Seino H, Hisamoto N, Uzawa S, Sekiguchi T, Nishimoto T
Department of Molecular Biology, Graduate School of Medical Science, Kyushu University, Fukuoka, Japan.
J Cell Sci. 1992 Jul;102 ( Pt 3):393-400. doi: 10.1242/jcs.102.3.393.
The RCC1 protein that is required for coupling mitosis with the S phase has a DNA-binding domain in the N-terminal region outside the repeat. We found that RCC1 protein without any DNA-binding activity complemented the tsBN2 mutation with the same efficiency as that of intact RCC1 protein. In ts+ transformants of tsBN2 cells transfected with the RCC1 cDNA lacking the DNA-binding domain, an endogenous RCC1 disappeared at 39.5 degrees C, and the deleted RCC1 protein encoded by the transfected cDNA was found in the cytoplasm, but a significant amount of it was also found in the nuclei. This deleted RCC1 protein was eluted from the nuclei with the same concentration of NaCl and DNase I as was used for the intact RCC1 protein in BHK21 cells. Furthermore, the deleted RCC1 protein co-migrated with the nucleosome fraction on sucrose density gradient analysis. These results indicate that the RCC1 protein binds chromatin with the aid of other unknown protein(s). Thus, the DNA-binding domain of RCC1 protein is not essential for coupling between the S and M phases, but was shown instead to function as a nuclear translocation signal.
将有丝分裂与S期偶联所必需的RCC1蛋白在重复序列之外的N端区域有一个DNA结合结构域。我们发现,没有任何DNA结合活性的RCC1蛋白与完整的RCC1蛋白以相同的效率互补tsBN2突变。在用缺乏DNA结合结构域的RCC1 cDNA转染的tsBN2细胞的ts +转化体中,内源性RCC1在39.5℃消失,并且在细胞质中发现了由转染的cDNA编码的缺失的RCC1蛋白,但在细胞核中也发现了大量的该蛋白。用与用于BHK21细胞中完整RCC1蛋白相同浓度的NaCl和DNase I从细胞核中洗脱该缺失的RCC1蛋白。此外,在蔗糖密度梯度分析中,缺失的RCC1蛋白与核小体部分共迁移。这些结果表明,RCC1蛋白借助其他未知蛋白与染色质结合。因此,RCC1蛋白的DNA结合结构域对于S期和M期之间的偶联不是必需的,而是显示出作为核转运信号起作用。