Castellano-Castillo Maria, Kostrhunova Hana, Marini Victoria, Kasparkova Jana, Sadler Peter J, Malinge Jean-Marc, Brabec Viktor
Institute of Biophysics, Academy of Sciences of the Czech Republic, v.v.i., Kralovopolska 135, 61265 Brno, Czech Republic.
J Biol Inorg Chem. 2008 Aug;13(6):993-9. doi: 10.1007/s00775-008-0386-3. Epub 2008 May 20.
The present study was performed to examine the affinity of Escherichia coli mismatch repair (MMR) protein MutS for DNA damaged by an intercalating compound. We examined the binding properties of this protein with various DNA substrates containing a single centrally located adduct of ruthenium(II) arene complexes [(eta(6)-arene)Ru(II)(en)Cl][PF(6)] [arene is tetrahydroanthracene (THA) or p-cymene (CYM); en is ethylenediamine]. These two complexes were chosen as representatives of two different classes of monofunctional ruthenium(II) arene compounds which differ in DNA-binding modes: one that involves combined coordination to G N7 along with noncovalent, hydrophobic interactions, such as partial arene intercalation (tricyclic-ring Ru-THA), and the other that binds to DNA only via coordination to G N7 and does not interact with double-helical DNA by intercalation (monoring Ru-CYM). Using electrophoretic mobility shift assays, we examined the binding properties of MutS protein with various DNA duplexes (homoduplexes or mismatched duplexes) containing a single centrally located adduct of ruthenium(II) arene compounds. We have shown that presence of the ruthenium(II) arene adducts decreases the affinity of MutS for ruthenated DNA duplexes that either have a regular sequence or contain a mismatch and that intercalation of the arene contributes considerably to this inhibitory effect. Since MutS initiates MMR by recognizing DNA lesions, the results of the present work support the view that DNA damage due to intercalation is removed from DNA by a mechanism(s) other than MMR.
本研究旨在检测大肠杆菌错配修复(MMR)蛋白MutS对嵌入化合物损伤的DNA的亲和力。我们研究了该蛋白与各种含有单个位于中心位置的钌(II)芳烃配合物加合物的DNA底物的结合特性,该配合物为[(η(6)-芳烃)Ru(II)(乙二胺)Cl][PF(6)] [芳烃为四氢蒽(THA)或对异丙基苯(CYM);乙二胺为乙二胺]。选择这两种配合物作为两类不同的单功能钌(II)芳烃化合物的代表,它们在DNA结合模式上有所不同:一种涉及与鸟嘌呤N7的配位结合以及非共价疏水相互作用,如部分芳烃嵌入(三环Ru-THA),另一种仅通过与鸟嘌呤N7配位结合到DNA,不通过嵌入与双螺旋DNA相互作用(单环Ru-CYM)。使用电泳迁移率变动分析,我们研究了MutS蛋白与各种含有单个位于中心位置的钌(II)芳烃化合物加合物的DNA双链体(同型双链体或错配双链体)的结合特性。我们已经表明,钌(II)芳烃加合物的存在降低了MutS对具有规则序列或含有错配的钌化DNA双链体的亲和力,并且芳烃的嵌入对这种抑制作用有很大贡献。由于MutS通过识别DNA损伤启动MMR,本研究结果支持这样的观点,即嵌入导致的DNA损伤通过MMR以外的机制从DNA中去除。