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首页> 外文期刊>Biochemical Pharmacology >Drug discovery targeting epigenetic codes: the great potential of UHRF1, which links DNA methylation and histone modifications, as a drug target in cancers and toxoplasmosis.
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Drug discovery targeting epigenetic codes: the great potential of UHRF1, which links DNA methylation and histone modifications, as a drug target in cancers and toxoplasmosis.

机译:针对表观遗传密码的药物发现:UHRF1具有巨大的潜力,可将DNA甲基化和组蛋白修饰联系起来,成为癌症和弓形虫病的药物靶标。

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UHRF1 plays a central role in transferring methylation status from mother cells to daughter cells. Its SRA domain recognizes hemi-methylated DNA that appears in daughter DNA strands during duplication of DNA. UHRF1 recruits DNMT1 to the site and methylates both strands. UHRF1 also binds to HDAC1 and di- and tri-methyl K9 histone H3, ubiquitinates histone H3, and associates with heterochromatin formation, indicating that UHRF1 links histone modifications, DNA methylation, and chromatin structure. UHRF1 is a direct target of E2F1 and promotes G1/S transition. The tumor suppressor p53, which is deficient in 50% of cancers, down-regulates UHRF1 through up-regulation of p21/WAF1 and subsequent deactivation of E2F1. The expression levels of UHRF1 are up-regulated in many cancers, probably partially because of the absence of wild type p53, but it is probably regulated by several other factors. Knockdown of UHRF1 expression in cancer cells suppressed cell growth, suggesting that UHRF1 can be a useful anticancer drug target. Recently, it was revealed that UHRF1 plays important roles not only in carcinogenesis, but also in toxoplasmosis, which is occasionally fatal to people with a weakened immune system, and can cause blindness in the major pathology of ocular toxoplasmosis. Toxoplasma gondii, which causes toxoplasmosis, utilizes UHRF1 to control the cell cycle phase and enhance its proliferation. Thus, knockdown of UHRF1 can be effective at stopping the proliferation of the parasites in infected cells. In this review, we discuss several possible methods that can inhibit the multiple unique functions of UHRF1, which can be utilized for treating cancers and toxoplasmosis.
机译:UHRF1在将甲基化状态从母细胞转移到子细胞中起着核心作用。它的SRA域识别在复制DNA期间出现在子代DNA链中的半甲基化DNA。 UHRF1将DNMT1募集到该位点并甲基化两条链。 UHRF1还与HDAC1以及二甲基和三甲基K9组蛋白H3结合,泛素化组蛋白H3,并与异染色质形成相关联,表明UHRF1连接组蛋白修饰,DNA甲基化和染色质结构。 UHRF1是E2F1的直接目标,并促进G1 / S过渡。肿瘤抑制因子p53缺乏50%的癌症,它通过上调p21 / WAF1和随后使E2F1失活来下调UHRF1。在许多癌症中,UHRF1的表达水平上调,可能部分是由于缺乏野生型p53,但它可能受到其他几个因素的调节。降低癌细胞中UHRF1表达的表达抑制了细胞的生长,这表明UHRF1可以成为有用的抗癌药物靶标。最近发现,UHRF1不仅在致癌作用中发挥作用,而且在弓形体病中也起着重要作用,这种情况有时会对免疫力弱的人致死,并可能导致眼弓形体病的主要病理失明。弓形虫会导致弓形虫病,它利用UHRF1控制细胞周期阶段并增强其增殖。因此,敲低UHRF1可以有效阻止寄生虫在感染细胞中的增殖。在这篇综述中,我们讨论了抑制UHRF1多种独特功能的几种可能方法,这些方法可用于治疗癌症和弓形虫病。

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