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顺式-[Pt(NH₃)₂(N₇-N-甲基-2-二氮杂芘鎓)Cl](2+)修饰的DNA中单一功能加合物的不稳定性:顺铂修饰的DNA中的交联反应速率

Instability of the monofunctional adducts in cis-[Pt(NH3)2(N7-N-methyl-2-diazapyrenium)Cl](2+)-modified DNA: rates of cross-linking reactions in cis-platinum-modified DNA.

作者信息

Payet D, Gaucheron F, Sip M, Leng M

机构信息

Centre de Biophysique Moléculaire, CNRS, Orléans, France.

出版信息

Nucleic Acids Res. 1993 Dec 25;21(25):5846-51. doi: 10.1093/nar/21.25.5846.

Abstract

Single- and double-stranded oligonucleotides containing a single monofunctional cis-[Pt(NH3)2(dG)(N7-N-methyl-2-diazapyrenium)]3+ adduct have been studied at two NaCl concentrations. In 50 mM and 1 M NaCl, the adducts within the single-stranded oligonucleotides are stable. In contrast, they are unstable within the corresponding double-stranded oligonucleotides. In 50 mM NaCl, the bonds between platinum and guanine or N-methyl-2,7-diazapyrenium residues are cleaved and subsequently, intra- or interstrand cross-links are formed as in the reaction between DNA and cis-DDP. In 1 M NaCl, the main reaction is the replacement of N-methyl-2,7-diazapyrenium residues by chloride which generates double-stranded oligonucleotides containing a single monofunctional cis-[Pt(NH3)2(dG)Cl]+ adduct. The rates of closure of these monofunctional adducts to bifunctional cross-links have been studied in 60 mM NaClO4. Within d(TG.CT/AGCA), d(CG.CT/AGCG) and d(AG.CT/AGCT) (the symbol.indicates the location of the adducts in the central sequences of oligonucleotides), the half-lifes (t1/2) of the cis-[Pt(NH3)2(dG)Cl]+ adducts are respectively 12, 6 and 2.8 hr and the cross-linking reactions occur between guanine residues on the opposite strands. Within d(AG.TC/GACT), d(CG.AT/ATCG) and d(TGTG./CACA) or d(TG.TG/CACA) t1/2 are respectively 1.6, 8 and larger than 20 hr and the intrastrand cross-links are formed at the d(AG), d(GA) and d(GTG) sites, respectively. The conclusion is that the rates of conversion of cis-platinum-DNA monofunctional adducts to minor bifunctional cross-links are dependent on base sequence. The potential use of the instability of cis-[Pt(NH3)2(dG)(N7-N-methyl-2-diazapyrenium)]3+ adducts is discussed in the context of the antisense strategy.

摘要

已在两种氯化钠浓度下研究了含有单个单功能顺式-[Pt(NH₃)₂(dG)(N₇-N-甲基-2-二氮杂芘)]³⁺加合物的单链和双链寡核苷酸。在50 mM和1 M氯化钠中,单链寡核苷酸内的加合物是稳定的。相比之下,它们在相应的双链寡核苷酸内是不稳定的。在50 mM氯化钠中,铂与鸟嘌呤或N-甲基-2,7-二氮杂芘残基之间的键被裂解,随后,如同DNA与顺铂反应那样形成链内或链间交联。在1 M氯化钠中,主要反应是氯离子取代N-甲基-2,7-二氮杂芘残基,生成含有单个单功能顺式-[Pt(NH₃)₂(dG)Cl]⁺加合物的双链寡核苷酸。已在60 mM高氯酸钠中研究了这些单功能加合物转化为双功能交联的速率。在d(TG.CT/AGCA)、d(CG.CT/AGCG)和d(AG.CT/AGCT)(符号.表示加合物在寡核苷酸中心序列中的位置)中,顺式-[Pt(NH₃)₂(dG)Cl]⁺加合物的半衰期(t₁/₂)分别为12、6和2.8小时,交联反应发生在相反链上的鸟嘌呤残基之间。在d(AG.TC/GACT)、d(CG.AT/ATCG)和d(TGTG./CACA)或d(TG.TG/CACA)中,t₁/₂分别为1.6、8和大于20小时,链内交联分别在d(AG)、d(GA)和d(GTG)位点形成。结论是顺铂-DNA单功能加合物转化为次要双功能交联的速率取决于碱基序列。在反义策略的背景下讨论了顺式-[Pt(NH₃)₂(dG)(N₇-N-甲基-2-二氮杂芘)]³⁺加合物不稳定性的潜在用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e5e4/310464/ed05a3f582d1/nar00074-0053-a.jpg

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