Benfield Aaron P, Macleod Michael C, Liu Yaobin, Wu Qi, Wensel Theodore G, Vasquez Karen M
Department of Carcinogenesis, The University of Texas M. D. Anderson Cancer Center, Science Park-Research Division, Smithville, Texas 78957, USA.
Biochemistry. 2008 Jun 10;47(23):6279-88. doi: 10.1021/bi7024029. Epub 2008 May 13.
Gene targeting by triplex-forming oligonucleotides (TFOs) has proven useful for gene modulation in vivo. Photoreactive molecules have been conjugated to TFOs to direct sequence-specific damage in double-stranded DNA. However, the photoproducts are often repaired efficiently in cells. This limitation has led to the search for sequence-specific photoreactive reagents that can produce more genotoxic lesions. Here we demonstrate that photoactivated pyrene-conjugated TFOs (pyr-TFOs) induce DNA strand breaks near the pyrene moiety with remarkably high efficiency and also produce covalent pyrene-DNA adducts. Free radical scavenging experiments demonstrated a role for singlet oxygen activated by the singlet excited state of pyrene in the mechanism of pyr-TFO-induced DNA damage. In cultured mammalian cells, the effect of photoactivated pyr-TFO-directed DNA damage was to induce mutations, in the form of deletions, approximately 7-fold over background levels, at the targeted site. Thus, pyr-TFOs represent a potentially powerful new tool for directing DNA strand breaks to specific chromosomal locations for biotechnological and potential clinical applications.
通过三链形成寡核苷酸(TFOs)进行基因靶向已被证明在体内基因调控中很有用。光反应性分子已与TFOs偶联,以在双链DNA中引导序列特异性损伤。然而,光产物在细胞中通常能被有效修复。这一局限性促使人们寻找能够产生更多基因毒性损伤的序列特异性光反应试剂。在此,我们证明光活化的芘偶联TFOs(pyr-TFOs)能以极高的效率在芘部分附近诱导DNA链断裂,并且还能产生共价芘-DNA加合物。自由基清除实验表明,芘的单重激发态激活的单线态氧在pyr-TFO诱导的DNA损伤机制中起作用。在培养的哺乳动物细胞中,光活化的pyr-TFO定向DNA损伤的作用是以缺失的形式在靶位点诱导突变,比背景水平高约7倍。因此,pyr-TFOs代表了一种潜在强大的新工具,可将DNA链断裂引导至特定染色体位置,用于生物技术和潜在的临床应用。