Ainscough Justin F-X, Rahman Faisal Abdel, Sercombe Heather, Sedo Alicia, Gerlach Bjorn, Coverley Dawn
CRISTAL, School of Medicine, Leeds University, LS2 9JT, UK.
J Cell Sci. 2007 Jan 1;120(Pt 1):115-24. doi: 10.1242/jcs.03327.
Cip1-interacting zinc finger protein 1 (Ciz1) stimulates DNA replication in vitro and is required for mammalian cells to enter S phase. Here, we show that a significant proportion of Ciz1 is retained in nuclear foci following extraction with nuclease and high salt. This suggests that Ciz1 is normally immobilized by interaction with non-chromatin nuclear structures, consistent with the nuclear matrix. Furthermore, matrix-associated Ciz1 foci strikingly colocalize with sites of newly synthesized DNA in S phase nuclei, suggesting that Ciz1 is present in DNA replication factories. Analysis of green fluorescent protein-tagged fragments indicates that nuclear immobilization of Ciz1 is mediated by sequences in its C-terminal third, encoded within amino acids 708-830. Immobilization occurs in a cell-cycle-dependent manner, most probably during late G1 or early S phase, to coincide with its reported point of action. Although C-terminal domains are sufficient for immobilization, N-terminal domains are also required to specify focal organization. Combined with previous work, which showed that the DNA replication activity of Ciz1 is encoded by N-terminal sequences, we suggest that Ciz1 is composed of two functionally distinct domains: an N-terminal replication domain and a C-terminal nuclear matrix anchor. This could contribute to the formation or function of DNA replication factories in mammalian cells.
Cip1相互作用锌指蛋白1(Ciz1)在体外刺激DNA复制,是哺乳动物细胞进入S期所必需的。在此,我们表明,在用核酸酶和高盐提取后,相当一部分Ciz1保留在核灶中。这表明Ciz1通常通过与非染色质核结构相互作用而固定,这与核基质一致。此外,可以看到与核基质相关的Ciz1灶与S期细胞核中新合成DNA的位点显著共定位,这表明Ciz1存在于DNA复制工厂中。对绿色荧光蛋白标记片段的分析表明,Ciz1的核固定由其C端三分之一内的序列介导,该序列由氨基酸708 - 830编码。固定以细胞周期依赖性方式发生,最可能在G1晚期或S期早期,与其报道的作用点一致。虽然C端结构域足以实现固定,但N端结构域对于确定灶的组织也很必要。结合之前表明Ciz1的DNA复制活性由N端序列编码的工作,我们认为Ciz1由两个功能不同的结构域组成:一个N端复制结构域和一个C端核基质锚定结构域。这可能有助于哺乳动物细胞中DNA复制工厂的形成或功能。