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Mechanism of the formation of DNA-protein cross-links by antitumor cisplatin

机译:抗肿瘤顺铂形成DNA-蛋白质交联的机理

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摘要

DNA-protein cross-links are formed by various DNA-damaging agents including antitumor platinum drugs. The natures of these ternary DNA-Pt-protein complexes (DPCLs) can be inferred, yet much remains to be learned about their structures and mechanisms of formation. We investigated the origin of these DPCLs and their cellular processing on molecular level using gel electrophoresis shift assay. We show that in cell-free media cisplatin [cis-diamminedichloridoplatinum(II)] forms DPCLs more effectively than ineffective transplatin [trans-diamminedichloridoplatinum(II)]. Mechanisms of transformation of individual types of plain DNA adducts of the platinum complexes into the DPCLs in the presence of several DNA-binding proteins have been also investigated. The DPCLs are formed by the transformation of DNA monofunctional and intrastrand cross-links of cisplatin. In contrast, interstrand cross-links of cisplatin and monofunctional adducts of transplatin are stable in presence of the proteins. The DPCLs formed by cisplatin inhibit DNA polymerization or removal of these ternary lesions from DNA by nucleotide excision repair system more effectively than plain DNA intrastrand or monofunctional adducts. Thus, the bulky DNA-protein cross-links formed by cisplatin represent a more distinct and persisting structural motif recognized by the components of downstream cellular systems processing DNA damage considerably differently than the plain DNA adducts of this metallodrug.
机译:DNA-蛋白质交联是由各种DNA破坏剂(包括抗肿瘤铂药物)形成的。这些三元DNA-Pt-蛋白质复合物(DPCLs)的性质可以推断,但关于它们的结构和形成机理尚有许多知识有待研究。我们使用凝胶电泳位移分析技术在分子水平上研究了这些DPCL的起源及其细胞加工。我们显示,在无细胞培养基中,顺铂[cis-diamminedichloridoplatinum(II)]比无效的反铂[trans-diamminedichloridoplatinum(II)]更有效地形成DPCL。还研究了在几种DNA结合蛋白存在下,铂络合物的各种类型的普通DNA普通DNA加合物向DPCL转化的机理。 DPCL由顺铂的DNA单功能链和链内交联转化而形成。相反,顺铂的链间交联和反铂的单官能加合物在蛋白质存在下是稳定的。由顺铂形成的DPCL比普通DNA内链或单功能加合物更有效地抑制DNA聚合或通过核苷酸切除修复系统从DNA中去除这些三元病变。因此,由顺铂形成的庞大的DNA-蛋白质交联代表了一个更独特且持久的结构基序,该基序被下游处理DNA损伤的细胞系统的成分所识别,与该金属药物的普通DNA加合物有很大不同。

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