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顺铂偶联的三链形成寡核苷酸与 DNA 的两条链形成加合物。

Transplatin-conjugated triplex-forming oligonucleotides form adducts with both strands of DNA.

机构信息

Department of Biochemistry and Molecular Biology, Johns Hopkins Bloomberg School of Public Health, 615 North Wolfe Street, Baltimore, Maryland 21205, USA.

出版信息

Bioconjug Chem. 2009 Dec;20(12):2222-30. doi: 10.1021/bc900008s.

Abstract

Triplex-forming oligonucleotides (TFOs) can bind to polypurine x polypyrimidine tracts in DNA and, as a consequence, perturb the normal functioning of a targeted gene. The effectiveness of such antigene TFOs can potentially be enhanced by covalent attachment of the TFO to its DNA target. Here, we report that attachment of N-7-platinated guanine nucleosides to the 3'- and/or 5'-ends of oligopyrimidine TFOs enables these TFOs to form highly stable adducts with target DNA deoxyguanosines or deoxyadenosines that are adjacent to the TFO binding site. Such adduct formation stably anchors the TFO to its target. Depending on the sequences adjacent to the TFO binding site, adduct formation can occur on either strand of the DNA. Adduct formation by 3',5'-bis-platinated TFOs can result in the formation of an interstrand cross-link between both strands of the DNA duplex. Formation of the adducts, which could be reversed by treatment with sodium cyanide, was dependent upon the ability of the TFO to bind to DNA and appeared to occur at a rate slower than that at which the TFO bound to the DNA duplex. The extent of adduct formation at 37 degrees C by platinated deoxyribo-TFOs diminished as the pH was increased from 6.5 to 7.4. In contrast, high levels (approximately 86%) of adduct formation by platinated 2'-O-methylribo-TFOs were observed at both pH 6.5 and pH 7.4. Platinated 2'-O-methylribo-TFOs were also shown to bind to plasmid DNA and inhibit transcription in vitro, and to inhibit plasmid replication in E. coli cells. These results suggest that platinum-conjugated TFOs may be good candidates for use as antigene agents.

摘要

三链形成寡核苷酸(TFO)可以与 DNA 中的多嘌呤 x 多嘧啶序列结合,从而干扰靶向基因的正常功能。通过将 TFO 共价连接到其 DNA 靶标上,可以提高这种反基因 TFO 的有效性。在这里,我们报告说,将 N-7-铂化鸟嘌呤核苷连接到寡嘧啶 TFO 的 3'-和/或 5'-末端,使这些 TFO 能够与 TFO 结合位点附近的靶 DNA 脱氧鸟苷或脱氧腺苷形成高度稳定的加合物。这种加合物的形成稳定地将 TFO 锚定到其靶标上。根据 TFO 结合位点附近的序列,加合物的形成可以发生在 DNA 的任一条链上。3',5'-双铂化 TFO 的加合物形成可以导致 DNA 双链体的两条链之间形成链间交联。加合物的形成可以通过用氰化钠处理来逆转,这取决于 TFO 结合 DNA 的能力,并且似乎发生的速度比 TFO 与 DNA 双链体结合的速度慢。在 37°C 时,铂化脱氧核糖 TFO 形成加合物的程度随着 pH 值从 6.5 增加到 7.4 而降低。相比之下,在 pH 值为 6.5 和 7.4 时,观察到铂化 2'-O-甲基核糖 TFO 形成加合物的水平很高(约 86%)。铂化 2'-O-甲基核糖 TFO 还被证明可以结合质粒 DNA 并在体外抑制转录,并抑制大肠杆菌细胞中的质粒复制。这些结果表明,铂结合的 TFO 可能是作为反基因剂的良好候选物。

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