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首页> 外文期刊>Journal of Medicinal Chemistry >Engineering pH-gated transitions for selective and efficient double-strand DNA photocleavage in hypoxic tumors
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Engineering pH-gated transitions for selective and efficient double-strand DNA photocleavage in hypoxic tumors

机译:工程性pH门控转换可在缺氧肿瘤中进行选择性和有效的双链DNA光裂解

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We describe a family of hybrid compounds for the most efficient light-activated double-strand (ds) DNA cleavage known to date. This family represents the second generation of "switchable" molecular systems for pH-gated ds DNA-cleavage which combine a potent DNA-photocleaver and a pH-regulated part derived from a dipeptide. Design of the pH-switchable part utilizes amino groups of different basicity. Whereas the basic amino groups are protonated throughout the biologically relevant pH range, the pH-gating amines undergo protonation at the pH threshold which separates cancer and normal cells. Control over the reactivity and selectivity is achieved via transformation of the initial protonation state (a monocation or a dication) into a trication at the acidic pH. This change leads to an extraordinary increase in the efficiency of ds DNA cleavage leading to the ds:ss ratios comparable with the most efficient nonenzymatic ds DNA cleavers. Statistical analysis reveals that these high ds:ss ratios result from the combination of several factors: (a) true double-stranded cleavage, and (b) conversion of single-stranded (ss)-scission into ds cleavage. Considerable part of ds cleavage is also produced via the combination of ss cleavage events. (Figure presented)
机译:我们描述了迄今为止已知的最有效的光活化双链(ds)DNA裂解的杂合化合物家族。该家族代表了第二代用于pH门控ds DNA切割的“可转换”分子系统,该系统结合了有效的DNA光切割器和源自二肽的pH调节部分。 pH可切换部分的设计利用了不同碱性的氨基。碱性氨基在整个生物学相关的pH范围内都质子化,而pH门控胺在将癌症细胞和正常细胞分开的pH阈值下发生质子化。通过在酸性pH下将初始质子化状态(单阳离子或双阳离子)转化为三阳离子,可以控制反应性和选择性。这种变化导致ds DNA切割效率的异常提高,导致ds:ss比率与最有效的非酶ds DNA切割器相当。统计分析表明,这些高ds:ss比率是由多种因素共同导致的:(a)真正的双链断裂,以及(b)单链(ss)断裂转变为ds断裂。通过ss裂解事件的组合,也产生相当一部分ds裂解。 (图示)

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