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首页> 外文期刊>Turkish journal of chemistry >Targeting human telomeric DNA with azacyanines
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Targeting human telomeric DNA with azacyanines

机译:用花青素靶向人端粒DNA

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Small molecules targeting telomeric DNA or its interactions with telomerase have been an active area of cancer research. In the present study, we investigated the interactions of six benzimidazole compounds, called azacyanines, differing from each other in alkyl chain length and branching in the benzimidazole ring (azamethyl, azaethyl, azapropyl, azaisopropyl, azabutyl, and azaisobutyl) with human telomeric DNA (tel24) in 1:1 and 1:6 ratio (tel24:azacyanine) using UV-Vis, circular dichroism (CD), and fluorescence spectroscopy. All the compounds were binding to tel24 as indicated by the formation of the weak induced CD band between 320 nm and 360 nm. A substantial red shift and hypochromic effect were observed in the UV-Vis spectrum of azamethyl or azabutyl upon binding to tel24. No red shift or hypochromic effect was observed in the spectrum of azaisopropyl. The denaturation temperature (T$_{m})$ of tel24 increased the most, from 65~$^{circ}$C to 78 $^{circ}$C, in the presence of azabutyl in 1:6 ratio. Azaisopropyl stabilized tel24 the least under the same conditions. The highest (7.84 $imes $ 10$^{5} ~ pm $ 3.44 $imes $ 10$^{4}$ M$^{-1})$ and the lowest (2.04 $imes $ 10$^{5, }pm $ 5.38 $imes $ 10$^{4}$ M$^{-1})$ association constants were obtained for azabutyl and azaisopropyl, respectively, by fluorescence spectroscopy. Overall, the benzimidazole scaffold, the one-pot synthesis, and the stabilization ability of azacyanines to tel24 make them plausible drug candidate molecules in targeting G-quadruplexes.
机译:靶向端粒DNA的小分子或其与端粒酶的相互作用一直是癌症研究的活跃领域。在本研究中,我们研究了六种称为氮杂花青的苯并咪唑化合物之间的相互作用,它们的烷基链长和苯并咪唑环中的支链(氮杂甲基,氮杂乙基,氮杂丙基,氮杂异丙基,氮杂丁基和氮杂异丁基)与人类端粒DNA( tel24)以1:1和1:6的比例(tel24:氮杂菁)进行紫外可见,圆二色性(CD)和荧光光谱分析。如在320 nm至360 nm之间形成弱诱导CD带所示,所有化合物均与tel24结合。在结合至tel24后,在氮杂甲基或氮杂丁基的UV-Vis光谱中观察到明显的红移和减色作用。在氮杂异丙基光谱中未观察到红移或变色效应。在氮杂丁基比率为1:6的情况下,tel24的变性温度(T $ _ {m})$增加最多,从65〜$ ^ { circ} $ C增至78 $ ^ { circ} $ C 。在相同条件下,氮杂异丙基至少能稳定tel24。最高(7.84 $ times $ 10 $ ^ {5}〜 pm $ 3.44 $ times $ 10 $ ^ {4} $ M $ ^ {-1})$和最低(2.04 $ times $ 10 $通过荧光光谱法分别获得了氮杂丁基和氮杂异丙基的缔合常数。^ {5 ,} pm $ 5.38 $乘以$ 10 $ ^ {4} $ M $ ^ {-1})$缔合常数。总体而言,苯并咪唑支架,一锅合成以及氮杂花青素对tel24的稳定能力使其成为靶向G-四链体的合理药物候选分子。

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