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HMG-I(Y)在四链交汇点DNA上的定向结合以及与HMG-1和组蛋白H1竞争性结合的分子基础。

Directional binding of HMG-I(Y) on four-way junction DNA and the molecular basis for competitive binding with HMG-1 and histone H1.

作者信息

Hill D A, Pedulla M L, Reeves R

机构信息

Department of Biochemistry and Biophysics and Department of Genetics and Cell Biology, Washington State University, Pullman, WA 99164-4660, USA.

出版信息

Nucleic Acids Res. 1999 May 15;27(10):2135-44. doi: 10.1093/nar/27.10.2135.

Abstract

Histone H1, HMG-1 and HMG-I(Y) are mammalian nuclear proteins possessing distinctive DNA-binding domain structures that share the common property of preferentially binding to four-way junction (4H) DNA, an in vitro mimic of the in vivo genetic recombination intermediate known as the Holliday junction. Nevertheless, these three proteins bind to 4H DNA in vitro with very different affinities and in a mutually exclusive manner. To investigate the molecular basis for these distinctive binding characteristics, we employed base pair resolution hydroxyl radical footprinting to determine the precise sites of nucleotide interactions of both HMG-1 and histone H1 on 4H DNA and compared these contacts with those previously described for HMG-I(Y) on the same substrate. Each of these proteins had a unique binding pattern on 4H DNA and yet shared certain common nucleotide contacts on the arms of the 4H DNA molecule near the branch point. Both the HMG-I(Y) and HMG-1 proteins made specific contacts across the 4H DNA branch point, as well as interacting at discrete sites on the arms, whereas the globular domain of histone H1 bound exclusively to the arms of the 4H DNA substrate without contacting nucleotides at the crossover region. Experiments employing the chemical cleavage reagent 1, 10-orthophenanthroline copper(II) attached to the C-terminal end of a site-specifically mutagenized HMG-I(Y) protein molecule demonstrated that this protein binds to 4H DNA in a distinctly polar, direction-specific manner. Together these results provide an attractive molecular explanation for the observed mutually exclusive 4H DNA-binding characteristics of these proteins and also allow for critical assessment of proposed models for their interaction with 4H DNA substrates. The results also have important implications concerning the possible in vivo roles of HMG-I(Y), histone H1 and HMG-1 in biological processes such as genetic recombination and retroviral integration.

摘要

组蛋白H1、高迁移率族蛋白1(HMG-1)和高迁移率族蛋白I(Y)(HMG-I(Y))是哺乳动物核蛋白,它们具有独特的DNA结合结构域,共同特性是优先结合四链体(4H)DNA,这是一种体外模拟体内遗传重组中间体(即霍利迪连接体)的物质。然而,这三种蛋白在体外与4H DNA结合的亲和力差异很大,且相互排斥。为了研究这些独特结合特性的分子基础,我们采用碱基对分辨率的羟自由基足迹法来确定HMG-1和组蛋白H1在4H DNA上核苷酸相互作用的精确位点,并将这些接触与之前描述的同一底物上HMG-I(Y)的接触进行比较。这些蛋白在4H DNA上都有独特的结合模式,但在4H DNA分子分支点附近的臂上有某些共同的核苷酸接触。HMG-I(Y)和HMG-1蛋白在4H DNA分支点两侧都有特异性接触,并且在臂上的离散位点相互作用,而组蛋白H1的球状结构域仅与4H DNA底物的臂结合,在交叉区域不接触核苷酸。使用连接到位点特异性诱变的HMG-I(Y)蛋白分子C末端的化学切割试剂1,10-邻菲罗啉铜(II)进行的实验表明,该蛋白以明显的极性、方向特异性方式结合4H DNA。这些结果共同为观察到的这些蛋白相互排斥的4H DNA结合特性提供了一个有吸引力的分子解释,也有助于对其与4H DNA底物相互作用的模型进行关键评估。这些结果对于HMG-I(Y)、组蛋白H1和HMG-1在遗传重组和逆转录病毒整合等生物过程中可能的体内作用也具有重要意义。

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