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通过结晶紫实现针对 BCL2 i-motif DNA 环间区的特异性靶向的治疗诊断方法。

Theranostic approach to specifically targeting the interloop region of BCL2 i-motif DNA by crystal violet.

机构信息

Frontier Institute for Biomolecular Engineering Research (FIBER), Konan University, 7-1-20 Minatojima-Minamimachi, Kobe, 650-0047, Japan.

Department of Biophysics, Molecular Biology and Bioinformatics, University of Calcutta, 92, A.P.C Road, Kolkata, 700009, India.

出版信息

Sci Rep. 2023 Sep 1;13(1):14338. doi: 10.1038/s41598-023-39407-9.

Abstract

Ligands that recognise specific i-motif DNAs are helpful in cancer diagnostics and therapeutics, as i-motif formation can cause cancer. Although the loop regions of i-motifs are promising targets for ligands, the interaction between a ligand and the loop regions based on sequence information remains unexplored. Herein, we investigated the loop regions of various i-motif DNAs to determine whether these regions specifically interact with fluorescent ligands. Crystal violet (CV), a triphenylmethane dye, exhibited strong fluorescence with the i-motif derived from the promoter region of the human BCL2 gene in a sequence- and structure-specific manner. Our systematic sequence analysis indicated that CV was bound to the site formed by the first and third loops through inter-loop interactions between the guanine bases present in these loops. As the structural stability of the BCL2 i-motif was unaffected by CV, the local stabilisation of the loops by CV could inhibit the interaction of transcription factors with these loops, repressing the BCL2 expression of MCF-7 cells. Our finding suggests that the loops of the i-motif can act as a novel platform for the specific binding of small molecules; thus, they could be utilised for the theranostics of diseases associated with i-motif DNAs.

摘要

识别特定 i-motif DNA 的配体有助于癌症的诊断和治疗,因为 i-motif 的形成可能导致癌症。虽然 i-motif 的环区是配体的有前途的靶标,但基于序列信息的配体与环区之间的相互作用仍未得到探索。在这里,我们研究了各种 i-motif DNA 的环区,以确定这些区域是否与荧光配体特异性相互作用。结晶紫 (CV) 是一种三苯甲烷染料,与源自人 BCL2 基因启动子区域的 i-motif 以序列和结构特异性的方式表现出强烈的荧光。我们的系统序列分析表明,CV 通过这些环中存在的鸟嘌呤碱基之间的环间相互作用与第一和第三环形成的位点结合。由于 CV 对 BCL2 i-motif 的结构稳定性没有影响,因此 CV 对环的局部稳定化可以抑制转录因子与这些环的相互作用,从而抑制 MCF-7 细胞中 BCL2 的表达。我们的发现表明,i-motif 的环可以作为小分子特异性结合的新平台;因此,它们可用于与 i-motif DNA 相关的疾病的治疗诊断。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b96e/10474294/9f837d9ec3e8/41598_2023_39407_Fig1_HTML.jpg

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