Wang N P, Chen P L, Huang S, Donoso L A, Lee W H, Lee E Y
Department of Pathology, Center for Molecular Genetics, University of California, San Diego, La Jolla 92093.
Cell Growth Differ. 1990 May;1(5):233-9.
The retinoblastoma (RB) gene encodes a nuclear phosphoprotein with a molecular weight of 110,000 (pp110RB) associated with DNA-binding activity. This sequence-nonspecific DNA binding activity was further studied by Southwestern and DNA-cellulose chromatography using purified fusion proteins expressed in Escherichia coli. Three fusion proteins, containing amino acids 612-775, 776-928, and 612-928 of pp110RB, bound to DNA; the binding affinity of the latter was approximately 20-fold higher than those of either smaller region. Other regions of pp110RB had no detectable binding activity, indicating that the carboxyl-terminal region of the RB protein is the major domain responsible for interacting with DNA. Since several potential phosphorylation sites reside within this region, isoforms of RB protein from cellular lysates with various degrees of phosphorylation were compared with respect to their DNA-binding affinity. The hyperphosphorylated form was eluted from DNA-cellulose columns at 0.1-0.3 M NaCl, whereas the hypophosphorylated form appeared in the eluates only at salt concentrations of 0.4-0.7 M, implying that phosphorylation of RB protein may affect its DNA-binding activity. That pp110RB can bind DNA intrinsically, and that this activity can be modulated by phosphorylation, is consistent with the proposed regulatory role of the RB protein in cell growth and differentiation.
视网膜母细胞瘤(RB)基因编码一种分子量为110,000的核磷蛋白(pp110RB),该蛋白具有与DNA结合活性相关的特性。利用在大肠杆菌中表达的纯化融合蛋白,通过蛋白质印迹法和DNA纤维素色谱法进一步研究了这种不依赖序列的DNA结合活性。三种融合蛋白,分别包含pp110RB的612 - 775、776 - 928和612 - 928位氨基酸,能够与DNA结合;后者的结合亲和力比任何一个较小区域的结合亲和力高约20倍。pp110RB的其他区域没有可检测到的结合活性,这表明RB蛋白的羧基末端区域是与DNA相互作用的主要结构域。由于该区域内存在几个潜在的磷酸化位点,因此比较了细胞裂解物中不同磷酸化程度的RB蛋白异构体的DNA结合亲和力。高磷酸化形式在0.1 - 0.3M NaCl浓度下从DNA纤维素柱上洗脱下来,而低磷酸化形式仅在0.4 - 0.7M的盐浓度下出现在洗脱液中,这意味着RB蛋白的磷酸化可能会影响其DNA结合活性。pp110RB能够内在地结合DNA,并且这种活性可以被磷酸化调节,这与RB蛋白在细胞生长和分化中所提出的调节作用是一致的。