Chi Peter, Van Komen Stephen, Sehorn Michael G, Sigurdsson Stefan, Sung Patrick
Department of Molecular Biophysics and Biochemistry, Yale University School of Medicine, New Haven, CT 06520, USA.
DNA Repair (Amst). 2006 Mar 7;5(3):381-91. doi: 10.1016/j.dnarep.2005.11.005. Epub 2006 Jan 4.
The Rad51 recombinase polymerizes on ssDNA to yield a right-handed nucleoprotein filament, called the presynaptic filament, that can search for homology in duplex DNA and pair the recombining DNA molecules to form a DNA joint. ATP is needed for presynaptic filament assembly and homologous DNA pairing, but the roles of ATP binding and ATP hydrolysis in the overall reaction scheme have not yet been clearly defined. To address this issue, we have constructed two mutants of hRad51, hRad51 K133A and hRad51 K133R, expressed these mutant variants in Escherichia coli, and purified them to near homogeneity. Both hRad51 mutant variants are greatly attenuated for ATPase activity, but hRad51 K133R retains the ability to protect DNA from restriction enzyme digest and induce topological changes in duplex DNA in an ATP-dependent manner, whereas the hRad51 K133A variant is inactive. With biochemical means, we show that the presynaptic filament becomes greatly stabilized when ATP hydrolysis is prevented, leading to an enhanced ability of the presynaptic filament to catalyze homologous pairing. These results help form the basis for understanding the functions of ATP binding and ATP hydrolysis in hRad51-mediated recombination reactions.
Rad51重组酶在单链DNA上聚合,形成一种右手螺旋的核蛋白细丝,称为突触前细丝,它能够在双链DNA中寻找同源序列,并使重组DNA分子配对以形成DNA接头。突触前细丝组装和同源DNA配对需要ATP,但ATP结合和ATP水解在整个反应过程中的作用尚未明确界定。为了解决这个问题,我们构建了hRad51的两个突变体,即hRad51 K133A和hRad51 K133R,在大肠杆菌中表达这些突变体变体,并将它们纯化至近乎同质。两个hRad51突变体变体的ATP酶活性都大大减弱,但hRad51 K133R保留了以ATP依赖方式保护DNA免受限制性酶消化并诱导双链DNA拓扑变化的能力,而hRad51 K133A变体则无活性。通过生化方法,我们表明当ATP水解被阻止时,突触前细丝变得大大稳定,导致突触前细丝催化同源配对的能力增强。这些结果有助于为理解ATP结合和ATP水解在hRad51介导的重组反应中的功能奠定基础。