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SP100抑制原代内皮细胞中的ETS1活性。

SP100 inhibits ETS1 activity in primary endothelial cells.

作者信息

Yordy John S, Moussa Omar, Pei Huiping, Chaussabel Damien, Li Runzhao, Watson Dennis K

机构信息

Department of Pathology and Laboratory Medicine, Hollings Cancer Center, Medical University of South Carolina, Charleston, SC 29425, USA.

出版信息

Oncogene. 2005 Jan 27;24(5):916-31. doi: 10.1038/sj.onc.1208245.

Abstract

SP100 was first identified as a nuclear autoimmune antigen and is a constituent of the nuclear body. SP100 interacts with the ETS1 transcription factor, and we have previously shown that SP100 reduces ETS1-DNA binding and inhibits ETS1 transcriptional activity on the MMP1 and uPA promoters. We now demonstrate that SP100 expression is upregulated by interferons, which have been shown to be antiangiogenic, in primary endothelial cells. As ETS1 is functionally important in promoting angiogenesis, we tested the hypothesis that ETS1 activity is negatively modulated by SP100 in endothelial cells. SP100 directly antagonizes ETS1-mediated morphological changes in human umbilical vein endothelial cell (HUVEC) network formation and reduces HUVEC migration and invasion. To further understand the functional relationship between ETS1 and SP100, cDNA microarray analysis was utilized to assess reprogramming of gene expression by ETS1 and SP100. A subset of the differentially regulated genes, including heat-shock proteins (HSPs) H11, HSPA1L, HSPA6, HSPA8, HSPE1 and AXIN1, BRCA1, CD14, CTGF (connective tissue growth factor), GABRE (gamma-aminobutyric acid A receptor epsilon), ICAM1, SNAI1, SRD5A1 (steroid-5-alpha-reductase 1) and THY1, were validated by real-time PCR and a majority showed reciprocal expression in response to ETS1 and SP100. Interestingly, genes that are negatively regulated by ETS1 and upregulated by SP100 have antimigratory or antiangiogenic properties. Collectively, these data indicate that SP100 negatively modulates ETS1-dependent downstream biological processes.

摘要

SP100最初被鉴定为一种核自身免疫抗原,是核小体的一个组成部分。SP100与ETS1转录因子相互作用,我们之前已经表明,SP100可降低ETS1与DNA的结合,并抑制ETS1对MMP1和uPA启动子的转录活性。我们现在证明,在原代内皮细胞中,干扰素可上调SP100的表达,而干扰素已被证明具有抗血管生成作用。由于ETS1在促进血管生成中具有重要功能,我们测试了SP100在内皮细胞中对ETS1活性进行负调控的假说。SP100直接拮抗ETS1介导的人脐静脉内皮细胞(HUVEC)网络形成中的形态变化,并减少HUVEC的迁移和侵袭。为了进一步了解ETS1与SP100之间的功能关系,利用cDNA微阵列分析来评估ETS1和SP100对基因表达的重编程。通过实时PCR验证了一组差异调节基因,包括热休克蛋白(HSPs)H11、HSPA1L、HSPA6、HSPA8、HSPE1和AXIN1、BRCA1、CD14、CTGF(结缔组织生长因子)、GABRE(γ-氨基丁酸A受体ε)、ICAM1、SNAI1、SRD5A1(类固醇5-α-还原酶1)和THY1,并且大多数基因在对ETS1和SP100的反应中呈现相反的表达。有趣的是,那些被ETS1负调控且被SP100上调的基因具有抗迁移或抗血管生成特性。总体而言,这些数据表明SP100对ETS1依赖的下游生物学过程进行负调控。

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