Laboratory of Animal Reproduction and Physiology, College of Agriculture and Life Sciences, Chungnam National University, Yuseong-gu, Daejeon, 34134, Republic of Korea.
MK Biotech Inc., Daejeon, Republic of Korea.
Sci Rep. 2024 May 27;14(1):12113. doi: 10.1038/s41598-024-63005-y.
SH-SY5Y, a neuroblastoma cell line, can be converted into mature neuronal phenotypes, characterized by the expression of mature neuronal and neurotransmitter markers. However, the mature phenotypes described across multiple studies appear inconsistent. As this cell line expresses common neuronal markers after a simple induction, there is a high chance of misinterpreting its maturity. Therefore, sole reliance on common neuronal markers is presumably inadequate. The Alzheimer's disease (AD) central gene, amyloid precursor protein (APP), has shown contrasting transcript variant dynamics in various cell types. We differentiated SH-SY5Y cells into mature neuron-like cells using a concise protocol and observed the upregulation of total APP throughout differentiation. However, APP transcript variant-1 was upregulated only during the early to middle stages of differentiation and declined in later stages. We identified the maturity state where this post-transcriptional shift occurs, terming it "true maturity." At this stage, we observed a predominant expression of mature neuronal and cholinergic markers, along with a distinct APP variant pattern. Our findings emphasize the necessity of using a differentiation state-sensitive marker system to precisely characterize SH-SY5Y differentiation. Moreover, this study offers an APP-guided, alternative neuronal marker system to enhance the accuracy of the conventional markers.
SH-SY5Y 是一种神经母细胞瘤细胞系,可以转化为成熟的神经元表型,其特征是表达成熟的神经元和神经递质标志物。然而,在多个研究中描述的成熟表型似乎并不一致。由于该细胞系在简单诱导后表达常见的神经元标志物,因此很容易误解其成熟度。因此,仅仅依赖常见的神经元标志物可能是不够的。阿尔茨海默病(AD)的核心基因,淀粉样前体蛋白(APP),在不同的细胞类型中表现出相反的转录变体动态。我们使用简洁的方案将 SH-SY5Y 细胞分化为成熟的神经元样细胞,并观察到总 APP 在整个分化过程中的上调。然而,APP 转录变体-1 仅在分化的早期和中期上调,后期则下降。我们确定了这种转录后转移发生的成熟状态,将其称为“真正的成熟”。在这个阶段,我们观察到成熟的神经元和胆碱能标志物的明显表达,以及独特的 APP 变体模式。我们的研究结果强调了使用分化状态敏感的标记系统来精确描述 SH-SY5Y 分化的必要性。此外,本研究提供了一个 APP 指导的、替代的神经元标记系统,以提高传统标记的准确性。