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在缺乏p53或pRb功能的人源和鼠源成纤维细胞中,有丝分裂纺锤体抑制剂存在时的DNA再复制。

DNA rereplication in the presence of mitotic spindle inhibitors in human and mouse fibroblasts lacking either p53 or pRb function.

作者信息

Di Leonardo A, Khan S H, Linke S P, Greco V, Seidita G, Wahl G M

机构信息

Department of Cell and Developmental Biology A. Monroy, University of Palermo, Italy.

出版信息

Cancer Res. 1997 Mar 15;57(6):1013-9.

PMID:9067261
Abstract

Cell cycle checkpoints are biochemical signal transduction pathways that prevent downstream events from being initiated until upstream processes are completed. We analyzed whether the p53 or pRb tumor suppressors are involved in a checkpoint(s) that prevents DNA rereplication in the presence of drugs that interfere with spindle assembly. Normal mouse and human fibroblasts arrested with a 4N DNA content when treated with nocodazole and Colcemid, whereas isogeneic p53-deficient or pRb-deficient derivatives became polyploid. Flow cytometric and cytogenetic analyses demonstrated that the polyploidy resulted from genome-wide rereplication without an intervening mitosis. Thus, p53 and pRb help maintain normal cell ploidy by preventing DNA rereplication prior to mitotic division.

摘要

细胞周期检查点是生化信号转导通路,可防止下游事件在前期过程完成之前启动。我们分析了p53或pRb肿瘤抑制因子是否参与了在存在干扰纺锤体组装的药物时阻止DNA重新复制的检查点。用诺考达唑和秋水仙酰胺处理时,正常小鼠和人成纤维细胞停滞在4N DNA含量,而异基因p53缺陷或pRb缺陷衍生物则变成多倍体。流式细胞术和细胞遗传学分析表明,多倍体是由全基因组重新复制导致的,没有中间的有丝分裂。因此,p53和pRb通过在有丝分裂之前防止DNA重新复制来帮助维持正常细胞倍性。

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