首页> 外文期刊>Journal of Medicinal Chemistry >Procaspase-3 Activation as an Anti-Cancer Strategy: Structure-Activity Relationship of Procaspase-Activating Compound 1 (PAC-1) and Its Cellular Co-Localization with Caspase-3
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Procaspase-3 Activation as an Anti-Cancer Strategy: Structure-Activity Relationship of Procaspase-Activating Compound 1 (PAC-1) and Its Cellular Co-Localization with Caspase-3

机译:Procaspase-3激活作为一种抗癌策略:Procaspase激活化合物1(PAC-1)的结构-活性关系及其与Caspase-3的细胞共定位

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摘要

A goal of personalized medicine as applied to oncology is to identify compounds that exploit a defined molecular defect in a cancerous cell. A compound called procaspase-activating compound I (PAC-1) was reported that enhances the activity of procaspase-3 in vitro and induces apoptotic death in cancer cells in culture and in mouse xenograft models. Experimental evidence indicates that PAC-1 activates procaspase-3 in vitro through chelation of inhibitory zinc ions. Described herein is the synthesis and biological activity of a family of PAC-1 derivatives where key functional groups have been systematically altered. Analysis of these compounds reveals a strong correlation between the in vitro procaspase-3 activating effect and their ability to induce death in cancer cells in culture. Importantly, we also show that a fluorescently labeled version of PAC-1 co-localizes with sites of caspase-3 activity in cancer cells. The data presented herein further bolster the hypothesis that PAC-1 induces apoptosis in cancer cells through the direct activation of procaspase-3, has implications for the design and discovery of next-generation procaspase-3 activating compounds, and sheds light on the anti-apoptotic role of cellular zinc.
机译:应用于肿瘤学的个性化医学的目标是鉴定可利用癌细胞中确定的分子缺陷的化合物。据报道,一种名为procaspase激活化合物I(PAC-1)的化合物可在体外增强procaspase-3的活性,并在培养和小鼠异种移植模型的癌细胞中诱导凋亡性死亡。实验证据表明,PAC-1在体外通过螯合抑制性锌离子激活procaspase-3。本文描述了其中关键功能基团已被系统改变的PAC-1衍生物家族的合成和生物学活性。对这些化合物的分析揭示了体外procaspase-3激活效果与其在培养物中诱导癌细胞死亡的能力之间有很强的相关性。重要的是,我们还表明,PAC-1的荧光标记版本与癌细胞中caspase-3活性位点共定位。本文提供的数据进一步支持了PAC-1通过直接激活procaspase-3诱导癌细胞凋亡的假说,对下一代procaspase-3激活化合物的设计和发现有影响,并为抗细胞锌的凋亡作用。

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