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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Subregional specification of embryonic stem cell-derived ventral telencephalic tissues by timed and combinatory treatment with extrinsic signals.
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Subregional specification of embryonic stem cell-derived ventral telencephalic tissues by timed and combinatory treatment with extrinsic signals.

机译:通过外部信号的定时和组合处理,对源自胚胎干细胞的腹侧脑末梢组织进行分区设置。

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摘要

During early telencephalic development, the major portion of the ventral telencephalic (subpallial) region becomes subdivided into three regions, the lateral (LGE), medial (MGE), and caudal (CGE) ganglionic eminences. In this study, we systematically recapitulated subpallial patterning in mouse embryonic stem cell (ESC) cultures and investigated temporal and combinatory actions of patterning signals. In serum-free floating culture, the dorsal-ventral specification of ESC-derived telencephalic neuroectoderm is dose-dependently directed by Sonic hedgehog (Shh) signaling. Early Shh treatment, even before the expression onset of Foxg1 (also Bf1; earliest marker of the telencephalic lineage), is critical for efficiently generating LGE progenitors, and continuous Shh signaling until day 9 is necessary to commit these cells to the LGE lineage. When induced under these conditions and purified by fluorescence-activated cell sorter, telencephalic cells efficiently differentiated into Nolz1(+)/Ctip2(+) LGE neuronal precursors and subsequently, both in culture and after in vivo grafting, into DARPP32(+) medium-sized spiny neurons. Purified telencephalic progenitors treated with high doses of the Hedgehog (Hh) agonist SAG (Smoothened agonist) differentiated into MGE- and CGE-like tissues. Interestingly, in addition to strong Hh signaling, the efficient specification of MGE cells requires Fgf8 signaling but is inhibited by treatment with Fgf15/19. In contrast, CGE differentiation is promoted by Fgf15/19 but suppressed by Fgf8, suggesting that specific Fgf signals play different, critical roles in the positional specification of ESC-derived ventral subpallial tissues. We discuss a model of the antagonistic Fgf8 and Fgf15/19 signaling in rostral-caudal subpallial patterning and compare it with the roles of these molecules in cortical patterning.
机译:在早期脑神经发育期间,腹侧脑神经(丘脑下)区域的主要部分可分为三个区域,即外侧神经节(LGE),内侧神经节(MGE)和尾神经节(CGE)。在这项研究中,我们系统地概括了小鼠胚胎干细胞(ESC)培养中的骨膜下模式,并研究了模式信号的时间和组合作用。在无血清漂浮培养中,ESC衍生的端脑神经外胚层的背腹规格受声波刺猬(Shh)信号传导的剂量依赖性控制。早期Shh处理,甚至在Foxg1(也是Bf1;端脑谱系的最早标记)开始表达之前,对于有效生成LGE祖细胞至关重要,持续的Shh信号传导直到第9天才是使这些细胞进入LGE谱系的关键。在这些条件下诱导并通过荧光激活细胞分选仪纯化后,端脑细胞可有效分化为Nolz1(+)/ Ctip2(+)LGE神经元前体,随后在培养和体内移植后均分化为DARPP32(+)培养基,棘状神经元。用高剂量的Hedgehog(Hh)激动剂SAG(Smoothened激动剂)处理的纯化的端脑祖细胞分化为MGE和CGE样组织。有趣的是,除了强Hh信号转导外,MGE细胞的有效规格还需要Fgf8信号转导,但受到Fgf15 / 19处理的抑制。相比之下,Cg分化由Fgf15 / 19促进,但由Fgf8抑制,这表明特定的Fgf信号在ESC衍生的腹膜旁组织的位置规范中起着不同的关键作用。我们讨论了在鼻尾掌下丘脑图案中的拮抗性Fgf8和Fgf15 / 19信号传导的模型,并将其与这些分子在皮质图案中的作用进行比较。

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