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确定盐对人类RAD51活性的影响。

Defining the salt effect on human RAD51 activities.

作者信息

Shim Kang-Sup, Schmutte Christoph, Yoder Kristine, Fishel Richard

机构信息

Department of Molecular Virology, Immunology, and Medical Genetics, Human Cancer Genetics, The Ohio State University College of Medicine and Comprehensive Cancer Center, The Ohio State University, Columbus, OH 43102, USA.

出版信息

DNA Repair (Amst). 2006 Jun 10;5(6):718-30. doi: 10.1016/j.dnarep.2006.03.006. Epub 2006 Apr 27.

Abstract

Previous work by Sung and colleagues identified unusual salt requirements for hRAD51 strand exchange compared to RecA [S. Sigurdsson, K. Trujillo, B. Song, S. Stratton, P. Sung, Basis for avid homologous DNA strand exchange by human Rad51 and RPA, J. Biol. Chem. 276 (2001) 8798-8806]. Later studies showed that this salt [(NH4)2SO4] appeared to enhance the ability of hRAD51 to distinguish ssDNA from dsDNA [Y. Liu, A.Z. Stasiak, J.Y. Masson, M.J. McIlwraith, A. Stasiak, S.C. West, Conformational changes modulate the activity of human RAD51 protein, J. Mol. Biol. 337 (2004) 817-827]. The mechanism of this salt effect remains enigmatic. Here, we detail the properties of several neutral salts on hRAD51 activities. We found that the cation identity correlated with the stimulatory effect of these neutral salts on hRAD51 ATPase and strand exchange activities. The salt effect appears to be related to the size of the cation, which may be largely mimicked with the cesium ion. These results are consistent with the hypothesis that stimulating cations induce an important conformation and/or transition state in hRAD51. In the presence of an optimal ammonium-based salt (NaNH4HPO4), hRAD51 mediated strand exchange was successfully performed using a simplified protocol. We confirmed and extend the observation that efficient strand exchange correlated with preferential binding of ssDNA over dsDNA. In addition we observed an induced stability of the hRAD51-DNA complex in the presence of ATP that becomes unstable following ATP hydrolysis (the ADP form or nucleotide free form). These salt-induced characteristics of hRAD51 increasingly resemble RecA-mediated recombinase activities, which should help in dissecting the mechanism of these proteins in homologous recombination.

摘要

与RecA相比,Sung及其同事之前的研究确定了hRAD51链交换对盐的特殊需求[S. Sigurdsson, K. Trujillo, B. Song, S. Stratton, P. Sung,《人类Rad51和RPA进行高效同源DNA链交换的基础》,《生物化学杂志》276 (2001) 8798 - 8806]。后来的研究表明,这种盐[(NH4)2SO4]似乎增强了hRAD51区分单链DNA和双链DNA的能力[Y. Liu, A.Z. Stasiak, J.Y. Masson, M.J. McIlwraith, A. Stasiak, S.C. West,《构象变化调节人类RAD51蛋白的活性》,《分子生物学杂志》337 (2004) 817 - 827]。这种盐效应的机制仍然不明。在此,我们详细阐述了几种中性盐对hRAD51活性的影响。我们发现阳离子的特性与这些中性盐对hRAD51 ATP酶和链交换活性的刺激作用相关。盐效应似乎与阳离子的大小有关,铯离子在很大程度上可能会模拟这种效应。这些结果与以下假设一致,即刺激性阳离子会在hRAD51中诱导一种重要的构象和/或过渡态。在存在最佳铵盐(NaNH4HPO4)的情况下,使用简化方案成功进行了hRAD51介导的链交换。我们证实并扩展了这一观察结果,即高效的链交换与单链DNA相对于双链DNA的优先结合相关。此外,我们观察到在ATP存在下hRAD51 - DNA复合物的诱导稳定性,在ATP水解后(ADP形式或无核苷酸形式)变得不稳定。hRAD51的这些盐诱导特性越来越类似于RecA介导的重组酶活性,这将有助于剖析这些蛋白质在同源重组中的机制。

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