首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Non-canonical Wnt mediated neurogenic differentiation of human bone marrow-derived mesenchymal stem cells
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Non-canonical Wnt mediated neurogenic differentiation of human bone marrow-derived mesenchymal stem cells

机译:非典型WNT介导人骨髓衍生间充质干细胞的神经源分化

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Highlights ? Non-canonical Wnts are increased in neurogenic differentiation of stem cells. ? Wnt4, Wnt5a, and Wnt11 regulated Fzd3 activation. ? Non-canonical Wnts regulated in downstream targets of JNK. Abstract Bone marrow-derived mesenchymal stem cells (BM-MSCs), which are characterized by multipotency and self-renewal, are responsible for tissue regeneration and repair. We have previously reported in adipose tissue-derived MSCs that only Wnt5a is enhanced at neurogenic differentiation, and the mechanism of differentiation is dependent on the Wnt5a/JNK pathway; however, the role of Wnt/MAPK pathway is yet to be investigated in neurogenic differentiation in BM-MSCs. We compared the transcriptional expression of Wnt in neurogenic induced-hBM-MSCs (NI-hBM-MSCs) with that in primary hBM-MSCs, using RT-PCR, qPCR, and western blotting. Although the expression of Wnt1 and Wnt2 was unchanged, the expression of Wnt4, Wnt5a, and Wnt11 increased after neurogenic differentiation. In addition, only the expression of frizzled class receptor (Fzd) 3 gene was increased, but not of most of the Fzds and Wnt ligands in NI-hBM-MSCs. Interestingly, Wnt4, Wnt5a, and Wnt11 gene expressions significantly increased in NI-hBM-MSCs by qPCR. In addition, the protein expression level of Wnt4 and Wnt5a, but not Wnt3, increased after neurogenic induction. Furthermore, the expressions of phosphorylated-GSK-3β, ERK1/2, and PKC decreased; however, JNK was activated after neurogenic differentiation. Thus, non-canonical Wnts, i.e., Wnt4, Wnt5a, and Wnt11, regulate neurogenic differentiation through Fzd3 activation and the increase in downstream targets of JNK, which is one of the non-canonical pathways, in hBM-MSCs.
机译:强调 ?在干细胞的神经源性分化中增加非规范性WNT。还是WNT4,WNT5A和WNT11调节FZD3激活。还是在JNK下游目标中调节的非规范WNT。摘要骨髓衍生的间充质干细胞(BM-MSC),其特征在于多能和自我更新,负责组织再生和修复。我们以前在脂肪组织衍生的MSC中报道,只有WNT5A在神经源性分化中增强,分化的机制取决于WNT5A / JNK途径;然而,WNT / MAPK途径的作用尚未在BM-MSCs中的神经源性分化中进行研究。我们将Wnt在神经源性诱导-HBM-MSCs(Ni-HBM-MSCs)中的转录表达与初级HBM-MSCs,使用RT-PCR,QPCR和Western印迹。虽然Wnt1和Wnt2的表达不变,但神经源性分化后Wnt4,Wnt5a和wnt11的表达增加。此外,仅增加了毛细血管受体(FZD)3基因的表达,但不是Ni-HBM-MSCs中的大多数FZDS和WNT配体。有趣的是,Wnt4,Wnt5a和Wnt11基因表达通过QPCR在Ni-HBM-MSC中显着增加。另外,神经源性诱导后Wnt4和Wnt5a的蛋白表达水平,但不是Wnt3增加。此外,磷酸化-GSK-3β,ERK1 / 2和PKC的表达减少;然而,神经源性分化后JNK被激活。因此,非规范WNT,即Wnt4,Wnt5a和Wnt11,通过FZD3激活调节神经源性分化,并且JNK下游靶的增加是HBM-MSC中的非规范途径之一。

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