Wang D, Yang W, Du J, Devalaraja M N, Liang P, Matsumoto K, Tsubakimoto K, Endo T, Richmond A
Department of Cell Biology, Vanderbilt University School of Medicine, Nashville, Tennessee 37232, USA.
Oncogene. 2000 Sep 21;19(40):4647-59. doi: 10.1038/sj.onc.1203820.
The MGSA/GRO protein is endogenously expressed in almost 70% of the melanoma cell lines and tumors, but not in normal melanocytes. We have previously demonstrated that over-expression of human MGSA/GROalpha, beta or gamma in immortalized murine melanocytes (melan-a cells) enables these cells to form tumors in SCID and nude mice. To examine the possibility that the MGSA/GRO effect on melanocyte transformation requires expression of other genes, differential display was performed. One of the mRNA's identified in the screen as overexpressed in MGSA/GRO transformed melan-a clones was the newly described M-Ras or R-Ras3 gene, a member of the Ras gene superfamily. Over-expression of MGSA/GRO upregulates M-Ras expression at both the mRNA and protein levels, and this induction requires an intact glutamine-leucine-arginine (ELR)-motif in the MGSA/GRO protein. Western blot examination of Ras expression revealed that K- and N-Ras proteins are also elevated in MGSA/GRO-expressing melan-a clones, leading to an overall increase in the amount of activated Ras. MGSA/GRO-expressing melan-a clones exhibited enhanced AP-1 activity. The effects of MGSA/GRO on AP-1 activation could be mimicked by over-expression of wild-type M-Ras or a constitutively activated M-Ras mutant in control melan-a cells as monitored by an AP-1-luciferase reporter, while expression of a dominant negative M-Ras blocked AP-1-luciferase activity in MGSA/GRO-transformed melan-a clones. In the in vitro transformation assay, over-expression of M-Ras mimicked the effects of MGSA/GRO by inducing cellular transformation in control melan-a cells, while over-expression of dominant negative M-Ras in MGSA/GROalpha-expressing melan-a-6 cells blocked transformation. These data suggest that MGSA/GRO-mediated transformation requires Ras activation in melanocytes.
MGSA/GRO蛋白在近70%的黑色素瘤细胞系和肿瘤中内源性表达,但在正常黑素细胞中不表达。我们之前已经证明,在永生化的小鼠黑素细胞(黑素-a细胞)中过表达人MGSA/GROα、β或γ能使这些细胞在SCID和裸鼠中形成肿瘤。为了研究MGSA/GRO对黑素细胞转化的影响是否需要其他基因的表达,我们进行了差异显示分析。在筛选中鉴定出的在MGSA/GRO转化的黑素-a克隆中过度表达的一种mRNA是新描述的M-Ras或R-Ras3基因,它是Ras基因超家族的成员。MGSA/GRO的过表达在mRNA和蛋白质水平上均上调M-Ras的表达,并且这种诱导需要MGSA/GRO蛋白中完整的谷氨酰胺-亮氨酸-精氨酸(ELR)基序。对Ras表达的蛋白质印迹分析显示,在表达MGSA/GRO的黑素-a克隆中,K-Ras和N-Ras蛋白也升高,导致活化Ras的总量增加。表达MGSA/GRO的黑素-a克隆表现出增强的AP-1活性。如通过AP-1荧光素酶报告基因监测的那样,在对照黑素-a细胞中过表达野生型M-Ras或组成型活化的M-Ras突变体可以模拟MGSA/GRO对AP-1激活的作用,而显性负性M-Ras的表达则阻断了MGSA/GRO转化的黑素-a克隆中的AP-1荧光素酶活性。在体外转化试验中,M-Ras的过表达通过诱导对照黑素-a细胞的细胞转化来模拟MGSA/GRO的作用,而在表达MGSA/GROα的黑素-a-6细胞中过表达显性负性M-Ras则阻断了转化。这些数据表明,MGSA/GRO介导的转化需要黑素细胞中的Ras激活。