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Ru-TAP complexes and DNA. From photo-induced electron transfer to gene photo-silencing in living cells.

机译:Ru-TAP复合物和DNA。从光诱导的电子转移到活细胞中的基因光沉默。

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摘要

In this review, examples of applications of the photo-induced electron transfer (PET) process between photo-oxidizing Ru–TAP (TAP = 1,4,5,8-tetraazaphenanthrene) complexes and DNA or oligodeoxynucleotides (ODNs) are discussed. Applications using a free Ru–TAP complex (not chemically anchored to an ODN) are first considered. In this case, the PET gives rise to the production of an irreversible adduct of the Ru complex on a guanine (G) base, with formation of a covalent bond. After absorption of a second photon, this adduct can generate a bi-adduct, whereby the same complex binds to a second G moiety. These bi-adduct formations are responsible for photo-cross-linking between two strands of a duplex, each containing a G base, or between two G moieties of a single strand such as a telomeric sequence, as demonstrated by polyacrylamide gel electrophoresis analyses or mass spectrometry. Scanning force microscopy also allows the detection of such photobridgings with plasmid DNA. Other applications, for example with Ru–ODN, i.e. ODN with chemically anchored Ru–TAP complexes, are also discussed. It is shown that such Ru–ODN probes containing a G base in their own sequences are capable of photo-cross-linking selectively with their targeted complementary sequences, and, in the absence of such targets, they self-photo-inhibit. Such processes are applied successfully in gene photo-silencing of human papillomavirus cancer cells.
机译:在这篇综述中,讨论了在光氧化Ru-TAP(TAP = 1,4,5,8-四氮杂菲)配合物与DNA或寡脱氧核苷酸(ODN)之间应用光诱导电子转移(PET)过程的实例。首先考虑使用免费的Ru–TAP配合物(不化学固定在ODN上)的应用。在这种情况下,PET导致在鸟嘌呤(G)碱基上生成Ru络合物的不可逆加合物,并形成共价键。在吸收第二个光子之后,该加合物可以产生双加合物,从而相同的络合物与第二个G部分结合。这些双加合物的形成负责双链体的两条链之间的光交联,每条链均包含一个G碱基,或单链的两个G部分(例如端粒序列)之间的光交联,如聚丙烯酰胺凝胶电泳分析或质量证明光谱法。扫描力显微镜还允许用质粒DNA检测这种光桥。还讨论了其他应用,例如Ru-ODN,即具有化学锚定Ru-TAP配合物的ODN。结果表明,这种在其自身序列中包含G碱基的Ru–ODN探针能够与其目标互补序列选择性进行光交联,并且在没有此类靶标的情况下,它们也会自我光抑制。这些过程已成功地应用于人类乳头瘤病毒癌细胞的基因光沉默。

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