Zaludová R, Zákovská A, Kasparková J, Balcarová Z, Kleinwächter V, Vrána O, Farrell N, Brabec V
Institute of Biophysics, Academy of Sciences of the Czech Republic, Brno.
Eur J Biochem. 1997 Jun 1;246(2):508-17. doi: 10.1111/j.1432-1033.1997.00508.x.
Modifications of natural DNA in a cell-free medium by dinuclear bisplatinum complexes with equivalent coordination spheres, represented by the general formula [¿trans-PtCl(NH3)2¿2(H2N-R-NH2)]2+, where R is a propane or hexane, were studied by various methods of biochemical analysis or molecular biophysics. These methods include binding studies by means of differential-pulse polarography, measurements of melting curves with the aid of absorption spectrophotometry, measurements of CD spectra, ELISA with specific antibodies that recognize DNA modified by platinum complexes, interstrand cross-linking assay employing gel electrophoresis under denaturing conditions and mapping of DNA adducts by means of transcription assays. The results indicated that the major adduct of [¿trans-PtCl(NH3)2¿2(H2N-R-NH2)]2+ in DNA was an interstrand cross-link which was formed with a relatively short half-time (approximately 1 h). At least some types of these interstrand cross-links induced local denaturational changes in the DNA. The results of analyses of interactions of [¿trans-PtCl(NH3)2¿2(H2N-R-NH2)]2+ with linear DNA at relatively higher levels of the modification could be interpreted to mean that these dinuclear platinum complexes were also capable of intrastrand-cross-link formation between adjacent base residues in DNA. However, these intrastrand adducts of [¿trans-PtCl(NH3)2¿2(H2N-R-NH2)]2+ distorted DNA conformation in a way different from the DNA intrastrand adducts of cisplatin. In addition, the DNA adducts of the dinuclear platinum complexes inhibited DNA transcription in vitro. The length of the aliphatic linker chain affected the DNA-binding mode of [¿trans-PtCl(NH3)2¿2(H2N-R-NH2)]2+ and the resulting conformational changes in DNA. The extensive analysis of DNA interactions with [¿trans-PtCl(NH3)2¿2(H2N-R-NH2)]2+ described in this communication has provided further experimental support for previous suggestions [Farrell, N. (1991) in Platinum and other metal coordination compounds in cancer chemotherapy (Howell, S. B., ed.) pp. 81-91, Plenum Press, New York] that the binding of the dinuclear platinum complexes modifies DNA in a way that is different from the modification by antitumor cisplatin. Thus, the results of this work are consistent with the hypothesis that platinum drugs that bind to DNA in a manner fundamentally different from that of cisplatin can exhibit altered biological properties, including a different spectrum and intensity of antitumor activity.
通过各种生化分析或分子生物物理学方法,研究了通式为[¿trans-PtCl(NH3)2¿2(H2N-R-NH2)]2+(其中R为丙烷或己烷)、具有等效配位球的双核双铂配合物在无细胞培养基中对天然DNA的修饰作用。这些方法包括差分脉冲极谱法进行的结合研究、借助吸收分光光度法测量熔解曲线、测量圆二色光谱、使用识别铂配合物修饰DNA的特异性抗体进行酶联免疫吸附测定、在变性条件下采用凝胶电泳的链间交联测定以及通过转录测定对DNA加合物进行定位。结果表明,[¿trans-PtCl(NH3)2¿2(H2N-R-NH2)]2+在DNA中的主要加合物是链间交联,其形成的半衰期相对较短(约1小时)。这些链间交联中的至少某些类型会在DNA中诱导局部变性变化。对[¿trans-PtCl(NH3)2¿2(H2N-R-NH2)]2+与线性DNA在相对较高修饰水平下相互作用的分析结果可以解释为,这些双核铂配合物也能够在DNA中相邻碱基残基之间形成链内交联。然而,[¿trans-PtCl(NH3)2¿2(H2N-R-NH2)]2+的这些链内加合物使DNA构象发生扭曲的方式与顺铂的DNA链内加合物不同。此外,双核铂配合物的DNA加合物在体外抑制DNA转录。脂肪族连接链的长度影响[¿trans-PtCl(NH3)2¿2(H2N-R-NH2)]2+的DNA结合模式以及DNA中由此产生的构象变化。本通讯中对DNA与[¿trans-PtCl(NH3)2¿2(H2N-R-NH2)]2+相互作用的广泛分析为先前的建议[法雷尔,N.(1991年),载于《癌症化疗中的铂及其他金属配位化合物》(豪厄尔,S.B.编)第81 - 91页,普伦纽姆出版社,纽约]提供了进一步的实验支持,即双核铂配合物与DNA的结合以不同于抗肿瘤顺铂修饰的方式修饰DNA。因此,这项工作的结果与以下假设一致:以与顺铂根本不同的方式与DNA结合的铂类药物可以表现出改变的生物学特性,包括不同的抗肿瘤活性谱和强度。