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MicroRNA-mediated regulatory circuits: outlook and perspectives

机译:MicroRNA介导的监管电路:展望和观点

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MicroRNAs have been found to be necessary for regulating genes implicated in almost all signaling pathways, and consequently their dysfunction influences many diseases, including cancer. Understanding of the complexity of the microRNA-mediated regulatory network has grown in terms of size, connectivity and dynamics with the development of computational and, more recently, experimental high-throughput approaches for microRNA target identification. Newly developed studies on recurrent microRNA-mediated circuits in regulatory networks, also known as network motifs, have substantially contributed to addressing this complexity, and therefore to helping understand the ways by which microRNAs achieve their regulatory role. This review provides a summarizing view of the state-of-the-art, and perspectives of research efforts on microRNA-mediated regulatory motifs. In this review, we discuss the topological properties characterizing different types of circuits, and the regulatory features theoretically enabled by such properties, with a special emphasis on examples of circuits typifying their biological significance in experimentally validated contexts. Finally, we will consider possible future developments, in particular regarding microRNA-mediated circuits involving long non-coding RNAs and epigenetic regulators.
机译:已经发现MicroRNAS是在几乎所有信号通路中牵连的基因是必要的,因此它们的功能障碍会影响许多疾病,包括癌症。了解MicroRNA介导的监管网络的复杂性在尺寸,连通性和动态方面的发展,随着计算的,最近,实验性高通量方法的尺寸,连通性和动态而变化。新开发的关于经常性MicroRNA介导的监管网络中的介导的电路,也称为网络图案,基本上有助于解决这种复杂性,因此帮助了解MicroRNA实现其监管作用的方式。本综述提供了对MicroRNA介导的监管主题的研究努力的概述的总结。在该综述中,我们讨论了表征不同类型电路的拓扑特性,并且该调节特征由这些特性理论上的特征,特别强调了在实验验证的上下文中的生物学意义的电路的示例。最后,我们将考虑可能的未来发展,特别是关于涉及长期非编码RNA和表观遗传调节剂的小罗脉介导的电路。

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