Division of Medicine, University College London , Royal Free Campus, Rowland Hill Street, London NW3 2PF, United Kingdom.
J Proteome Res. 2013 Mar 1;12(3):1436-53. doi: 10.1021/pr3010919. Epub 2013 Feb 6.
Depletion of DNA replication initiation factors such as CDC7 kinase triggers the origin activation checkpoint in healthy cells and leads to a protective cell cycle arrest at the G1 phase of the mitotic cell division cycle. This protective mechanism is thought to be defective in cancer cells. To investigate how this checkpoint is activated and maintained in healthy cells, we conducted a quantitative SILAC analysis of the nuclear- and cytoplasmic-enriched compartments of CDC7-depleted fibroblasts and compared them to a total cell lysate preparation. Substantial changes in total abundance and/or subcellular location were detected for 124 proteins, including many essential proteins associated with DNA replication/cell cycle. Similar changes in protein abundance and subcellular distribution were observed for various metabolic processes, including oxidative stress, iron metabolism, protein translation and the tricarboxylic acid cycle. This is accompanied by reduced abundance of two karyopherin proteins, suggestive of reduced nuclear import. We propose that altered nucleo-cytoplasmic trafficking plays a key role in the regulation of cell cycle arrest. The results increase understanding of the mechanisms underlying maintenance of the DNA replication origin activation checkpoint and are consistent with our proposal that cell cycle arrest is an actively maintained process that appears to be distributed over various subcellular locations.
耗尽 DNA 复制起始因子,如 CDC7 激酶,会在健康细胞中触发起始激活检查点,导致有丝分裂细胞分裂周期的 G1 期保护性细胞周期停滞。这种保护机制被认为在癌细胞中存在缺陷。为了研究这个检查点在健康细胞中是如何被激活和维持的,我们对 CDC7 耗尽的成纤维细胞的核和细胞质富集区进行了定量 SILAC 分析,并将其与总细胞裂解物制备进行了比较。在总丰度和/或亚细胞定位方面,检测到了 124 种蛋白质的大量变化,包括与 DNA 复制/细胞周期相关的许多必需蛋白质。许多代谢过程(包括氧化应激、铁代谢、蛋白质翻译和三羧酸循环)的蛋白质丰度和亚细胞分布也发生了类似的变化。这伴随着两种核输入蛋白的丰度降低,提示核输入减少。我们提出,改变核质转运在细胞周期停滞的调节中起着关键作用。这些结果增加了对维持 DNA 复制起始激活检查点的机制的理解,并且与我们的假设一致,即细胞周期停滞是一个主动维持的过程,似乎分布在各种亚细胞位置。