Goldfarb A N, Wolf M L, Greenberg J M
Department of Laboratory Medicine and Pathology, University of Minnesota Medical School, Minneapolis.
Am J Pathol. 1992 Nov;141(5):1125-37.
We have designed a chimeric gene, Id-SCL, in which the 3' helix-loop-helix encoding portion of the presumptive oncogene SCL/tal is joined to the 5' coding portion of Id, an inhibitory helix-loop-helix gene. The predicted protein product of this chimeric gene contains the helix-loop-helix dimerization domain of SCL/tal, but, lacking a basic DNA binding domain, is predicted to have the inhibitory function of the Id product. Expression of the Id-SCL fusion gene in stably transfected K562 cells reproducibly resulted in nuclear segmentation and depressed growth rates; both of these phenotypic effects demonstrated a dosage dependence on the levels of Id-SCL mRNA and protein expressed in the various clones. Electron microscopy of cells expressing high levels of Id-SCL mRNA showed a significant increase in cytoplasmic perinuclear thin filaments and diminution of marginal heterochromatin in the nuclei. No other changes in hematopoietic differentiation status were observed in association with Id-SCL expression. Expression of intact Id and SCL/tal genes, as well as deletion mutants of Id and SCL/tal, independently transfected into K562 cells, indicated that the nuclear segmentation effect is dependent on the presence of a protein possessing a helix-loop-helix domain but lacking a basic domain. Our studies suggest that the balance of transcriptional inhibitory and stimulatory helix-loop-helix proteins in cells may be important determinants of proliferation and of structural organization within cells.
我们设计了一种嵌合基因Id-SCL,其中假定的癌基因SCL/tal的3'螺旋-环-螺旋编码部分与Id(一种抑制性螺旋-环-螺旋基因)的5'编码部分相连。这种嵌合基因预测的蛋白质产物包含SCL/tal的螺旋-环-螺旋二聚化结构域,但由于缺少碱性DNA结合结构域,预计具有Id产物的抑制功能。Id-SCL融合基因在稳定转染的K562细胞中的表达可重复性地导致细胞核分割和生长速率降低;这两种表型效应均显示出对各个克隆中Id-SCL mRNA和蛋白质表达水平的剂量依赖性。对表达高水平Id-SCL mRNA的细胞进行电子显微镜观察显示,细胞质核周细丝显著增加,细胞核中边缘异染色质减少。未观察到与Id-SCL表达相关的造血分化状态的其他变化。将完整的Id和SCL/tal基因以及Id和SCL/tal的缺失突变体分别转染到K562细胞中,结果表明细胞核分割效应取决于具有螺旋-环-螺旋结构域但缺少碱性结构域的蛋白质的存在。我们的研究表明,细胞中转录抑制性和刺激性螺旋-环-螺旋蛋白的平衡可能是细胞内增殖和结构组织的重要决定因素。