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斑马鱼心脏再生的动态共表达网络分析。

Analysis of the dynamic co-expression network of heart regeneration in the zebrafish.

机构信息

NorLux Neuro-Oncology Laboratory, Oncology Department, Luxembourg Institute of Health (LIH), Luxembourg, L-1526, Luxembourg.

Vital-IT Systems Biology Division, SIB Swiss Institute of Bioinformatics, Lausanne, CH-1015, Switzerland.

出版信息

Sci Rep. 2016 May 31;6:26822. doi: 10.1038/srep26822.

Abstract

The zebrafish has the capacity to regenerate its heart after severe injury. While the function of a few genes during this process has been studied, we are far from fully understanding how genes interact to coordinate heart regeneration. To enable systematic insights into this phenomenon, we generated and integrated a dynamic co-expression network of heart regeneration in the zebrafish and linked systems-level properties to the underlying molecular events. Across multiple post-injury time points, the network displays topological attributes of biological relevance. We show that regeneration steps are mediated by modules of transcriptionally coordinated genes, and by genes acting as network hubs. We also established direct associations between hubs and validated drivers of heart regeneration with murine and human orthologs. The resulting models and interactive analysis tools are available at http://infused.vital-it.ch. Using a worked example, we demonstrate the usefulness of this unique open resource for hypothesis generation and in silico screening for genes involved in heart regeneration.

摘要

斑马鱼在遭受严重损伤后有再生心脏的能力。虽然已经研究了这个过程中少数几个基因的功能,但我们远未完全了解基因如何相互作用来协调心脏再生。为了能够系统地了解这一现象,我们在斑马鱼中生成并整合了一个心脏再生的动态共表达网络,并将系统级特性与潜在的分子事件联系起来。在多个损伤后时间点,网络显示出具有生物学相关性的拓扑属性。我们表明,再生步骤由转录协调基因的模块和作为网络枢纽的基因介导。我们还在小鼠和人类同源物中建立了枢纽与心脏再生的验证驱动基因之间的直接关联。由此产生的模型和交互式分析工具可在 http://infused.vital-it.ch 上获得。通过一个示例,我们展示了这个独特的开放资源在假设生成和心脏再生相关基因的计算机筛选方面的有用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51e6/4886216/e7263cab2ba9/41598_2016_Article_BFsrep26822_Fig1_HTML.jpg

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