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首页> 外文期刊>Development >P0 and PMP22 mark a multipotent neural crest-derived cell type that displays community effects in response to TGF-beta family factors.
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P0 and PMP22 mark a multipotent neural crest-derived cell type that displays community effects in response to TGF-beta family factors.

机译:P0和PMP22标记了一种多能神经c来源的细胞类型,该细胞类型响应TGF-β家族因子而显示出社区效应。

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摘要

Protein zero (P0) and peripheral myelin protein 22 (PMP22) are most prominently expressed by myelinating Schwann cells as components of compact myelin of the peripheral nervous system (PNS), and mutants affecting P0 and PMP22 show severe defects in myelination. Recent expression studies suggest a role of P0 and PMP22 not only in myelination but also during embryonic development. Here we show that, in dorsal root ganglia (DRG) and differentiated neural crest cultures, P0 is expressed in the glial lineage whereas PMP22 is also detectable in neurons. In addition, however, P0 and PMP22 are both expressed in a multipotent cell type isolated from early DRG. Like neural crest stem cells (NCSCs), this P0/PMP22-positive cell gives rise to glia, neurons and smooth-muscle-like cells in response to instructive extracellular cues. In cultures of differentiating neural crest, a similar multipotent cell type can be identified in which expression of P0 and PMP22 precedes the appearance of neural differentiation markers. Intriguingly, this P0/PMP22-positive progenitor exhibits fate restrictions dependent on the cellular context in which it is exposed to environmental signals. While single P0/PMP22-positive progenitor cells can generate smooth muscle in response to factors of the TGF-(beta) family, communities of P0/PMP22-positive cells interpret TGF-(beta) factors differently and produce neurons or undergo increased cell death instead of generating smooth-muscle-like cells. Our data are consistent with a model in which cellular association of postmigratory multipotent progenitors might be involved in the suppression of a non-neural fate in forming peripheral ganglia.
机译:零蛋白(P0)和外周髓磷脂蛋白22(PMP22)最明显地表达于髓鞘雪旺细胞中,它是周围神经系统(PNS)致密髓鞘的成分,影响P0和PMP22的突变体在髓鞘形成中表现出严重缺陷。最近的表达研究表明,P0和PMP22不仅在髓鞘形成中起作用,而且在胚胎发育过程中也起作用。在这里,我们表明,在背根神经节(DRG)和分化的神经rest文化中,P0在胶质谱系中表达,而PMP22在神经元中也可检测到。然而,此外,P0和PMP22均在从早期DRG分离的多能细胞类型中表达。像神经c干细胞(NCSCs)一样,这种P0 / PMP22阳性细胞会响应于指导性的细胞外信号而产生神经胶质,神经元和平滑肌样细胞。在分化神经c的培养物中,可以鉴定出相似的多能细胞类型,其中P0和PMP22的表达先于神经分化标记的出现。有趣的是,该P0 / PMP22阳性祖细胞显示出命运限制,具体取决于其暴露于环境信号的细胞环境。虽然单个P0 / PMP22阳性祖细胞可以响应TGF-β家族的因子而产生平滑肌,但P0 / PMP22阳性细胞的群落对TGF-β因子的解释不同,并产生神经元或细胞死亡增加而不是产生平滑肌样细胞。我们的数据与其中迁移后多能祖细胞的细胞协会可能参与形成周围神经节的非神经命运的抑制的模型一致。

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