Burtelow M A, Roos-Mattjus P M, Rauen M, Babendure J R, Karnitz L M
Division of Developmental Oncology Research, Department of Molecular Pharmacology, Mayo Clinic, Rochester, Minnesota 55905, USA.
J Biol Chem. 2001 Jul 13;276(28):25903-9. doi: 10.1074/jbc.M102946200. Epub 2001 May 4.
DNA damage activates cell cycle checkpoint signaling pathways that coordinate cell cycle arrest and DNA repair. Three of the proteins involved in checkpoint signaling, Rad1, Hus1, and Rad9, have been shown to interact by immunoprecipitation and yeast two-hybrid studies. However, it is not known how these proteins interact and assemble into a complex. In the present study we demonstrated that in human cells all the hRad9 and hHus1 and approximately one-half of the cellular pool of hRad1 interacted as a stable, biochemically discrete complex, with an apparent molecular mass of 160 kDa. This complex was reconstituted by co-expression of all three recombinant proteins in a heterologous system, and the reconstituted complex exhibited identical chromatographic behavior as the endogenous complex. Interaction studies using differentially tagged proteins demonstrated that the proteins did not self-multimerize. Rather, each protein had a binding site for the other two partners, with the N terminus of hRad9 interacting with hRad1, the N terminus of hRad1 interacting with hHus1, and the N terminus of hHus1 interacting with the C terminus of hRad9's predicted PCNA-like region. Collectively, these analyses suggest a model of how these three proteins assemble to form a functional checkpoint complex, which we dubbed the 9-1-1 complex.
DNA损伤会激活细胞周期检查点信号通路,该通路可协调细胞周期停滞和DNA修复。免疫沉淀和酵母双杂交研究表明,参与检查点信号传导的三种蛋白质Rad1、Hus1和Rad9会相互作用。然而,目前尚不清楚这些蛋白质如何相互作用并组装成复合物。在本研究中,我们证明在人类细胞中,所有的hRad9和hHus1以及大约一半的细胞池中的hRad1作为一种稳定的、生化性质离散的复合物相互作用,其表观分子量为160 kDa。通过在异源系统中共表达所有三种重组蛋白,可重构该复合物,并且重构后的复合物表现出与内源性复合物相同的色谱行为。使用差异标记蛋白进行的相互作用研究表明,这些蛋白不会自我多聚化。相反,每种蛋白都有一个与其他两个伙伴的结合位点,hRad9的N末端与hRad1相互作用,hRad1的N末端与hHus1相互作用,hHus1的N末端与hRad9预测的类PCNA区域的C末端相互作用。总体而言,这些分析提出了一个关于这三种蛋白质如何组装形成功能性检查点复合物的模型,我们将其称为9-1-1复合物。