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动态与模块化 miRNA 调控及其在人类癌症中的作用。

Dynamic and Modularized MicroRNA Regulation and Its Implication in Human Cancers.

机构信息

Systems Biology and Biomedical Informatics (SBBI) Laboratory, Department of Computer Science and Engineering, Lincoln, NE, 68588, USA.

Department of Statistics, University of Nebraska-Lincoln, Lincoln, NE, 68588, USA.

出版信息

Sci Rep. 2017 Oct 17;7(1):13356. doi: 10.1038/s41598-017-13470-5.

Abstract

MicroRNA is responsible for the fine-tuning of fundamental cellular activities and human disease development. The altered availability of microRNAs, target mRNAs, and other types of endogenous RNAs competing for microRNA interactions reflects the dynamic and conditional property of microRNA-mediated gene regulation that remains under-investigated. Here we propose a new integrative method to study this dynamic process by considering both competing and cooperative mechanisms and identifying functional modules where different microRNAs co-regulate the same functional process. Specifically, a new pipeline was built based on a meta-Lasso regression model and the proof-of-concept study was performed using a large-scale genomic dataset from ~4,200 patients with 9 cancer types. In the analysis, 10,726 microRNA-mRNA interactions were identified to be associated with a specific stage and/or type of cancer, which demonstrated the dynamic and conditional miRNA regulation during cancer progression. On the other hands, we detected 4,134 regulatory modules that exhibit high fidelity of microRNA function through selective microRNA-mRNA binding and modulation. For example, miR-18a-3p, -320a, -193b-3p, and -92b-3p co-regulate the glycolysis/gluconeogenesis and focal adhesion in cancers of kidney, liver, lung, and uterus. Furthermore, several new insights into dynamic microRNA regulation in cancers have been discovered in this study.

摘要

MicroRNA 负责精细调节基本细胞活动和人类疾病的发展。microRNA、靶 mRNA 和其他类型的内源性 RNA 的可用性发生改变,这些 RNA 竞争 microRNA 相互作用,反映了 microRNA 介导的基因调控的动态和条件特性,这方面的研究还很不充分。在这里,我们提出了一种新的综合方法来研究这个动态过程,同时考虑竞争和合作机制,并确定不同 microRNA 共同调节相同功能过程的功能模块。具体来说,我们基于元 Lasso 回归模型构建了一个新的管道,并使用来自 9 种癌症类型的~4200 名患者的大规模基因组数据集进行了概念验证研究。在分析中,鉴定了 10726 个 microRNA-mRNA 相互作用与特定阶段和/或癌症类型相关,这表明了癌症进展过程中 microRNA 调节的动态性和条件性。另一方面,我们检测到 4134 个调节模块,通过选择性的 microRNA-mRNA 结合和调节表现出 microRNA 功能的高保真度。例如,miR-18a-3p、-320a、-193b-3p 和 -92b-3p 共同调节肾脏、肝脏、肺部和子宫癌症中的糖酵解/糖异生和焦点黏附。此外,本研究还发现了癌症中动态 microRNA 调节的一些新见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f662/5645395/49c7866e3b5a/41598_2017_13470_Fig1_HTML.jpg

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