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Emerging role of transcription factor-microRNA-target gene feed-forward loops in cancer

机译:转录因子-microRNA-靶基因前馈环在癌症中的新兴作用

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摘要

Transcriptional regulatory networks are biological network motifs that act in accordance with each other to play decisive roles in the pathological processes of cancer. One of the most common types, the feed-forward loop (FFL), has recently attracted interest. Three connected deregulated nodes, a transcription factor (TF), its downstream microRNA (miRNA) and their shared target gene can make up a class of cancer-involved FFLs as ≥1 of the 3 can act individually as a bona fide oncogene or a tumor suppressor. Numerous notable elements, such as p53, miR-17-92 cluster and cyclins, are proven members of their respective FFLs. Databases of interaction prediction, verification of experimental methods and confirmation of loops have been continually emerging during recent years. Development of TF-miRNA-target loops may help understand the mechanism of tumorgenesis at a higher level and explain the discovery and screening of the therapeutic target for drug exploitation.
机译:转录调节网络是生物学网络的基序,它们相互配合,在癌症的病理过程中起决定性作用。前馈循环(FFL)是最常见的类型之一,最近引起了人们的关注。三个相连的失控节点,转录因子(TF),其下游microRNA(miRNA)及其共享的靶基因可以构成一类涉及癌症的FFL,因为这三个中的≥1可以分别充当真正的癌基因或肿瘤抑制器。 p53,miR-17-92簇和细胞周期蛋白等众多著名元素已被证明是其各自FFL的成员。近年来,交互预测,实验方法验证和循环确认的数据库一直在不断涌现。 TF-miRNA-靶标环的发展可能有助于更深入地了解肿瘤发生的机制,并解释用于药物开发的治疗靶标的发现和筛选。

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