Lee G, Gilman M
Cold Spring Harbor Laboratory, New York 11724.
Mol Cell Biol. 1994 Jul;14(7):4579-87. doi: 10.1128/mcb.14.7.4579-4587.1994.
Cytoplasmic calcium is a nearly universal second messenger in eukaryotes. In many cell types, elevated intracellular calcium interacts synergistically with inducers of protein kinase C to elicit activation of complete biological programs normally induced by extracellular signals. In T cells, elevated cytoplasmic calcium is a critical mediator of activation in response to stimulation of the antigen receptor, and in some T-cell lines, treatment with a combination of calcium ionophore and protein kinase C activator mimics authentic antigen treatment. The synergistic interaction of calcium and protein kinase C in T cells is also observed at the level of gene expression. Here we examine the molecular mechanisms through which these agents exert synergistic control over the expression of the c-fos proto-oncogene in a T-cell hybridoma. We find that the principal effect of calcium is on the elongation of c-fos transcripts. This step constitutes the major control of c-fos mRNA accumulation in these cells. In addition, calcium regulates the initiation of c-fos transcription. This effect requires the serum response element of the c-fos gene and an additional sequence immediately 3' to this element. Thus, calcium regulates c-fos expression through at least two distinct molecular pathways.
细胞质钙是真核生物中一种几乎普遍存在的第二信使。在许多细胞类型中,细胞内钙水平升高与蛋白激酶C的诱导剂协同作用,以引发通常由细胞外信号诱导的完整生物学程序的激活。在T细胞中,细胞质钙水平升高是对抗原受体刺激作出反应时激活的关键介质,并且在一些T细胞系中,用钙离子载体和蛋白激酶C激活剂的组合进行处理可模拟真实的抗原处理。在基因表达水平上也观察到钙与蛋白激酶C在T细胞中的协同相互作用。在这里,我们研究了这些因子对T细胞杂交瘤中c-fos原癌基因表达进行协同控制的分子机制。我们发现钙的主要作用是对c-fos转录本的延伸。这一步骤构成了这些细胞中c-fos mRNA积累的主要控制环节。此外,钙调节c-fos转录的起始。这种效应需要c-fos基因的血清反应元件以及该元件紧邻的3'端的一个额外序列。因此,钙通过至少两条不同的分子途径调节c-fos的表达。