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短肽诱导人端粒 G-四链体解链:模拟解旋酶功能。

Short designed peptide unfolding human telomeric G-quadruplex: mimicking the helicase function.

机构信息

Amity Institute of Biotechnology, Amity University Uttar Pradesh, Noida, India.

Special Centre for Molecular Medicine, Jawaharlal Nehru University, New Delhi, India.

出版信息

J Biomol Struct Dyn. 2023 Nov;41(19):9977-9986. doi: 10.1080/07391102.2022.2150316. Epub 2022 Nov 28.

Abstract

Human telomeric DNA can fold into G-quadruplex structures involving the interaction of four guanine bases in a square planar arrangement. The highly distinctive nature of quadruplex topologies suggests that they can act as novel therapeutic targets. In this study, we provide the evidence of human telomeric G4 destabilization in dilute and cell-mimicking molecular crowing conditions upon peptide binding. We have used three human telomeric sequences of different lengths. CD data showed that these sequences folded into anti-parallel G-quadruplex and CD intensity decreased significantly on increasing the peptide concentration. UV-thermal melting results showed significant decrease in hypochromicity due to formation of G4-peptide complex at 295 nm. Fluorescence data showed the quenching on titrating the peptide with human telomere G4. Electrophoretic mobility shift assay confirmed the unfolding of G4 structure. Cell viability was significantly reduced in the presence of QW5 peptide with IC values as 8.78 M and 7.72 M after 72 and 96 hours of incubation respectively. These results confirmed that QW5 peptide has an ability to bind and unfold to human telomeric G-quadruplex and hence might be the key modulator for targeting diseases having over-representation of G4 motifs and their destabilization will be helpful in increasing the efficiency of DNA replication, transcription or duplex reannealing.Communicated by Ramaswamy H. Sarma.

摘要

人类端粒 DNA 可以折叠成涉及四个鸟嘌呤碱基在正方形平面排列相互作用的 G-四链体结构。四链体拓扑结构的高度独特性表明它们可以作为新的治疗靶点。在这项研究中,我们提供了在肽结合时在稀释和模拟细胞的分子拥挤条件下人类端粒 G4 不稳定的证据。我们使用了三种不同长度的人类端粒序列。CD 数据表明,这些序列折叠成反平行 G-四链体,并且随着肽浓度的增加,CD 强度显着降低。UV-热融结果表明,由于在 295nm 处形成 G4-肽复合物,消光值显着降低。荧光数据表明,随着肽与人类端粒 G4 的滴定,荧光猝灭。电泳迁移率变动分析证实了 G4 结构的展开。在存在 QW5 肽的情况下,细胞活力显着降低,在 72 和 96 小时孵育后 IC 值分别为 8.78μM 和 7.72μM。这些结果证实 QW5 肽具有结合和展开到人类端粒 G-四链体的能力,因此可能是针对具有 G4 基序过表达的疾病的关键调节剂,并且其不稳定将有助于提高 DNA 复制、转录或双链重退火的效率。由 Ramaswamy H. Sarma 传达。

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