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Regulation of programmed cell death during neural induction in the chick embryo

机译:雏鸡胚胎神经诱导过程中程序性细胞死亡的调控

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To study early responses to neural inducing signals from the organizer (Hensen's node), a differential screen was performed in primitive streak stage chick embryos, comparing cells that had or had not been exposed to a node graft for 5 hours. Three of the genes isolated have been implicated in Programmed Cell Death (PCD): Defender Against Cell Death (Dad1), Polyubiquitin II (UbII) and Ferritin Heavy chain (fth1). We therefore explored the potential involvement of PCD in neural induction. Dad1, UbII and fth1 are expressed in partly overlapping domains during early neural plate development, along with the pro-apoptotic gene Cas9 and the death effector Cas3. Dad1 and UbII are induced by a node graft within 3 hours. TUNEL staining revealed that PCD is initially random, but both during normal development and following neural induction by a grafted node, it becomes concentrated at the border of the forming neural plate and anterior non-neural ectoderm and downregulated from the neural plate itself. PCD was observed in regions of Caspase expression that are free from Dad1, consistent with the known anti-apoptotic role of Dad1. However, gain- and loss-of-function of any of these genes had no detectable effect on cell identity or on neural plate development. This study reveals that early development of the neural plate is accompanied by induction of putative pro- and anti-apoptotic genes in distinct domains. We suggest that the neural plate is protected against apoptosis, confining cell death to its border and adjacent non-neural ectoderm.
机译:为了研究对组织者(Hensen淋巴结)对神经诱导信号的早期反应,在原始条纹阶段的雏鸡胚胎中进行了差异筛选,比较了在5个小时内未接触过淋巴结移植的细胞。分离出的三个基因与程序性细胞死亡(PCD)有关:防御细胞死亡的防御者(Dad1),多泛素II(UbII)和铁蛋白重链(fth1)。因此,我们探讨了PCD在神经诱导中的潜在作用。 Dad1,UbII和fth1与促凋亡基因Cas9和死亡效应子Cas3一起在早期神经板发育过程中的部分重叠域中表达。 Dad1和UbII在3小时内由结节移植物诱导。 TUNEL染色显示PCD最初是随机的,但在正常发育过程中以及在通过移植结节进行神经诱导后,PCD都集中在形成的神经板和前非神经外胚层的边界处,并从神经板本身下调。在不含Dad1的Caspase表达区域中观察到PCD,这与已知的Dad1的抗凋亡作用一致。但是,这些基因中任何一个的功能获得和丧失对细胞身份或神经板发育均无可检测的影响。这项研究表明,神经板的早期发育伴随着在不同域中推定的促凋亡和抗凋亡基因的诱导。我们建议保护神经板免受凋亡,将细胞死亡限制在其边界和邻近的非神经外胚层。

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