Schreiber-Agus N, Horner J, Torres R, Chiu F C, DePinho R A
Department of Microbiology and Immunology, Albert Einstein College of Medicine, Bronx, New York 10461.
Mol Cell Biol. 1993 May;13(5):2765-75. doi: 10.1128/mcb.13.5.2765-2775.1993.
To gain insight into the role of Myc family oncoproteins and their associated protein Max in vertebrate growth and development, we sought to identify homologs in the zebra fish (Brachydanio rerio). A combination of a polymerase chain reaction-based cloning strategy and low-stringency hybridization screening allowed for the isolation of zebra fish c-, N-, and L-myc and max genes; subsequent structural characterization showed a high degree of conservation in regions that encode motifs of known functional significance. On the functional level, zebra fish Max, like its mammalian counterpart, served to suppress the transformation activity of mouse c-Myc in rat embryo fibroblasts. In addition, the zebra fish c-myc gene proved capable of cooperating with an activated H-ras to effect the malignant transformation of mammalian cells, albeit with diminished potency compared with mouse c-myc. With respect to their roles in normal developing tissues, the differential temporal and spatial patterns of steady-state mRNA expression observed for each zebra fish myc family member suggest unique functions for L-myc in early embryogenesis, for N-myc in establishment and growth of early organ systems, and for c-myc in increasingly differentiated tissues. Furthermore, significant alterations in the steady-state expression of zebra fish myc family genes concomitant with relatively constant max expression support the emerging model of regulation of Myc function in cellular growth and differentiation.
为深入了解Myc家族癌蛋白及其相关蛋白Max在脊椎动物生长发育中的作用,我们试图在斑马鱼(Brachydanio rerio)中鉴定其同源物。基于聚合酶链反应的克隆策略与低严谨度杂交筛选相结合,使得斑马鱼c - myc、N - myc和L - myc以及max基因得以分离;随后的结构表征显示,在编码具有已知功能意义基序的区域具有高度保守性。在功能层面,斑马鱼Max与其哺乳动物对应物一样,能够抑制大鼠胚胎成纤维细胞中小鼠c - Myc的转化活性。此外,斑马鱼c - myc基因被证明能够与激活的H - ras协同作用,从而实现哺乳动物细胞的恶性转化,尽管其效力与小鼠c - myc相比有所降低。关于它们在正常发育组织中的作用,每个斑马鱼myc家族成员观察到的稳态mRNA表达的差异时空模式表明,L - myc在早期胚胎发生中具有独特功能,N - myc在早期器官系统的建立和生长中具有独特功能,而c - myc在分化程度越来越高的组织中具有独特功能。此外,斑马鱼myc家族基因的稳态表达发生显著改变,而max表达相对恒定,这支持了细胞生长和分化中Myc功能调控的新模型。