首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >A NEW CLASS OF SUPRAMOLECULAR, MIXED-METAL DNA-BINDING AGENTS - THE INTERACTION OF RU-II,PT-II AND OS-II,PT-II BIMETALLIC COMPLEXES WITH DNA
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A NEW CLASS OF SUPRAMOLECULAR, MIXED-METAL DNA-BINDING AGENTS - THE INTERACTION OF RU-II,PT-II AND OS-II,PT-II BIMETALLIC COMPLEXES WITH DNA

机译:一类新的超分子混合金属结合剂-RU-II,PT-II和OS-II,PT-II双金属配合物与DNA的相互作用

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A new type of mixed-metal, supramolecular complex has been designed that incorporates a platinum center to allow binding to DNA, The interaction of two such platinum heterobimetallic complexes of the general formula [(bpy)(2)M(dpb)PtCl2]Cl-2 (M = Ru-II, Os-II; bpy = 2,2'-bipyridine; dpb = 2,3-bis(2-pyridyl)benzaquinoxaline) with DNA is reported herein, The modular design of these systems allows for synthetic variation of individual components within this structural motif. In this case, the remote metal is varied from Ru-II to Os-II. DNA binding was analyzed using non-denaturing agarose gel electrophoresis. The interaction of these complexes with DNA was studied relative to the known DNA cross-linkers, cis-[Pt(NH3)Cl-2] (cisplatin) and trans-([PtCl(NH3)(2)](2)(mu-H2N(CH2)(6)NH2)}(2+) (1,1/t,t). Our mixed-metal Ru,Pt and Os,Pt compounds retard the migration of DNA through the gel in both a concentration-and time-dependent manner. Their effect on the migration of DNA is similar to, although much more dramatic than, that observed for either cisplatin or I,1/t,t, Our evidence suggests a covalent binding of our mixed-metal complexes to DNA through the;platinum site. The degree of retardation of DNA migration suggests a large change in DNA conformation is induced by binding of our mixed-metal complexes. This work establishes these inorganic systems as a new class of DNA-binding agents and lays the groundwork for future efforts to enhance binding in an effort to develop novel anticancer drugs through serial design and testing. [References: 43]
机译:设计了一种新型的混合金属超分子配合物,该配合物结合了一个铂中心,可以与DNA结合。两种此类通式为[(bpy)(2)M(dpb)PtCl2] Cl的铂异双金属配合物之间的相互作用本文报道了带有DNA的-2(M = Ru-II,Os-II; bpy = 2,2'-联吡啶; dpb = 2,3-双(2-吡啶基)苯并喹喔啉),这些系统的模块化设计使得该结构基序中各个成分的合成变化。在这种情况下,远端金属从Ru-II到Os-II。使用非变性琼脂糖凝胶电泳分析DNA结合。相对于已知的DNA交联剂顺式[Pt(NH3)Cl-2](顺铂)和反式([[PtCl(NH3)(2)](2)(mu -H2N(CH2)(6)NH2)}(2+)(1,1 / t,t)。我们的混合金属Ru,Pt和Os,Pt化合物在两种浓度下均能阻止DNA通过凝胶的迁移-它们对DNA迁移的影响与顺铂或I,1 / t,t所观察到的相似,尽管具有更大的戏剧性,但我们的证据表明我们的混合金属配合物与金属的共价结合DNA通过铂位点的迁移。DNA迁移的延迟程度表明,DNA构象的巨大变化是由我们的混合金属配合物的结合诱导的。这项工作将这些无机系统确立为一类新的DNA结合剂,并奠定了这一基础。通过序列设计和测试来开发新的抗癌药物,为将来增强结合的努力奠定基础[参考文献:43]

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