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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Analysis of the amyloid precursor protein role in neuritogenesis reveals a biphasic SH-SY5Y neuronal cell differentiation model
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Analysis of the amyloid precursor protein role in neuritogenesis reveals a biphasic SH-SY5Y neuronal cell differentiation model

机译:淀粉样蛋白前体蛋白在神经形成中的作用分析揭示了双相SH-SY5Y神经元细胞分化模型

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The existence of an intrinsic programme controlling neuritogenesis and activated during early neuronal differentiation and regeneration stages is well established. However, the identity and role of each molecular player and event, as well as how such a programme is modified by environmental signals, remain a focus of research. The amyloid precursor protein (APP) is a neuromodulator of the developing and mature nervous system, although in a highly complex manner which is far from clear. To study APP-induced neuritogenesis, the retinoic acid (RA)-induced SH-SY5Y cell differentiation model was first minutely characterized in terms of RA dose, morphological outputs and relevant biochemical markers. The findings reported here unveiled two differentiation phases for the 10M RA dose: 1-4 (4days excluded) and 4-8days, clearly defined by fold increases in the ratio between APP and acetylated Tubulin. Moreover, we describe, for the first time, a unique peak of secreted APP (sAPP)/APP ratio in the first phase. Subsequent APP and sAPP modulations confirmed that a high sAPP/APP ratio potentiates the elongation of smaller processes at the earlier neuritogenic phase. This sAPP/APP ratio drops in the second phase, as holoAPP levels increase to assist the maintenance of the longer neurites, potentially via their stabilization.
机译:内在控制神经发育和在早期神经元分化和再生阶段被激活的内在程序的存在是众所周知的。但是,每个分子参与者和事件的身份和作用,以及如何通过环境信号修改此类程序仍然是研究的重点。淀粉样前体蛋白(APP)是发育中和成熟的神经系统的神经调节剂,尽管其高度复杂的方式尚不清楚。为了研究APP诱导的神经发生,首先从RA剂量,形态输出和相关的生化标记方面对维甲酸(RA)诱导的SH-SY5Y细胞分化模型进行了细致的表征。此处报道的发现揭示了10M RA剂量的两个分化阶段:1-4(不包括4天)和4-8天,明确地由APP与乙酰化微管蛋白之间的比例增加倍数定义。此外,我们首次描述了第一阶段分泌APP(sAPP)/ APP比率的唯一峰值。随后的APP和sAPP调制证实,较高的sAPP / APP比率可在早期神经形成阶段促进较小过程的延长。 sAPP / APP比率在第二阶段下降,因为holoAPP含量增加(可能通过其稳定化来协助维持较长的神经突)。

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