New acridone derivatives to target telomerase and oncogenes - an anticancer approach.

IF 4.1 4区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Tiago J S Marques, Diana Salvador, Helena Oliveira, Vanda V Serra, Nicholas Paradis, Chun Wu, Vera L M Silva, Catarina I V Ramos
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Abstract

In this work, two new acridone derivatives, AcridPy and AcridPyMe, were synthesized, for the first time, aiming to evaluate their potential as quadruplex stabilizers and anticancer agents. AcridPy was synthesized through a very straightforward one-pot sequential chemical reaction involving the Heck cross-coupling reaction of (E)-3-iodo-2-(4-methoxystyryl)-1-methylquinolin-4(1H)-one with a vinyl pyridine followed by in situ electrocyclization and oxidation, while the synthesis of AcridPyMe involved an additional N-methylation of the pyridine ring. Their ability to stabilize G-quadruplex DNA structures, which are associated with the regulation of oncogenes, was assessed using biophysical methods. Both compounds demonstrated significant quadruplex stabilization properties, showing selectivity to G-quadruplexes over duplex DNA. Molecular dynamics simulation experiments supported the preferential binding of AcridPyMe to MYC. The cytotoxicity of these derivatives was further evaluated in vitro in two distinct pancreatic tumor cell lines, PanC-1 and MIA PaCa-2, the lung tumor A549 cell line, the melanoma A375 cell line, and the immortalized human keratinocyte HaCaT cell line, through the evaluation of cell viability. For PanC-1 and MIA PaCa-2, the cell cycle dynamics and apoptotic cell death along with colocalization were also evaluated. The results revealed that AcridPyMe exhibited anticancer activity, correlated with its quadruplex stabilization ability and, although not exclusive, nuclear co-localization was observed. These findings suggest that the newly synthesized cationic acridone is a promising candidate for the development of novel anticancer therapies targeting G-quadruplex structures.

新的吖啶酮衍生物靶向端粒酶和癌基因-一种抗癌方法。
本文首次合成了两种新的吖啶酮衍生物AcridPy和AcridPyMe,旨在评价它们作为四联稳定剂和抗癌剂的潜力。AcridPy是通过(E)-3-碘-2-(4-甲氧基苯乙烯基)-1-甲基喹啉-4(1H)- 1与乙烯基吡啶的Heck交叉偶联反应合成的,然后进行原位电环化和氧化,而AcridPyMe的合成则需要对吡啶环进行额外的n-甲基化。使用生物物理方法评估了它们稳定g -四重体DNA结构的能力,g -四重体DNA结构与癌基因的调节有关。两种化合物均表现出显著的四联体稳定特性,对g -四联体具有选择性。分子动力学模拟实验支持AcridPyMe与MYC的优先结合。通过对细胞活力的评估,进一步在两种不同的胰腺肿瘤细胞系PanC-1和MIA PaCa-2、肺肿瘤A549细胞系、黑色素瘤A375细胞系和永生化人角质形成细胞HaCaT细胞系中体外评估这些衍生物的细胞毒性。对于PanC-1和MIA PaCa-2,我们还评估了细胞周期动力学和凋亡细胞死亡以及共定位。结果显示,AcridPyMe具有抗癌活性,与其四重体稳定能力相关,尽管不是排他性的,但观察到核共定位。这些发现表明,新合成的阳离子吖啶酮是开发针对g -四重结构的新型抗癌药物的有希望的候选者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.80
自引率
2.40%
发文量
129
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