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Downregulation of the Canonical WNT Signaling Pathway by TGFβ1 Inhibits Photoreceptor Differentiation of Adult Human Müller Glia with Stem Cell Characteristics

机译:TGFβ1下调规范的WNT信号通路抑制具有干细胞特征的成年人类Müller胶质细胞的感光细胞分化

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摘要

Müller glia are responsible for the retina regeneration observed in zebrafish. Although the human retina harbors Müller glia with stem cell characteristics, there is no evidence that they regenerate the retina after disease or injury. Transforming growth factor-β (TGFβ) and Wnt signaling regulate retinal neurogenesis and inflammation, but their roles in the neural differentiation of human Müller stem cells (hMSC) are not known. We examined hMSC lines in vitro for the expression of various Wnt signaling components and for their modulation by TGFβ1, as well as the effect of this cytokine on the photoreceptor differentiation of these cells. Culture of hMSC with a combination of factors that induce photoreceptor differentiation of hMSC (FGF2, taurine, retinoic acid, and insulin-like growth factor type1; FTRI), markedly upregulated the expression of components of the canonical Wnt signaling pathway, including WNT2B, DKK1, and active β-CATENIN. Although FTRI did not modify mRNA expression of WNT5B, a component of the noncanonical/planar cell polarity Wnt pathway, it upregulated its secretion. Furthermore, TGFβ1 not only decreased WNT2B expression, but also inhibited FTRI-induced photoreceptor differentiation of hMSC, as determined by expression of the photoreceptor markers NR2E3, RHODOPSIN, and RECOVERIN. Inhibition of TGFβ1 signaling by an ALK5 inhibitor prevented TGFβ1-induced changes in the expression of the two Wnt ligands examined. More importantly, inhibition of the canonical WNT signaling by XAV-939 prevented FTRI-induced photoreceptor differentiation. These observations suggest that TGFβ may play a key role in preventing neural differentiation of hMSC and may constitute a potential target for induction of endogenous regeneration of the human retina.
机译:Müller胶质细胞负责斑马鱼中观察到的视网膜再生。尽管人类视网膜中具有干细胞特征的Müller胶质细胞,但没有证据表明它们在疾病或损伤后会再生视网膜。转化生长因子-β(TGFβ)和Wnt信号调节视网膜神经发生和炎症,但它们在人类Müller干细胞(hMSC)神经分化中的作用尚不清楚。我们在体外检查了hMSC细胞系中各种Wnt信号组件的表达及其通过TGFβ1的调控,以及这种细胞因子对这些细胞的感光细胞分化的影响。将hMSC与诱导hMSC的光感受器分化的因子(FGF2,牛磺酸,视黄酸和胰岛素样生长因子1型; FTRI)结合在一起,可显着上调Wnt信号通路经典成分的表达,包括WNT2B,DKK1 ,以及活性β-连环蛋白。尽管FTRI不会改变WNT5B的mRNA表达,WNT5B是非规范/平面细胞极性Wnt通路的组成部分,但它会上调其分泌。此外,TGFβ1不仅降低了WNT2B的表达,而且抑制了FTRI诱导的hMSC的光感受器分化,这由光感受器标记NR2E3,RHODOPSIN和RECOVERIN的表达确定。通过ALK5抑制剂抑制TGFβ1信号传导可防止TGFβ1诱导的两个Wnt配体表达的变化。更重要的是,XAV-939对经典WNT信号的抑制阻止了FTRI诱导的感光细胞分化。这些观察结果表明,TGFβ可能在预防hMSC的神经分化中起关键作用,并且可能构成诱导人视网膜内源性再生的潜在靶标。

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