Yang Andy, Chidiac Rony, Russo Emma, Steenland Hendrik, Pauli Quinn, Bonin Robert, Blazer Levi L, Adams Jarrett J, Sidhu Sachdev S, Goeva Aleksandrina, Salahpour Ali, Angers Stephane
Donnelly Centre for Cellular and Biomolecular Research, University of Toronto, Toronto, ON M5S 3E1, Canada.
Leslie Dan Faculty of Pharmacy, University of Toronto, Toronto, ON M5S 3M2, Canada.
Development. 2024 Mar 1;151(5). doi: 10.1242/dev.202545. Epub 2024 Mar 4.
The Wnt/β-catenin signaling governs anterior-posterior neural patterning during development. Current human pluripotent stem cell (hPSC) differentiation protocols use a GSK3 inhibitor to activate Wnt signaling to promote posterior neural fate specification. However, GSK3 is a pleiotropic kinase involved in multiple signaling pathways and, as GSK3 inhibition occurs downstream in the signaling cascade, it bypasses potential opportunities for achieving specificity or regulation at the receptor level. Additionally, the specific roles of individual FZD receptors in anterior-posterior patterning are poorly understood. Here, we have characterized the cell surface expression of FZD receptors in neural progenitor cells with different regional identity. Our data reveal unique upregulation of FZD5 expression in anterior neural progenitors, and this expression is downregulated as cells adopt a posterior fate. This spatial regulation of FZD expression constitutes a previously unreported regulatory mechanism that adjusts the levels of β-catenin signaling along the anterior-posterior axis and possibly contributes to midbrain-hindbrain boundary formation. Stimulation of Wnt/β-catenin signaling in hPSCs, using a tetravalent antibody that selectively triggers FZD5 and LRP6 clustering, leads to midbrain progenitor differentiation and gives rise to functional dopaminergic neurons in vitro and in vivo.
Wnt/β-连环蛋白信号通路在发育过程中调控前后神经模式形成。当前的人类多能干细胞(hPSC)分化方案使用糖原合成酶激酶3(GSK3)抑制剂来激活Wnt信号通路,以促进后神经命运特化。然而,GSK3是一种参与多种信号通路的多效性激酶,由于GSK3抑制发生在信号级联的下游,它绕过了在受体水平实现特异性或调控的潜在机会。此外,单个卷曲蛋白(FZD)受体在前后模式形成中的具体作用尚不清楚。在这里,我们已经对具有不同区域特征的神经祖细胞中FZD受体的细胞表面表达进行了表征。我们的数据揭示了前神经祖细胞中FZD5表达的独特上调,并且随着细胞向后神经命运转变,这种表达会下调。FZD表达的这种空间调控构成了一种以前未报道的调控机制,该机制可沿前后轴调节β-连环蛋白信号通路的水平,并可能有助于中脑-后脑边界的形成。使用选择性触发FZD5和低密度脂蛋白受体相关蛋白6(LRP6)聚集的四价抗体刺激hPSC中的Wnt/β-连环蛋白信号通路,可导致中脑祖细胞分化,并在体外和体内产生功能性多巴胺能神经元。