Coué M, Kearsey S E, Méchali M
Institute Jacques Monod, Laboratoire d'Embryologie Moleculaire, Paris, France.
EMBO J. 1996 Mar 1;15(5):1085-97.
A Xenopus homologue of Schizosaccharomyces pombe cdc21 has been characterized as a new member of the MCM family of proteins. The cdc21 protein exhibits cell-cycle dependent chromatin binding and phosphorylation in association with S-phase control. Cdc21 binds to decondensing chromatin at the end of mitosis, localizing to numerous foci which form prior to reconstitution of the nuclear membrane. The association of cdc21 with chromatin occurs in membrane-free high speed extracts and is resistant to detergent extraction. The spatial organization of the cdc21 foci resembles that of pre-replication centres though no co-localization with RP-A was observed. Cdc21 remains bound to chromatin during the initiation of DNA replication and is displaced as the DNA replication forks progress. These subnuclear changes in localization correlate with cell-cycle-regulated changes in phosphorylation. Cdc21 binds to chromatin in an underphosphorylated state, but in early S phase the nuclear localized cdc21 is partially phosphorylated before it is displaced from the chromatin. Cytoplasmic cdc21 remains underphosphorylated but at the beginning of mitosis the entire pool of cdc21 is hyperphosphorylated, possibly by the cdc2/cyclin B kinase. These properties identify Xenopus cdc21 as a possible component of the DNA licensing factor.
粟酒裂殖酵母cdc21的非洲爪蟾同源物已被鉴定为MCM蛋白家族的一个新成员。cdc21蛋白表现出与细胞周期相关的染色质结合以及与S期调控相关的磷酸化。Cdc21在有丝分裂末期与解聚的染色质结合,定位于在核膜重建之前形成的众多位点。Cdc21与染色质的结合发生在无膜高速提取物中,并且对去污剂提取具有抗性。Cdc21位点的空间组织类似于复制前中心,尽管未观察到与RP-A的共定位。在DNA复制起始期间,Cdc21仍与染色质结合,并随着DNA复制叉的推进而被取代。这些亚核定位变化与细胞周期调节的磷酸化变化相关。Cdc21以低磷酸化状态与染色质结合,但在S期早期,核定位的cdc21在从染色质上被取代之前会部分磷酸化。细胞质中的cdc21仍处于低磷酸化状态,但在有丝分裂开始时,整个cdc21池会被过度磷酸化,可能是由cdc2/细胞周期蛋白B激酶导致的。这些特性表明非洲爪蟾cdc21可能是DNA许可因子的一个组成部分。