Massé T, Kelly P T
Immuno-Virologie Moleculaire et Cellulaire, Centre National de la Recherche Scientifique-UMR 5537, Faculte de Medecine Lyon-Laënnec, France.
J Neurosci. 1997 Feb 1;17(3):924-31. doi: 10.1523/JNEUROSCI.17-03-00924.1997.
To examine the role of Ca2+/calmodulin-dependent protein kinase II (CaMKII) in cell differentiation and neuronal functions, stable transformants of PC12 cells were established that expressed levels of the alpha-subunit of CaMKII (alpha CaMKII) equivalent to mammalian neurons. The expression of the transfected alpha CaMKII gene or the endogenous beta CaMKII gene was monitored by RNase protection assays, and alpha CaMKII protein expression was determined by Western blots. Several PC12-derived clones expressed amounts of alpha CaMKII mRNA and alpha CaMKII protein similar to that of hippocampal tissues and several orders of magnitude greater than untransfected PC12 cells. CaMKII catalytic activity was four times higher in extracts from alpha CaMKII-overexpressing compared with untransfected PC12 cells. All clones overexpressing alpha CaMKII displayed altered cellular growth and adhesion properties including increased cell-to-substrate adhesion, decreased cell-to-cell adhesion, enhanced contact inhibition, and prolonged survival at confluency. Furthermore, the alpha CaMKII activity in overexpressing PC12 cells inhibited neurite elongation during NGF-induced differentiation. Inhibition of CaMKII activity in vivo with KN-62 caused the morphological phenotypes of alpha CaMKII-overexpressing cells to partially revert to that of untransfected PC12 cells. These results show that alpha CaMKII catalytic activity affects growth, morphology, and NGF-induced differentiation of PC12 cells.
为研究钙/钙调蛋白依赖性蛋白激酶II(CaMKII)在细胞分化和神经元功能中的作用,构建了PC12细胞稳定转染体,其CaMKIIα亚基(αCaMKII)表达水平与哺乳动物神经元相当。通过核糖核酸酶保护试验监测转染的αCaMKII基因或内源性βCaMKII基因的表达,并通过蛋白质免疫印迹法测定αCaMKII蛋白表达。几个源自PC12的克隆表达的αCaMKII mRNA和αCaMKII蛋白量与海马组织相似,比未转染的PC12细胞高几个数量级。与未转染的PC12细胞相比,αCaMKII过表达提取物中的CaMKII催化活性高四倍。所有过表达αCaMKII的克隆均表现出细胞生长和黏附特性改变,包括细胞与底物的黏附增加、细胞间黏附减少、接触抑制增强以及汇合时存活时间延长。此外,过表达PC12细胞中的αCaMKII活性在神经生长因子(NGF)诱导的分化过程中抑制神经突伸长。用KN-62在体内抑制CaMKII活性导致αCaMKII过表达细胞的形态表型部分恢复为未转染PC12细胞的表型。这些结果表明,αCaMKII催化活性影响PC12细胞的生长、形态和NGF诱导的分化。