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对c-MYC G-四链体结构具有选择性的扩展卟啉的设计与合成。

Design and synthesis of an expanded porphyrin that has selectivity for the c-MYC G-quadruplex structure.

作者信息

Seenisamy Jeyaprakashnarayanan, Bashyam Sridevi, Gokhale Vijay, Vankayalapati Hariprasad, Sun Daekyu, Siddiqui-Jain Adam, Streiner Nicole, Shin-Ya Kazuo, White Elizabeth, Wilson W David, Hurley Laurence H

机构信息

College of Pharmacy, The University of Arizona, 1703 East Mabel, Tucson, Arizona 85721, USA.

出版信息

J Am Chem Soc. 2005 Mar 9;127(9):2944-59. doi: 10.1021/ja0444482.

Abstract

Cationic porphyrins are known to bind to and stabilize different types of G-quadruplexes. Recent studies have shown the biological relevance of the intramolecular parallel G-quadruplex as a transcriptional silencer in the c-MYC promoter. TMPyP4 also binds to this G-quadruplex and most likely converts it to a mixed parallel/antiparallel G-quadruplex with two external lateral loops and one internal propeller loop, suppressing c-MYC transcriptional activation. To achieve therapeutic selectivity by targeting G-quadruplexes, it is necessary to synthesize drugs that can differentiate among the different types of G-quadruplexes. We have designed and synthesized a core-modified expanded porphyrin analogue, 5,10,15,20-[tetra(N-methyl-3-pyridyl)]-26,28-diselenasapphyrin chloride (Se2SAP). Se2SAP converts the parallel c-MYC G-quadruplex into a mixed parallel/antiparallel G-quadruplex with one external lateral loop and two internal propeller loops, resulting in strong and selective binding to this G-quadruplex. A Taq polymerase stop assay was used to evaluate the binding of TMPyP4 and Se2SAP to G-quadruplex DNA. Compared to TMPyP4, Se2SAP shows a greater selectivity for and a 40-fold increase in stabilization of the single lateral-loop hybrid. Surface plasmon resonance and competition experiments with duplex DNA and other G-quadruplexes further confirmed the selectivity of Se2SAP for the c-MYC G-quadruplex. Significantly, Se2SAP was found to be less photoactive and noncytotoxic in comparison to TMPyP4. From this study, we have identified an expanded porphyrin that selectively binds with the c-MYC G-quadruplex in the presence of duplex DNA and other G-quadruplexes.

摘要

已知阳离子卟啉可与不同类型的G-四链体结合并使其稳定。最近的研究表明,分子内平行G-四链体作为c-MYC启动子中的转录沉默子具有生物学相关性。TMPyP4也与这种G-四链体结合,并且很可能将其转化为具有两个外部侧向环和一个内部螺旋桨环的混合平行/反平行G-四链体,从而抑制c-MYC转录激活。为了通过靶向G-四链体实现治疗选择性,有必要合成能够区分不同类型G-四链体的药物。我们设计并合成了一种核心修饰的扩展卟啉类似物,即5,10,15,20-[四(N-甲基-3-吡啶基)]-26,28-二硒代蓝宝石氯(Se2SAP)。Se2SAP将平行的c-MYC G-四链体转化为具有一个外部侧向环和两个内部螺旋桨环的混合平行/反平行G-四链体,从而导致与该G-四链体的强选择性结合。使用Taq聚合酶终止试验评估TMPyP4和Se2SAP与G-四链体DNA的结合。与TMPyP4相比,Se2SAP对单侧向环杂合体具有更高的选择性,并且使其稳定性提高了40倍。表面等离子体共振以及与双链DNA和其他G-四链体的竞争实验进一步证实了Se2SAP对c-MYC G-四链体的选择性。值得注意的是,与TMPyP4相比,发现Se2SAP的光活性较低且无细胞毒性。通过这项研究,我们鉴定出一种扩展卟啉,其在双链DNA和其他G-四链体存在的情况下与c-MYC G-四链体选择性结合。

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