DNA helicases as targets for anti-cancer drugs.

Sudha Sharma, Kevin M Doherty, Robert M Brosh
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引用次数: 56

Abstract

DNA helicases have essential roles in nucleic acid metabolism by facilitating cellular processes including replication, recombination, DNA repair, and transcription. The vital roles of helicases in these pathways are reflected by their emerging importance in the maintenance of genomic stability. Recently, a number of human diseases with cancer predisposition have been shown to be genetically linked to a specific helicase defect. This has led researchers to further investigate the roles of helicases in cancer biology, and to study the efficacy of targeting human DNA helicases for anti-cancer drug treatment. Helicase-specific inhibition in malignant cells may compromise the high proliferation rates of cancerous tissues. The role of RecQ helicases in response to replicational stress suggests a molecular target for selectively eliminating malignant tumor cells by a cancer chemotherapeutic agent. Alternate DNA secondary structures such as G-quadruplexes that may form in regulatory regions of oncogenes or G-rich telomere sequences are potential targets for cancer therapy since these sequence-specific structures are proposed to affect gene expression and telomerase activation, respectively. Small molecule inhibitors of G-quadruplex helicases may be used to regulate cell cycle progression by modulating promotor activation or disrupting telomere maintenance, important processes of cellular transformation. The design of small molecules which deter helicase function at telomeres may provide a molecular target since telomerase activity is necessary for the proliferation of numerous immortal cells. Although evidence suggests that helicases are specifically inhibited by certain DNA binding compounds, another area of promise in anti-cancer therapy is siRNA technology. Specific knockdown of helicase expression can be utilized as a means to sensitize oncogenic proliferating cell lines. This review will address these topics in detail and summarize the current avenues of research in anti-cancer therapy targeting helicases through small molecule inhibitors of DNA-protein complexes, DNA binding drugs, or down-regulation of helicase gene expression.

DNA解旋酶作为抗癌药物的靶点。
DNA解旋酶通过促进细胞复制、重组、DNA修复和转录等过程在核酸代谢中发挥重要作用。解旋酶在这些途径中的重要作用反映在它们在维持基因组稳定性方面的重要性。最近,一些具有癌症易感性的人类疾病已被证明与特定的解旋酶缺陷有遗传联系。这促使研究人员进一步研究解旋酶在癌症生物学中的作用,并研究靶向人类DNA解旋酶的抗癌药物治疗效果。解旋酶在恶性细胞中的特异性抑制可能降低癌组织的高增殖率。RecQ解旋酶在复制应激反应中的作用提示了癌症化疗药物选择性消除恶性肿瘤细胞的分子靶标。替代的DNA二级结构,如可能在癌基因的调控区域或富含g的端粒序列中形成的g -四联体,是癌症治疗的潜在靶点,因为这些序列特异性结构分别影响基因表达和端粒酶激活。g -四重解旋酶的小分子抑制剂可能通过调节启动子激活或破坏端粒维持来调节细胞周期进程,端粒维持是细胞转化的重要过程。设计阻止端粒解旋酶功能的小分子可能提供一个分子靶标,因为端粒酶的活性是许多永生细胞增殖所必需的。尽管有证据表明解旋酶会被某些DNA结合化合物特异性抑制,但在抗癌治疗中另一个有希望的领域是siRNA技术。特异性敲低解旋酶的表达可以作为一种手段,以致敏癌增殖细胞系。本文将详细讨论这些问题,并总结目前通过DNA-蛋白复合物的小分子抑制剂、DNA结合药物或下调解旋酶基因表达来靶向解旋酶的抗癌治疗途径。
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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