Binter Alexandra, Goodisman Jerry, Dabrowiak James C
Department of Chemistry, Syracuse University, 111 College Place, Rm 1-014 CST, Syracuse, NY 13244-4100, USA.
J Inorg Biochem. 2006 Jul;100(7):1219-24. doi: 10.1016/j.jinorgbio.2006.01.040. Epub 2006 Mar 20.
Carbonate in its various forms is an important component in blood and the cytosol. Since, under conditions that simulate therapy, carbonate reacts with cisplatin to form carbonato complexes, one of which is taken up and/or modified by the cell [C.R. Centerwall, J. Goodisman, D.J. Kerwood, J. Am. Chem. Soc., 127 (2005) 12768-12769], cisplatin-carbonato complexes may be important in the mechanism of action of cisplatin. In this report we study the binding of cisplatin to pBR322 DNA in two different buffers, using gel electrophoresis. In 23.8mM HEPES, N-(2-hydroxyethyl)-piperazine-N'-2-ethanesulfonic acid, 5mM NaCl, pH 7.4 buffer, cisplatin produces aquated species, which react with DNA to unwind supercoiled Form I DNA, increasing its mobility, and reducing the binding of ethidium to DNA. This behavior is consistent with the formation of the well-known intrastrand crosslink on DNA. In 23.8mM carbonate buffer, 5mM NaCl, pH 7.4, cisplatin forms carbonato species that produce DNA-adducts which do not significantly change supercoiling but enhance binding of ethidium to DNA. This behavior is consistent with the formation of a monofunctional cisplatin adduct on DNA. These results show that aquated cisplatin and carbonato complexes of cisplatin produce different types of lesions on DNA and they underscore the importance of carrying out binding studies with cisplatin and DNA using conditions that approximate those found in the cell.
各种形式的碳酸盐是血液和细胞溶质中的重要成分。由于在模拟治疗的条件下,碳酸盐与顺铂反应形成碳酸根配合物,其中一种被细胞摄取和/或修饰[C.R. Centerwall, J. Goodisman, D.J. Kerwood, J. Am. Chem. Soc., 127 (2005) 12768 - 12769],顺铂 - 碳酸根配合物可能在顺铂的作用机制中起重要作用。在本报告中,我们使用凝胶电泳研究了顺铂在两种不同缓冲液中与pBR322 DNA的结合情况。在23.8mM HEPES(N - (2 - 羟乙基) - 哌嗪 - N' - 2 - 乙磺酸)、5mM NaCl、pH 7.4的缓冲液中,顺铂产生水合物种,该物种与DNA反应使超螺旋形式I DNA解旋,增加其迁移率,并减少溴化乙锭与DNA的结合。这种行为与在DNA上形成众所周知的链内交联一致。在23.8mM碳酸盐缓冲液、5mM NaCl、pH 7.4中,顺铂形成碳酸根物种,产生DNA加合物,这些加合物不会显著改变超螺旋,但会增强溴化乙锭与DNA的结合。这种行为与在DNA上形成单功能顺铂加合物一致。这些结果表明,顺铂的水合形式和碳酸根配合物在DNA上产生不同类型的损伤,并且强调了在接近细胞内发现的条件下进行顺铂与DNA结合研究的重要性。