Arava Y, Seger R, Walker M D
Department of Biological Chemistry, Weizmann Institute of Science, Rehovot, Israel 76100, USA.
J Biol Chem. 1999 Aug 27;274(35):24449-52. doi: 10.1074/jbc.274.35.24449.
By screening for genes expressed differentially in pancreatic beta cells, we have isolated a cDNA encoding GRFbeta, a novel 178-amino acid protein whose N terminus is identical to that of GRF1, a calcium-dependent guanine nucleotide exchange factor, and whose C terminus is unrelated to known proteins. We show that both GRF1 and GRFbeta are expressed selectively in beta cell lines, pancreatic islet cells and brain. Treatment of beta cell lines (betaTC1 and HIT) with calcium ionophore led to a significant elevation in activity of the Ras signal transduction pathway, as determined by phosphorylation of extracellular signal-related kinase (ERK). Transfection of beta cells with a plasmid encoding a dominant negative variant of GRF1 led to 70% reduction in ERK phosphorylation, consistent with a role for GRF1 in calcium-dependent Ras signaling in these cells. To examine the possible function of GRFbeta, cultured cells were transfected with a GRFbeta expression vector. This led to a significant reduction in both GRF1-dependent ERK phosphorylation and AP1-dependent reporter gene activity. The results suggest that GRF1 plays a role in mediating calcium-dependent signal transduction in beta cells and that GRFbeta represents a novel dominant negative modulator of Ras signaling.
通过筛选在胰腺β细胞中差异表达的基因,我们分离出了一个编码GRFβ的cDNA,它是一种新的178个氨基酸的蛋白质,其N端与GRF1相同,GRF1是一种钙依赖性鸟嘌呤核苷酸交换因子,其C端与已知蛋白质无关。我们发现GRF1和GRFβ都在β细胞系、胰岛细胞和大脑中选择性表达。用钙离子载体处理β细胞系(βTC1和HIT)导致Ras信号转导途径的活性显著升高,这是通过细胞外信号调节激酶(ERK)的磷酸化来确定的。用编码GRF1显性负变体的质粒转染β细胞导致ERK磷酸化降低70%,这与GRF1在这些细胞的钙依赖性Ras信号传导中的作用一致。为了研究GRFβ的可能功能,用GRFβ表达载体转染培养的细胞。这导致GRF1依赖性ERK磷酸化和AP1依赖性报告基因活性均显著降低。结果表明,GRF1在介导β细胞的钙依赖性信号转导中起作用,而GRFβ是Ras信号传导的一种新的显性负调节剂。