Flanking Effect on the Folding of Telomeric DNA Sequences into G-Quadruplex Induced by Antimalarial Drugs.

IF 2.8 2区 化学 Q3 CHEMISTRY, PHYSICAL The Journal of Physical Chemistry B Pub Date : 2025-01-14 DOI:10.1021/acs.jpcb.4c05133
Asim Bisoi, Trideep Majumdar, Sunipa Sarkar, Prashant Chandra Singh
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Abstract

The folding of the guanine repetitive region in the telomere unit into G-quadruplex (G4) by drugs has been suggested as an alternative approach for cancer therapy. Hydroxychloroquine (HCQ) and chloroquine (CQ) are two important drugs in the trial stage for cancer. Both drugs can induce the folding of telomere-guanine-rich sequences into G4 even in the absence of salt. However, the guanine repetitive telomeric sequences are always flanked by other nucleobases at both the terminal (5' or 3') that can affect the drug-induced folding pathways and stability of the G4 significantly. Hence, in this study, the HCQ and CQ drug-induced folding of the guanine repetitive telomeric sequences into G4 and its stability by varying the chemical nature, number, and positions of the flanking nucleobases has been explored using several biophysical techniques and docking studies. It has been found that the drug-induced folding of telomere with single flanking nucleobases is similar to that without flanking nucleobases irrespective of the chemical nature and position of the flanking nucleobase. However, the propensity of the folding and the stability of the telomeric G4 induced by drugs decrease significantly with the increase of the flanking nucleobases more than one of any chemical nature and position. The data suggest that the number of flanking nucleobases rather than their chemical nature and location is a critical factor in the folding of the telomere into G4 induced by both drugs. Further, it has been observed that both drugs mainly interact with the G-tract and thymine of the loop region rather than the flanking nucleobases of the telomeric sequences without or with one flanking nucleobase. In contrast, the flanking nucleobases also participate in the interaction with the HCQ and CQ along with the core guanine repeat telomeric unit in the case of the telomeric sequences with more than one flanking nucleobases. The participation of the flanking nucleobases in the interaction with the HCQ and CQ affects the hydrogen bonding of the positively charged side chain of drugs with G quartet and loop nucleobases of telomere along with the with π···π and C-H···π weak interactions between the quinoline part of the drugs with the core telomeric guanine repeat unit which affects the folding pattern of the telomere sequences with more than one flanking nucleobases into G4.

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有人认为,通过药物将端粒单元中的鸟嘌呤重复区域折叠成G-四叠体(G4)是治疗癌症的另一种方法。羟基氯喹(HCQ)和氯喹(CQ)是两种处于试验阶段的重要癌症治疗药物。即使在没有盐的情况下,这两种药物也能诱导富含端粒鸟嘌呤的序列折叠成 G4。然而,鸟嘌呤重复端粒序列的末端(5'或3')总是有其他核碱基,这可能会严重影响药物诱导的折叠途径和 G4 的稳定性。因此,本研究利用多种生物物理技术和对接研究,通过改变侧翼核碱基的化学性质、数量和位置,探讨了 HCQ 和 CQ 药物诱导鸟嘌呤重复端粒序列折叠成 G4 的过程及其稳定性。研究发现,无论侧翼核碱基的化学性质和位置如何,有单侧核碱基的端粒在药物诱导下的折叠与无侧翼核碱基的端粒相似。然而,药物诱导的端粒 G4 折叠倾向和稳定性随着侧翼核碱基的增加而显著降低,侧翼核碱基的数量多于任何化学性质和位置的一个侧翼核碱基。这些数据表明,侧翼核碱基的数量而不是其化学性质和位置是两种药物诱导端粒折叠成 G4 的关键因素。此外,还观察到这两种药物主要与环状区的 G-痕量和胸腺嘧啶发生作用,而不是与端粒序列的侧翼核碱基发生作用,无论是没有侧翼核碱基还是有一个侧翼核碱基。相反,在有一个以上侧翼核碱基的端粒序列中,侧翼核碱基也与核心鸟嘌呤重复端粒单元一起参与了与 HCQ 和 CQ 的相互作用。侧翼核碱基参与与 HCQ 和 CQ 的相互作用会影响药物带正电荷的侧链与端粒的 G 四元组和环状核碱基的氢键作用,以及药物的喹啉部分与核心端粒鸟嘌呤重复单元之间的π--π 和 C-H--π 弱相互作用,从而影响带有一个以上侧翼核碱基的端粒序列折叠成 G4 的模式。
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来源期刊
CiteScore
5.80
自引率
9.10%
发文量
965
审稿时长
1.6 months
期刊介绍: An essential criterion for acceptance of research articles in the journal is that they provide new physical insight. Please refer to the New Physical Insights virtual issue on what constitutes new physical insight. Manuscripts that are essentially reporting data or applications of data are, in general, not suitable for publication in JPC B.
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