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CDP/Cux转录因子的p110亚型可加速进入S期。

The p110 isoform of the CDP/Cux transcription factor accelerates entry into S phase.

作者信息

Sansregret Laurent, Goulet Brigitte, Harada Ryoko, Wilson Brian, Leduy Lam, Bertoglio Jacques, Nepveu Alain

机构信息

McGill University Health Center, Molecular Oncology Group, 687 Pine Avenue West, room H5.21, Montreal, Quebec H3A 1A1, Canada.

出版信息

Mol Cell Biol. 2006 Mar;26(6):2441-55. doi: 10.1128/MCB.26.6.2441-2455.2006.

Abstract

The CDP/Cux transcription factor was previously found to acquire distinct DNA binding and transcriptional properties following a proteolytic processing event that takes place at the G1/S transition of the cell cycle. In the present study, we have investigated the role of the CDP/Cux processed isoform, p110, in cell cycle progression. Populations of cells stably expressing p110 CDP/Cux displayed a faster division rate and reached higher saturation density than control cells carrying the empty vector. p110 CDP/Cux cells reached the next S phase faster than control cells under various experimental conditions: following cell synchronization in G0 by growth factor deprivation, synchronization in S phase by double thymidine block treatment, or enrichment in G2 by centrifugal elutriation. In each case, duration of the G1 phase was shortened by 2 to 4 h. Gene inactivation confirmed the role of CDP/Cux as an accelerator of cell cycle progression, since mouse embryo fibroblasts obtained from Cutl1z/z mutant mice displayed a longer G1 phase and proliferated more slowly than their wild-type counterparts. The delay to enter S phase persisted following immortalization by the 3T3 protocol and transformation with H-RasV12. Moreover, CDP/Cux inactivation hindered both the formation of foci on a monolayer and tumor growth in mice. At the molecular level, expression of both cyclin E2 and A2 was increased in the presence of p110 CDP/Cux and decreased in its absence. Overall, these results establish that p110 CDP/Cux functions as a cell cycle regulator that accelerates entry into S phase.

摘要

先前发现CDP/Cux转录因子在细胞周期G1/S转换时发生的蛋白水解加工事件后,会获得不同的DNA结合和转录特性。在本研究中,我们研究了CDP/Cux加工后的异构体p110在细胞周期进程中的作用。稳定表达p110 CDP/Cux的细胞群体比携带空载体的对照细胞显示出更快的分裂速度,并达到更高的饱和密度。在各种实验条件下,p110 CDP/Cux细胞比对照细胞更快进入下一个S期:通过生长因子剥夺使细胞同步于G0期,通过双胸苷阻断处理使细胞同步于S期,或通过离心淘析使细胞富集于G2期。在每种情况下,G1期的持续时间缩短了2至4小时。基因失活证实了CDP/Cux作为细胞周期进程加速器的作用,因为从Cutl1z/z突变小鼠获得的小鼠胚胎成纤维细胞显示出比其野生型对应物更长的G1期且增殖更慢。在通过3T3方案永生化并用H-RasV12转化后,进入S期的延迟仍然存在。此外,CDP/Cux失活阻碍了单层上灶的形成以及小鼠体内肿瘤的生长。在分子水平上,在存在p110 CDP/Cux时细胞周期蛋白E2和A2的表达增加,而在其不存在时则降低。总体而言,这些结果表明p110 CDP/Cux作为一种细胞周期调节因子,可加速进入S期。

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