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Wnt/Yes-Associated Protein Interactions During Neural Tissue Patterning of Human Induced Pluripotent Stem Cells

机译:人诱导的多能干细胞的神经组织模式中的Wnt /是相关蛋白相互作用。

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摘要

Human induced pluripotent stem cells (hiPSCs) have special ability to self-assemble into neural spheroids or mini-brain-like structures. During the self-assembly process, Wnt signaling plays an important role in regional patterning and establishing positional identity of hiPSC-derived neural progenitors. Recently, the role of Wnt signaling in regulating Yes-associated protein (YAP) expression (nuclear or cytoplasmic), the pivotal regulator during organ growth and tissue generation, has attracted increasing interests. However, the interactions between Wnt and YAP expression for neural lineage commitment of hiPSCs remain poorly explored. The objective of this study is to investigate the effects of Wnt signaling and YAP expression on the cellular population in three-dimensional (3D) neural spheroids derived from hiPSCs. In this study, Wnt signaling was activated using CHIR99021 for 3D neural spheroids derived from human iPSK3 cells through embryoid body formation. Our results indicate that Wnt activation induces nuclear localization of YAP and upregulates the expression of HOXB4, the marker for hindbrain/spinal cord. By contrast, the cells exhibit more rostral forebrain neural identity (expression of TBR1) without Wnt activation. Cytochalasin D was then used to induce cytoplasmic YAP and the results showed the decreased HOXB4 expression. In addition, the incorporation of microparticles in the neural spheroids was investigated for the perturbation of neural patterning. This study may indicate the bidirectional interactions of Wnt signaling and YAP expression during neural tissue patterning, which have the significance in neurological disease modeling, drug screening, and neural tissue regeneration.
机译:人类诱导的多能干细胞(hiPSC)具有自组装成神经球或微脑样结构的特殊能力。在自组装过程中,Wnt信号传导在hiPSC衍生的神经祖细胞的区域模式和建立位置同一性中起重要作用。最近,Wnt信号在调节Yes-associated蛋白(YAP)表达(核或细胞质)(器官生长和组织生成过程中的关键调节器)中的作用引起了越来越多的兴趣。然而,Wnt和YAP表达之间的相互作用对hiPSCs的神经谱系承诺仍然缺乏探讨。这项研究的目的是调查Wnt信号和YAP表达对源自hiPSC的三维(3D)神经球体中细胞群体的影响。在这项研究中,使用CHIR99021激活Wnt信号传导,以通过类人胚形成衍生自人iPSK3细胞的3D神经球体。我们的结果表明,Wnt激活可诱导YAP的核定位并上调HOXB4(后脑/脊髓标记)的表达。相比之下,这些细胞在没有Wnt激活的情况下表现出更多的前额神经前部神经身份(TBR1的表达)。然后使用细胞松弛素D诱导细胞质YAP,结果显示HOXB4表达降低。另外,研究了在神经球体中掺入微粒以扰动神经图案。这项研究可能表明Wnt信号和YAP表达在神经组织模式中的双向相互作用,这在神经疾病建模,药物筛选和神经组织再生中具有重要意义。

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