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Effect of Base-Pairing Partner on the Thermodynamic Stability of the Diastereomeric Spiroiminodihydantoin Lesion

机译:碱基配对伴侣对非对映体螺亚氨基二乙内酰脲损伤的热力学稳定性的影响

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摘要

Oxidation of guanine by reactive oxygen species and high valent metals produces damaging DNA base lesions like 8-oxo-7,8-dihydroguanine (8-oxoG). 8-oxoG can be further oxidized to form the spiroiminodihydantoin (Sp) lesion, which is even more mutagenic. DNA polymerases preferentially incorporate purines opposite the Sp lesion, and DNA glycosylases excise the Sp lesion from the duplex, although the rate of repair is different for the two Sp diastereomers. To further understand the biological processing of the Sp lesion, differential scanning calorimetry studies were performed on a series of 15-mer DNA duplexes. The thermal and thermodynamic stabilities of each of the Sp diastereomers paired to the four standard DNA bases were investigated. It was found that, regardless of the base-pairing partner, the Sp lesion was always highly destabilizing in terms of DNA melting temperature, enthalpic stability, and overall duplex free energy. We found no significant differences between the two Sp diastereomers, but changing the base-pairing partner of the Sp lesion produced slight differences in stability. Specifically, duplexes with Sp:C pairings were always the most destabilized, whereas pairing the Sp lesion with a purine base modestly increased stability. Overall, these results suggest that, although the stability of the Sp diastereomers cannot explain the differences in the rates of repair by DNA glycosylases, the most stable base-pairing partners do correspond with the nucleotide preference of DNA polymerases.
机译:鸟嘌呤被活性氧和高价金属氧化会产生破坏性的DNA碱基损伤,例如8-oxo-7,8-dihydroguanine(8-oxoG)。 8-oxoG可以被进一步氧化以形成spiroiminodihydantoin(Sp)病变,甚至更具致突变性。 DNA聚合酶优先掺入与Sp病灶相对的嘌呤,DNA糖基化酶从双链体切除Sp病灶,尽管两种Sp非对映异构体的修复率不同。为了进一步了解损伤的生物学过程,对一系列15-mer DNA双链体进行了差示扫描量热法研究。研究了与四个标准DNA碱基配对的每个Sp非对映异构体的热稳定性和热力学稳定性。已发现,无论碱基配对伴侣如何,Sp病变在DNA熔解温度,焓稳定性和整体双链自由能方面始终高度不稳定。我们发现两种Sp非对映异构体之间没有显着差异,但是改变Sp病变的碱基配对伴侣在稳定性上产生了细微差异。特别是,Sp:C配对的双链体总是最不稳定的,而Sp病变与嘌呤碱基的配对则适度增加了稳定性。总体而言,这些结果表明,尽管Sp非对映异构体的稳定性无法解释DNA糖基化酶修复率的差异,但最稳定的碱基配对伴侣确实与DNA聚合酶的核苷酸偏好相对应。

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