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抗肿瘤反式-[PtCl2(E-亚氨基醚)2]对DNA中B→Z转变的影响。

The effect of antitumor trans-[PtCl2(E-iminoether)2] on B-->Z transition in DNA.

作者信息

Zaludová R, Natile G, Brabec V

机构信息

Institute of Biophysics, Academy of Sciences of the Czech Republic, Brno, Czech Republic.

出版信息

Anticancer Drug Des. 1997 Jun;12(4):295-309.

PMID:9199661
Abstract

The B-->Z transition of DNA modified by platinum(II) complexes has attracted considerable interest because of a possible relationship with the molecular mechanism of antitumor activity of these metal-based compounds. Until recently it was generally accepted that the cis geometry of leaving groups in the bifunctional platinum(II) complexes should be therapeutically active. This paradigm had to be abandoned recently due to the finding that several analogues of clinically ineffective trans-diamminedichloroplatinum(II) (transplatin) exhibit antitumor activity. One of these therapeutically active trans compounds is trans-dichlorobisiminoetherplatinum(II) (trans-EE) [iminoether = E-HN = C(OMe)Me]. In view of the fact that DNA is the main pharmacological target for platinum(II) complexes and that these complexes attack preferentially guanine residues in DNA, it is of interest to examine the effect of iminoether platinum(II) complexes on the conformation of double-stranded poly(dG-dC) and its synthetic analogues. As these polymers can undergo the B-->Z transition, we have investigated in detail the effect of trans-EE and its cis isomer (cis-EE) on this conformational transformation using different techniques. They include circular dichroism spectroscopy, Raman spectroscopy and immunochemical assay employing specific antibodies against Z-DNA. It has been shown that cis-EE somewhat facilitates the B-->Z transition induced by increasing NaCl concentration and radically lowers its cooperativity. The polymers modified by cis-EE at low or high salt concentrations have been found to adopt distorted conformations which belong to the B and Z families respectively. Thus, cis-EE affects the B-->Z transition in DNA in a way similar to antitumor cis-diamminedichloroplatinum(II) (cisplatin). On the other hand, trans-EE was found to affect B-->Z transition (its cooperativity or the NaCl concentration corresponding to the midpoint of the salt-induced transition) only slightly. This behavior of trans-EE was, however, fundamentally different from that of clinically ineffective transplatin, which hinders B-->Z transition and lowers its cooperativity. The different effects of trans-EE on the B-->Z transition in comparison with the effects of cisplatin, transplatin and monofunctional chlorodiethylenetriamineplatinum(II) chloride are consistent with a unique DNA binding mode of this new antitumor trans compound, which might be associated with its unexpected biological efficacy.

摘要

由于铂(II)配合物修饰的DNA的B→Z转变可能与这些金属基化合物的抗肿瘤活性分子机制有关,因此引起了人们的极大兴趣。直到最近,人们普遍认为双功能铂(II)配合物中离去基团的顺式几何结构应具有治疗活性。由于发现几种临床上无效的反式二氯二氨铂(II)(反式铂)类似物具有抗肿瘤活性,这种范式最近不得不被摒弃。这些具有治疗活性的反式化合物之一是反式二氯双亚氨基醚铂(II)(反式-EE)[亚氨基醚=E-HN = C(OMe)Me]。鉴于DNA是铂(II)配合物的主要药理靶点,且这些配合物优先攻击DNA中的鸟嘌呤残基,研究亚氨基醚铂(II)配合物对双链聚(dG-dC)及其合成类似物构象的影响很有意义。由于这些聚合物可以发生B→Z转变,我们使用不同技术详细研究了反式-EE及其顺式异构体(顺式-EE)对这种构象转变的影响。这些技术包括圆二色光谱、拉曼光谱以及使用针对Z-DNA的特异性抗体的免疫化学分析。结果表明,顺式-EE在一定程度上促进了由NaCl浓度增加引起的B→Z转变,并从根本上降低了其协同性。已发现,在低盐或高盐浓度下由顺式-EE修饰的聚合物分别呈现出属于B族和Z族的扭曲构象。因此,顺式-EE以类似于抗肿瘤顺式二氯二氨铂(II)(顺铂)的方式影响DNA中的B→Z转变。另一方面,发现反式-EE对B→Z转变(其协同性或对应于盐诱导转变中点的NaCl浓度)的影响很小。然而,反式-EE的这种行为与临床上无效的反式铂的行为有根本不同,反式铂会阻碍B→Z转变并降低其协同性。与顺铂、反式铂和单功能氯二乙烯三胺铂(II)氯化物的影响相比,反式-EE对B→Z转变的不同影响与这种新型抗肿瘤反式化合物独特的DNA结合模式一致,这可能与其意想不到的生物学功效有关。

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