Zhao Wei, Lin Zhong Xiang, Zhang Zhi Qian
Peking University, School of Oncology, and Beijing Institute for Cancer Research, Beijing 100034, China.
Cell Res. 2004 Feb;14(1):60-6. doi: 10.1038/sj.cr.7290203.
To examine the role of gap junctions in cell senescence, the changes of gap junctions in cisplatin-induced premature senescence of primary cultured fibroblasts were studied and compared with the replicative senescent human fibroblasts. Dye transfer assay for gap junction function and immunofluorescent staining for connexin 43 protein distribution were done respectively. Furthermore, cytofluorimetry and DAPI fluorescence staining were performed for cell cycle and apoptosis analysis. p53 gene expression level was detected with indirect immunofluorescence. We found that cisplatin (10 mM) treatment could block cell growth cycle at G1 and induced premature senescence. The premature senescence changes included high frequency of apoptosis, elevation of p53 expression, loss of membranous gap junctions and reduction of dye-transfer capacity. These changes were comparable to the changes of replicative senescence of human fibroblasts. It was also concluded that cisplatin could induce premature senescence concomitant with inhibition of gap junctions in the fibroblasts. Loss of functional gap junctions from the cell membrane may account for the reduced intercellular communication in the premature senescent fibroblasts. The cell system we used may provide a model useful for the study of the gap junction thus promoting agents against premature senescence.
为研究缝隙连接在细胞衰老中的作用,我们研究了顺铂诱导的原代培养成纤维细胞过早衰老过程中缝隙连接的变化,并与复制性衰老的人成纤维细胞进行比较。分别进行了缝隙连接功能的染料转移测定和连接蛋白43蛋白分布的免疫荧光染色。此外,进行了细胞荧光分析和DAPI荧光染色以进行细胞周期和凋亡分析。用间接免疫荧光检测p53基因表达水平。我们发现顺铂(10 mM)处理可使细胞生长周期阻滞在G1期并诱导过早衰老。过早衰老的变化包括高频率的凋亡、p53表达升高、膜性缝隙连接丧失和染料转移能力降低。这些变化与人成纤维细胞复制性衰老的变化相当。还得出结论,顺铂可诱导成纤维细胞过早衰老并伴有缝隙连接的抑制。细胞膜上功能性缝隙连接的丧失可能是过早衰老的成纤维细胞中细胞间通讯减少的原因。我们使用的细胞系统可能为缝隙连接的研究提供一个有用的模型,从而促进抗过早衰老药物的研发。