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少突胶质细胞转录因子2(OLIG2)在脑癌中的分子机制

Molecular mechanisms of OLIG2 transcription factor in brain cancer.

作者信息

Tsigelny Igor F, Kouznetsova Valentina L, Lian Nathan, Kesari Santosh

机构信息

Department of Neurosciences, University of California San Diego, La Jolla, 92093, CA, USA.

San Diego Supercomputer Center, University of California San Diego, La Jolla, 92093, CA, USA.

出版信息

Oncotarget. 2016 Aug 16;7(33):53074-53101. doi: 10.18632/oncotarget.10628.

Abstract

Oligodendrocyte lineage transcription factor 2 (OLIG2) plays a pivotal role in glioma development. Here we conducted a comprehensive study of the critical gene regulatory networks involving OLIG2. These include the networks responsible for OLIG2 expression, its translocation to nucleus, cell cycle, epigenetic regulation, and Rho-pathway interactions. We described positive feedback loops including OLIG2: loops of epigenetic regulation and loops involving receptor tyrosine kinases. These loops may be responsible for the prolonged oncogenic activity of OLIG2. The proposed schemes for epigenetic regulation of the gene networks involving OLIG2 are confirmed by patient survival (Kaplan-Meier) curves based on the cancer genome atlas (TCGA) datasets. Finally, we elucidate the Coherent-Gene Modules (CGMs) networks-framework of OLIG2 involvement in cancer. We showed that genes interacting with OLIG2 formed eight CGMs having a set of intermodular connections. We showed also that among the genes involved in these modules the most connected hub is EGFR, then, on lower level, HSP90 and CALM1, followed by three lower levels including epigenetic genes KDM1A and NCOR1. The genes on the six upper levels of the hierarchy are involved in interconnections of all eight CGMs and organize functionally defined gene-signaling subnetworks having specific functions. For example, CGM1 is involved in epigenetic control. CGM2 is significantly related to cell proliferation and differentiation. CGM3 includes a number of interconnected helix-loop-helix transcription factors (bHLH) including OLIG2. Many of these TFs are partially controlled by OLIG2. The CGM4 is involved in PDGF-related: angiogenesis, tumor cell proliferation and differentiation. These analyses provide testable hypotheses and approaches to inhibit OLIG2 pathway and relevant feed-forward and feedback loops to be interrogated. This broad approach can be applied to other TFs.

摘要

少突胶质细胞谱系转录因子2(OLIG2)在胶质瘤发展中起关键作用。在此,我们对涉及OLIG2的关键基因调控网络进行了全面研究。这些网络包括负责OLIG2表达、其向细胞核转运、细胞周期、表观遗传调控以及Rho信号通路相互作用的网络。我们描述了包括OLIG2的正反馈回路:表观遗传调控回路和涉及受体酪氨酸激酶的回路。这些回路可能是OLIG2长期致癌活性的原因。基于癌症基因组图谱(TCGA)数据集的患者生存(Kaplan-Meier)曲线证实了所提出的涉及OLIG2的基因网络表观遗传调控方案。最后,我们阐明了OLIG2参与癌症的相干基因模块(CGM)网络框架。我们表明,与OLIG2相互作用的基因形成了八个具有一组模块间连接的CGM。我们还表明,在这些模块中涉及的基因中,连接性最强的中心是表皮生长因子受体(EGFR),其次是较低水平的热休克蛋白90(HSP90)和钙调蛋白1(CALM1),随后是包括表观遗传基因赖氨酸特异性去甲基化酶1A(KDM1A)和核受体辅阻遏蛋白1(NCOR1)在内的三个较低水平。层次结构中六个较高水平的基因参与了所有八个CGM的相互连接,并组织了具有特定功能的功能定义基因信号子网。例如,CGM1参与表观遗传控制。CGM2与细胞增殖和分化显著相关。CGM3包括许多相互连接的螺旋-环-螺旋转录因子(bHLH),包括OLIG2。这些转录因子中的许多部分受OLIG2控制。CGM4参与血小板衍生生长因子(PDGF)相关的:血管生成、肿瘤细胞增殖和分化。这些分析提供了可检验的假设和抑制OLIG2信号通路以及有待研究的相关前馈和反馈回路的方法。这种广泛的方法可应用于其他转录因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/851e/5288170/e486f60d28e4/oncotarget-07-53074-g001.jpg

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