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镁会影响人类RAD51对二磷酸腺苷(ADP)的识别与释放。

Magnesium influences the discrimination and release of ADP by human RAD51.

作者信息

Shim Kang-Sup, Tombline Gregory, Heinen Christopher D, Charbonneau Nicole, Schmutte Christoph, Fishel Richard

机构信息

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

出版信息

DNA Repair (Amst). 2006 Jun 10;5(6):704-17. doi: 10.1016/j.dnarep.2006.03.004. Epub 2006 Apr 19.

Abstract

hRAD51 lacks cooperative DNA-dependent ATPase activity and appears to function with 5-10-fold less Mg2+ compared to RecA. We have further explored the effect of Mg2+ on adenosine nucleotide binding, ATPase, and DNA strand exchange activities. hRAD51 was saturated with the poorly hydrolyzable analog of ATP, ATPgammaS, at approximately 0.08 mM Mg2+. In contrast, > 0.5 mM Mg2+ was required to saturate hRAD51 with ADP. We found ADP to be a significantly less effective competitive inhibitor of the hRAD51 ATPase at low Mg2+ concentrations (0.08 mM). Mg2+ did not appear to affect the ability of ATPgammaS to competitively inhibit the hRAD51 ATPase. Low Mg2+ (0.08-0.12 mM) enhanced the steady-state ATPase of hRAD51 while higher Mg2+ concentration (> 0.3 mM) was inhibitory. At low Mg2+, hRAD51 appeared capable of nearly complete hydrolysis of available ATP, suggesting a lack of ADP product inhibition. There was a strong correlation between the amount of Mg2+ required for stable ADP binding and the inhibition of hRad51 strand exchange activity. Simultaneous inclusion of exogenous ATP and chelation of Mg2+ with EDTA significantly enhanced ADP-->ATP exchange by hRAD51. These studies are consistent with the hypothesis that Mg2+ influences the discrimination and release of ADP, which may sequentially impose an important regulatory step in the hRAD51 ATPase cycle.

摘要

人源RAD51缺乏协同性的依赖DNA的ATP酶活性,与RecA相比,其发挥功能所需的Mg2+浓度似乎低5-10倍。我们进一步探究了Mg2+对腺苷核苷酸结合、ATP酶及DNA链交换活性的影响。在约0.08 mM Mg2+浓度下,人源RAD51被ATP的难水解类似物ATPγS饱和。相比之下,要用ADP使人源RAD51饱和则需要> 0.5 mM Mg2+。我们发现,在低Mg2+浓度(0.08 mM)下,ADP对人源RAD51 ATP酶的竞争性抑制作用明显较弱。Mg2+似乎不影响ATPγS对人源RAD51 ATP酶的竞争性抑制能力。低Mg2+浓度(0.08 - 0.12 mM)增强了人源RAD51的稳态ATP酶活性,而较高的Mg2+浓度(> 0.3 mM)则具有抑制作用。在低Mg2+浓度下,人源RAD51似乎能够几乎完全水解可用的ATP,这表明缺乏ADP产物抑制。稳定结合ADP所需的Mg2+量与对人源RAD51链交换活性的抑制之间存在很强的相关性。同时加入外源ATP并用EDTA螯合Mg2+可显著增强人源RAD51的ADP→ATP交换。这些研究与以下假设一致:Mg2+影响ADP的识别和释放,这可能在人源RAD51 ATP酶循环中依次构成一个重要的调节步骤。

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