Stehlíková Kristýna, Kaspárková Jana, Nováková Olga, Martínez Alberto, Moreno Virtudes, Brabec Viktor
Institute of Biophysics, Academy of Sciences of the Czech Republic, Brno, Czech Republic.
FEBS J. 2006 Jan;273(2):301-14. doi: 10.1111/j.1742-4658.2005.05061.x.
trans-[PtCl(2)NH(3)(4-Hydroxymethylpyridine)] (trans-PtHMP) is an analogue of clinically ineffective transplatin, which is cytotoxic in the human leukemia cancer cell line. As DNA is a major pharmacological target of antitumor platinum compounds, modifications of DNA by trans-PtHMP and recognition of these modifications by active tumor suppressor protein p53 were studied in cell-free media using the methods of molecular biology and biophysics. Our results demonstrate that the replacement of the NH(3) group in transplatin by the 4-hydroxymethylpyridine ligand affects the character of DNA adducts of parent transplatin. The binding of trans-PtHMP is slower, although equally sequence-specific. This platinum complex also forms on double-stranded DNA stable intrastrand and interstrand cross-links, which distort DNA conformation in a unique way. The most pronounced conformational alterations are associated with a local DNA unwinding, which was considerably higher than those produced by other bifunctional platinum compounds. DNA adducts of trans-PtHMP also reduce the affinity of the p53 protein to its consensus DNA sequence. Thus, downstream effects modulated by recognition and binding of p53 protein to DNA distorted by trans-PtHMP and transplatin are not likely to be the same. It has been suggested that these different effects may contribute to different antitumor effects of these two transplatinum compounds.
反式-[PtCl₂NH₃(4-羟甲基吡啶)](反式-PtHMP)是临床上无效的反式铂的类似物,它对人白血病癌细胞系具有细胞毒性。由于DNA是抗肿瘤铂化合物的主要药理学靶点,我们使用分子生物学和生物物理学方法在无细胞培养基中研究了反式-PtHMP对DNA的修饰以及活性肿瘤抑制蛋白p53对这些修饰的识别。我们的结果表明,用4-羟甲基吡啶配体取代反式铂中的NH₃基团会影响母体反式铂的DNA加合物的性质。反式-PtHMP的结合较慢,尽管同样具有序列特异性。这种铂配合物还会在双链DNA上形成稳定的链内和链间交联,以独特的方式扭曲DNA构象。最明显的构象改变与局部DNA解旋有关,这比其他双功能铂化合物产生的解旋程度要高得多。反式-PtHMP的DNA加合物还会降低p53蛋白对其共有DNA序列的亲和力。因此,由p53蛋白识别并结合被反式-PtHMP和反式铂扭曲的DNA所调节的下游效应不太可能相同。有人认为,这些不同的效应可能导致这两种反式铂化合物具有不同的抗肿瘤作用。