Papp Sylvia, Fadel Marc P, Michalak Marek, Opas Michal
Department of Laboratory Medicine and Pathobiology, University of Toronto, Toronto, ON, Canada.
Mol Cell Biochem. 2008 Jan;307(1-2):237-48. doi: 10.1007/s11010-007-9602-7. Epub 2007 Oct 2.
Calreticulin is a Ca(2+)-buffering ER chaperone that also modulates cell adhesiveness. In order to study the effect of calreticulin on the expression of adhesion-related genes, we created a calreticulin inducible Human Embryonic Kidney (HEK) 293 cell line. We found that fibronectin mRNA and both intra- and extra-cellular fibronectin protein levels increased following calreticulin induction. However, despite this increase in fibronectin, HEK293 cells did not assemble an extracellular fibrillar fibronectin matrix regardless of the level of calreticulin expression. Furthermore, HEK293 cells exhibited a poorly organized actin cytoskeleton, did not have clustered fibronectin receptors at the cell surface, and did not form focal contacts. This likely accounts for the lack of fibronectin matrix deposition by these cells regardless of calreticulin expression level. Vinculin abundance did not appreciably increase upon calreticulin induction and the level of active c-Src, a regulatory kinase of focal contacts, was found to be abundant and unregulated by calreticulin induction in these cells. The inability to form stable focal contacts and to commence fibronectin fibrillogenesis due to high c-Src activity may be responsible for the poor adhesive phenotype of HEK 293 cells. Thus, we show here that HEK293 cells are not suitable for microscopical studies of cell-substratum adhesions, but are best suited for biochemical studies.
钙网蛋白是一种可缓冲钙离子的内质网伴侣蛋白,它也能调节细胞黏附性。为了研究钙网蛋白对黏附相关基因表达的影响,我们构建了一种钙网蛋白可诱导的人胚肾(HEK)293细胞系。我们发现,在诱导表达钙网蛋白后,纤连蛋白mRNA以及细胞内和细胞外纤连蛋白的蛋白水平均有所增加。然而,尽管纤连蛋白有所增加,但无论钙网蛋白的表达水平如何,HEK293细胞都无法组装细胞外纤维状纤连蛋白基质。此外,HEK293细胞表现出肌动蛋白细胞骨架组织紊乱,细胞表面没有聚集的纤连蛋白受体,也没有形成黏着斑。这可能解释了为什么无论钙网蛋白的表达水平如何,这些细胞都缺乏纤连蛋白基质沉积。在诱导表达钙网蛋白后,纽蛋白的丰度没有明显增加,并且在这些细胞中发现,作为黏着斑调节激酶的活性c-Src水平很高,且不受钙网蛋白诱导的调控。由于高c-Src活性导致无法形成稳定的黏着斑并启动纤连蛋白纤维形成,这可能是HEK 293细胞黏附表型较差的原因。因此,我们在此表明,HEK293细胞不适用于细胞-基质黏附的显微镜研究,但最适合用于生化研究。