Position-Dependent Effects of AP Sites Within an hTERT Promoter G-Quadruplex Scaffold on Quadruplex Stability and Repair Activity of the APE1 Enzyme.

IF 5.6 2区 生物学 International Journal of Molecular Sciences Pub Date : 2025-01-02 DOI:10.3390/ijms26010337
Viktoriia Yu Savitskaya, Kirill A Novoselov, Nina G Dolinnaya, Mayya V Monakhova, Viktoriia G Snyga, Evgeniia A Diatlova, Elizaveta S Peskovatskova, Victor M Golyshev, Mariia I Kitaeva, Daria A Eroshenko, Maria I Zvereva, Dmitry O Zharkov, Elena A Kubareva
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Abstract

Apurinic/apyrimidinic (AP) sites are endogenous DNA lesions widespread in human cells. Having no nucleobases, they are noncoding and promutagenic. AP site repair is generally initiated through strand incision by AP endonuclease 1 (APE1). Although AP sites' repair in regular B-DNA has been studied extensively, their processing in G-quadruplexes (G4s) has received much less attention. Here, we used the hTERT promoter region that is capable of forming three stacked parallel G4s to understand how AP sites can influence higher-order quadruplex folding and stability and how a G4 affects the efficiency of human APE1-mediated AP site processing. We designed a series of synthetic single- and double-stranded DNA constructs of varying lengths containing a stable AP site analog in both G- and C-rich strands at positions corresponding to somatic driver mutations. Using circular dichroism, we studied the effect of the AP site on hTERT G4 structure and stability. Bio-layer interferometry and gel-based approaches were employed to characterize APE1 binding to the designed DNA substrates and AP site processing. It was shown that (i) an AP site leads to G4 destabilization, which depends on the lesion location in the G4 scaffold; (ii) APE1 binds tightly to hTERT G4 structure but exhibits greatly reduced cleavage activity at AP sites embedded in the quadruplex; and (iii) a clear correlation was revealed between AP site-induced hTERT G4 destabilization and APE1 activity. We can hypothesize that reduced repair of AP sites in the hTERT G4 is one of the reasons for the high mutation rate in this promoter region.

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hTERT启动子g -四重支架内AP位点位置依赖性对APE1酶四重稳定性和修复活性的影响。
Apurinic/ ap嘧啶(AP)位点是广泛存在于人类细胞中的内源性DNA损伤。由于没有核碱基,它们是非编码性和促生性的。AP位点的修复通常是通过AP内切酶1 (APE1)的链切割开始的。尽管AP位点在常规B-DNA中的修复已被广泛研究,但它们在g -四联体(G4s)中的加工却很少受到关注。在这里,我们使用能够形成三个堆叠平行G4的hTERT启动子区域来了解AP位点如何影响高阶四重折叠和稳定性,以及G4如何影响人类ape1介导的AP位点加工的效率。我们设计了一系列不同长度的合成单链和双链DNA构建物,在富含G和c的链中,在体细胞驱动突变对应的位置上含有一个稳定的AP位点类似物。利用圆二色性研究了AP位点对hTERT G4结构和稳定性的影响。采用生物层干涉法和凝胶法来表征APE1与设计的DNA底物的结合和AP位点的处理。结果表明:(i) AP位点导致G4不稳定,这取决于病变在G4支架中的位置;(ii) APE1与hTERT G4结构结合紧密,但在四重体中嵌入的AP位点的裂解活性大大降低;(iii) AP位点诱导的hTERT G4失稳与APE1活性之间存在明显的相关性。我们可以假设,hTERT G4中AP位点的修复减少是该启动子区域突变率高的原因之一。
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10.70%
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13472
审稿时长
1.7 months
期刊介绍: The International Journal of Molecular Sciences (ISSN 1422-0067) provides an advanced forum for chemistry, molecular physics (chemical physics and physical chemistry) and molecular biology. It publishes research articles, reviews, communications and short notes. Our aim is to encourage scientists to publish their theoretical and experimental results in as much detail as possible. Therefore, there is no restriction on the length of the papers or the number of electronics supplementary files. For articles with computational results, the full experimental details must be provided so that the results can be reproduced. Electronic files regarding the full details of the calculation and experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material (including animated pictures, videos, interactive Excel sheets, software executables and others).
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