Marra G, Chang C L, Laghi L A, Chauhan D P, Young D, Boland C R
Department of Medicine, University of California, San Diego, La Jolla 92093-0688, USA.
Oncogene. 1996 Nov 21;13(10):2189-96.
The hMSH2 protein plays an important role in the DNA mismatch repair system. Since this system is involved in the correction of errors that occur during DNA replication, we studied the expression of hMSH2 protein in resting and DNA-replicating cells, as well as through the cell cycle in cell types with different growth characteristics. Using Western blot analysis, we showed that hMSH2 protein was detectable in resting peripheral blood lymphocytes and thymocytes. However, when these cells were induced to proliferate, the protein level increased at least 12-fold. In cell-cycle dependent expression studies we chose two DNA mismatch repair proficient cell lines (HEL and HeLa-S3), and flow cytometry was used to monitor cell-cycle progression. At every phase in the cell cycle, the steady-state level of hMSH2 was higher than in resting lymphocytes or thymocytes, and only minor variations of expression level were observed through the cell cycle. In particular, a two to fourfold decrease in hMSH2 expression occurred at G1 in HEL and at early S phase in HeLa-S3, but higher expression levels resumed during the replicative and postreplicative phases of the cell cycle. Interestingly, hMSH2 protein expression decreased fourfold when HEL cells were induced to differentiate along the megakaryocyte lineage, when continuous DNA replication occurs without mitosis. These results suggest that a basal level of hMSH2 protein expression is necessary for resting and differentiated cells, and that increased hMSH2 protein expression is required when DNA replication is activated and followed by mitosis.
hMSH2蛋白在DNA错配修复系统中发挥着重要作用。由于该系统参与DNA复制过程中出现的错误校正,我们研究了hMSH2蛋白在静息和DNA复制细胞中的表达情况,以及在具有不同生长特性的细胞类型中整个细胞周期内的表达情况。通过蛋白质免疫印迹分析,我们发现静息外周血淋巴细胞和胸腺细胞中可检测到hMSH2蛋白。然而,当这些细胞被诱导增殖时,蛋白水平至少增加了12倍。在细胞周期依赖性表达研究中,我们选择了两种DNA错配修复功能正常的细胞系(HEL和HeLa-S3),并使用流式细胞术监测细胞周期进程。在细胞周期的每个阶段,hMSH2的稳态水平均高于静息淋巴细胞或胸腺细胞,且在整个细胞周期中仅观察到表达水平的微小变化。具体而言,HEL细胞在G1期和HeLa-S3细胞在S期早期hMSH2表达下降了2至4倍,但在细胞周期的复制期和复制后期恢复到较高表达水平。有趣的是,当HEL细胞被诱导沿巨核细胞谱系分化时,hMSH2蛋白表达下降了四倍,此时会发生无有丝分裂的连续DNA复制。这些结果表明,静息和分化细胞需要基础水平的hMSH2蛋白表达,而当DNA复制被激活并随后进行有丝分裂时,则需要增加hMSH2蛋白表达。