van Dam H, Castellazzi M
Department of Molecular Cell Biology, Leiden University Medical Center, Sylvius Laboratories, PO Box 9503, 2300 RA Leiden, The Netherlands.
Oncogene. 2001 Apr 30;20(19):2453-64. doi: 10.1038/sj.onc.1204239.
Jun : Fos and Jun : ATF complexes represent two classes of AP-1 dimers that (1) preferentially bind to either heptameric or octameric AP-1 binding sites, and (2) are differently regulated by cellular signaling pathways and oncogene products. To discriminate between the functions of Jun : Fos, Jun : ATF and Jun : Jun, mutants were developed that restrict the ability of Jun to dimerize either to itself, or to Fos(-like) or ATF(-like) partners. Introduction of these mutants in chicken embryo fibroblasts shows that Jun : Fra2 and Jun : ATF2 dimers play distinct, complementary roles in in vitro oncogenesis by inducing either anchorage independence or growth factor independence, respectively. v-Jun : ATF2 rather than v-Jun : Fra2 triggers the development of primary fibrosarcomas in the chicken wing. Genes encoding extracellular matrix components seem to constitute an important subset of v-Jun : ATF2-target genes. Repression of the matrix component SPARC by Jun is essential for the induction of fibrosarcomas. Avian primary cells transformed by either Jun : Fra2 or Jun : ATF2 thus provide powerful tools for the investigation of the downstream pathways involved in oncogenesis. Further genetic studies with Jun dimerization mutants will be required to be precise and extend the specific roles of the Jun : Fos and Jun : ATF dimers during cancer progression in avian and mammalian systems.
Jun:Fos和Jun:ATF复合物代表两类AP-1二聚体,它们(1)优先结合七聚体或八聚体AP-1结合位点,并且(2)受细胞信号通路和癌基因产物的调控方式不同。为了区分Jun:Fos、Jun:ATF和Jun:Jun的功能,构建了一些突变体,这些突变体限制了Jun与自身或Fos(类)或ATF(类)伙伴形成二聚体的能力。将这些突变体导入鸡胚成纤维细胞表明,Jun:Fra2和Jun:ATF2二聚体在体外肿瘤发生中分别通过诱导锚定非依赖性或生长因子非依赖性发挥不同的互补作用。v-Jun:ATF2而非v-Jun:Fra2触发鸡翅原发性纤维肉瘤的发生。编码细胞外基质成分的基因似乎构成了v-Jun:ATF2靶基因的一个重要子集。Jun对基质成分SPARC的抑制对于纤维肉瘤的诱导至关重要。因此,由Jun:Fra2或Jun:ATF2转化的禽类原代细胞为研究肿瘤发生中涉及的下游途径提供了强大的工具。需要进一步对Jun二聚化突变体进行遗传学研究,以精确确定并扩展Jun:Fos和Jun:ATF二聚体在禽类和哺乳动物系统癌症进展过程中的具体作用。