Sibani Sahar, Price Gerald B, Zannis-Hadjopoulos Maria
McGill Cancer Center and Department of Biochemistry, McGill University, Montreal, Quebec, Canada H3G 1Y6.
Biochemistry. 2005 May 31;44(21):7885-96. doi: 10.1021/bi047327n.
The Ku heterodimer, an abundant nuclear protein, binds DNA replication origins in a sequence-specific manner and promotes initiation. In this study, using HCT116 Ku80+/- haplo-insufficient and Orc2(delta/-) hypomorphic cells, the order of binding of Ku and the human origin recognition complex (HsORC) was determined. The nuclear expression of Ku80 was found to be decreased by 60% in Ku80+/- cells, while its general association with chromatin was decreased by 33%. Coimmunoprecipitation studies indicated that the Ku heterodimer associates specifically with the human HsOrc-2, -3, -4, and -6 subunits. Chromatin immunoprecipitation (ChIP) experiments, using cells synchronized to late G1, showed that the association of Ku80 with the lamin B2, beta-globin, and c-myc origins in vivo was decreased by 1.5-, 2.3-, and 2.5-fold, respectively, in Ku80+/- cells. The association of HsOrc-3, -4, and -6 was consistently decreased in all three origins examined in Ku80+/- cells, while that of HsOrc-2 showed no significant variation, indicating that the HsOrc-3, -4, and -6 subunits bind to the origins after Ku80. In Orc2(delta/-) cells, the association of HsOrc-2 with the lamin B2, beta-globin, and c-myc origins was decreased by 2.8-, 4.9-, and 2.8-fold, respectively, relative to wild-type HCT116 cells. Furthermore, nascent strand abundance at these three origins was decreased by 4.5-, 2.3-, and 2.6-fold in Orc2(delta/-) relative to HCT116 cells, respectively. Interestingly, the association of Ku80 with these origins was not affected in this hypomorphic cell line, indicating that Ku and HsOrc-2 bind to origins independently of each other.
Ku异二聚体是一种丰富的核蛋白,它以序列特异性方式结合DNA复制起点并促进起始。在本研究中,使用HCT116 Ku80+/-单倍体不足和Orc2(δ/-)亚形态细胞,确定了Ku与人源起始识别复合物(HsORC)的结合顺序。发现Ku80在Ku80+/-细胞中的核表达降低了60%,而其与染色质的总体结合降低了33%。免疫共沉淀研究表明,Ku异二聚体与人源HsOrc-2、-3、-4和-6亚基特异性结合。使用同步至G1晚期的细胞进行的染色质免疫沉淀(ChIP)实验表明,在Ku80+/-细胞中,Ku80与层粘连蛋白B2、β-珠蛋白和c-myc起点在体内的结合分别降低了1.5倍、2.3倍和2.5倍。在Ku80+/-细胞中检测的所有三个起点中,HsOrc-3、-4和-6的结合持续降低,而HsOrc-2的结合没有显著变化,表明HsOrc-3、-4和-6亚基在Ku80之后结合到起点。在Orc2(δ/-)细胞中,相对于野生型HCT116细胞,HsOrc-2与层粘连蛋白B2、β-珠蛋白和c-myc起点的结合分别降低了2.8倍、4.9倍和2.8倍。此外,相对于HCT116细胞,在Orc2(δ/-)细胞中这三个起点处的新生链丰度分别降低了4.5倍、2.3倍和2.6倍。有趣的是,在这种亚形态细胞系中,Ku8与这些起点的结合不受影响,表明Ku和HsOrc-2彼此独立地结合到起点。