Woo E S, Rice R L, Lazo J S
Department of Pharmacology, University of Pittsburgh Cancer Institute, University of Pittsburgh, Pennsylvania 15261, USA.
Oncogene. 1999 Apr 29;18(17):2770-6. doi: 10.1038/sj.onc.1202614.
The dual specificity phosphatase and oncogene Cdc25B has been implicated in the G2/M cell cycle checkpoint, but the mode by which it is regulated remains poorly understood. Regional subcellular redistribution of proteins represents a unique potential regulatory mechanism. Thus, we examined in live cells the subcellular localization characteristics of Cdc25B2 and Cdc25B3 fused to green fluorescent protein. Cdc25B2 partitioned primarily in the cytoplasm during G1 and progressively migrated to the nucleus as cells transited from S to G2/M phase. In contrast, Cdc25B3 maintained a homogeneously staining diffuse phenotype irrespective of cell cycle phase. Treatment of the Cdc25B2-green fluorescent protein stable transfectants with vanadate inhibited the cell cycle dependency of intracellular distribution, while okadaic acid had little effect except in G1, suggesting regulation by at least one phosphorylation-dependent pathway. The DNA topoisomerase II poison and DNA damaging agent, etoposide, inhibited nuclear localization of Cdc25B2 in S phase, possibly by invoking a sequestration cascade. Thus, differences in the spatial distribution of Cdc25B subtypes exist within cells and the 41 amino acid insert in the N-terminus of the Cdc25B3 splice variant encodes an important inhibitory determinant for such regulation. The subcellular redistribution of Cdc25B2 could be functionally important for G2/M checkpoint regulation.
双特异性磷酸酶及癌基因Cdc25B与G2/M细胞周期检查点有关,但对其调控方式仍知之甚少。蛋白质的区域亚细胞重新分布代表了一种独特的潜在调控机制。因此,我们在活细胞中研究了与绿色荧光蛋白融合的Cdc25B2和Cdc25B3的亚细胞定位特征。在G1期,Cdc25B2主要分布在细胞质中,随着细胞从S期过渡到G2/M期,它逐渐迁移到细胞核。相比之下,无论细胞周期处于哪个阶段,Cdc25B3都保持均匀染色的弥散表型。用钒酸盐处理Cdc25B2-绿色荧光蛋白稳定转染细胞可抑制细胞内分布的细胞周期依赖性,而冈田酸除在G1期外几乎没有影响,这表明至少有一条磷酸化依赖性途径参与调控。DNA拓扑异构酶II毒药和DNA损伤剂依托泊苷抑制了Cdc25B2在S期的核定位,可能是通过引发一种隔离级联反应。因此,细胞内Cdc25B亚型的空间分布存在差异,Cdc25B3剪接变体N端的41个氨基酸插入片段编码了这种调控的一个重要抑制决定因素。Cdc25B2的亚细胞重新分布可能对G2/M检查点调控具有重要功能意义。