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人类细胞中的ORC1循环:II. 细胞周期中人类ORC复合物的动态变化。

The ORC1 cycle in human cells: II. Dynamic changes in the human ORC complex during the cell cycle.

作者信息

Ohta Satoshi, Tatsumi Yasutoshi, Fujita Masatoshi, Tsurimoto Toshiki, Obuse Chikashi

机构信息

Nara Institute of Science and Technology, 8916-5 Takayama, Ikoma, Nara 630-0101, Japan.

出版信息

J Biol Chem. 2003 Oct 17;278(42):41535-40. doi: 10.1074/jbc.M307535200. Epub 2003 Aug 8.

Abstract

The origin recognition complex (ORC) plays a central role in regulating the initiation of DNA replication in eukaryotes. The level of the ORC1 subunit oscillates throughout the cell cycle, defining an ORC1 cycle. ORC1 accumulates in G1 and is degraded in S phase, although other ORC subunits (ORCs 2-5) remain at almost constant levels. The behavior of ORC components in human cell nuclei with respect to the ORC1 cycle demonstrates that ORCs 2-5 form a complex that is present throughout the cell cycle and that associates with ORC1 when it accumulates in G1 nuclei. ORCs 2-5 are found in both nuclease-insoluble and -soluble fractions. The appearance of nuclease-insoluble ORCs 2-5 parallels the increase in the level of ORC1 associating with nuclease-insoluble, non-chromatin nuclear structures. Thus, ORCs 2-5 are temporally recruited to nuclease-insoluble structures by formation of the ORC1-5 complex. An artificial reduction in the level of ORC1 in human cells by RNA interference results in a shift of ORC2 to the nuclease-soluble fraction, and the association of MCM proteins with chromatin fractions is also blocked by this treatment. These results indicate that ORC1 regulates the status of the ORC complex in human nuclei by tethering ORCs 2-5 to nuclear structures. This dynamic shift is further required for the loading of MCM proteins onto chromatin. Thus, the pre-replication complex in human cells may be regulated by the temporal accumulation of ORC1 in G1 nuclei.

摘要

起始识别复合体(ORC)在真核生物中DNA复制起始的调控过程中发挥着核心作用。ORC1亚基的水平在整个细胞周期中振荡,定义了一个ORC1周期。ORC1在G1期积累并在S期降解,而其他ORC亚基(ORC2 - 5)的水平几乎保持恒定。人类细胞核中ORC各组分相对于ORC1周期的行为表明,ORC2 - 5形成一个在整个细胞周期中都存在的复合体,并且当ORC1在G1期细胞核中积累时,它会与ORC1结合。ORC2 - 5存在于核酸酶不溶性和可溶性组分中。核酸酶不溶性的ORC2 - 5的出现与和核酸酶不溶性、非染色质核结构结合的ORC1水平的增加平行。因此,通过形成ORC1 - 5复合体,ORC2 - 5在时间上被招募到核酸酶不溶性结构中。通过RNA干扰人为降低人类细胞中ORC1的水平会导致ORC2转移到核酸酶可溶性组分中,并且这种处理也会阻断MCM蛋白与染色质组分的结合。这些结果表明,ORC1通过将ORC2 - 5拴系到核结构上来调节人类细胞核中ORC复合体的状态。这种动态转变对于将MCM蛋白加载到染色质上也是必需的。因此,人类细胞中的复制前复合体可能受ORC1在G1期细胞核中的时间积累调控。

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