体显示URS延伸部分恢复。这些结果表明β-cateninGOF 突变体中的一些ARM表型是由异常的Bmp信号引起的。当前的分析揭示了内胚层β -catenin信号传导与ARM表型的密切关系。这些结果被认为为人类ARM的致病机制提供了启示。

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