Wachira James
Morgan State University, Baltimore, Maryland, United States.
Microsc Microanal. 2020 Aug;26(Suppl 2):1354-1358. doi: 10.1017/s1431927620017821. Epub 2020 Jul 30.
CAD cells are neuronal cells used in studies of cell differentiation and in cellular models of neuropathology. When cultured in differentiation medium, CAD cells exhibit characteristics of mature neurons including the generation of action potential. In addition to being a central signaling kinase in cell survival, AKT1 plays important roles in the nervous system including neuroplasticity and this study examined the localization of exogenous AKT1 in CAD cells. Neuropeptides modulate many signal transduction pathways and melacortins are implicated in regulating growth factor signal transduction pathways, including the PI3K/AKT pathway. AKT1-DsReD was transfected into CAD cells that were stably expressing melanocortin 3-receptor-GFP (MC3R-GFP), a G-protein coupled receptor. The cells were imaged with confocal microscopy to determine the fluorescent protein localization patterns. AKT1-DsRed was predominantly localized in the cytoplasm and the nucleus. Further, expression of exogenous AKT1 in these cell lines led to morphological changes reminiscent of apoptosis. As expected, MC3R-GFP localized to the plasma membrane but it internalized upon cell stimulation with the cognate ligand. In limited areas of the plasma membrane, AKT1-DsRed and MC3R-GFP were colocalized. In conclusion, quantitative studies to understand the role of relative levels of AKT1 in determining cell survival are needed.
CAD细胞是用于细胞分化研究和神经病理学细胞模型的神经元细胞。当在分化培养基中培养时,CAD细胞表现出成熟神经元的特征,包括动作电位的产生。除了作为细胞存活中的核心信号激酶外,AKT1在神经系统中也发挥着重要作用,包括神经可塑性,本研究检测了外源性AKT1在CAD细胞中的定位。神经肽调节许多信号转导途径,促黑素参与调节生长因子信号转导途径,包括PI3K/AKT途径。将AKT1-DsReD转染到稳定表达黑皮质素3受体-GFP(MC3R-GFP,一种G蛋白偶联受体)的CAD细胞中。用共聚焦显微镜对细胞进行成像,以确定荧光蛋白的定位模式。AKT1-DsRed主要定位于细胞质和细胞核。此外,在这些细胞系中外源性AKT1的表达导致了类似于细胞凋亡的形态变化。正如预期的那样,MC3R-GFP定位于质膜,但在用同源配体刺激细胞后会内化。在质膜的有限区域,AKT1-DsRed和MC3R-GFP共定位。总之,需要进行定量研究以了解AKT1相对水平在决定细胞存活中的作用。