Identification of Genes Selectively Regulated by IFNs in Endothelial Cells

CXCL10型 CXCL11型 生物 基因 转录组 血管生成 趋化因子 转录调控 干扰素 分子生物学 基因表达 基因表达调控 体外 细胞生物学 癌症研究 炎症 免疫学 遗传学
作者
Stefano Indraccolo,Ulrich Pfeffer,Sonia Minuzzo,Giovanni Esposito,Valeria Roni,Susanna Mandruzzato,Nicoletta Ferrari,Luca Anfosso,Raffaella Dell’Eva,Douglas M. Noonan,Luigi Chieco‐Bianchi,Adriana Albini,Alberto Amadori
出处
期刊:Journal of Immunology [American Association of Immunologists]
卷期号:178 (2): 1122-1135 被引量:159
标识
DOI:10.4049/jimmunol.178.2.1122
摘要

Abstract IFNs are highly pleiotropic cytokines also endowed with marked antiangiogenic activity. In this study, the mRNA expression profiles of endothelial cells (EC) exposed in vitro to IFN-α, IFN-β, or IFN-γ were determined. We found that in HUVEC as well as in other EC types 175 genes were up-regulated (>2-fold increase) by IFNs, including genes involved in the host response to RNA viruses, inflammation, and apoptosis. Interestingly, 41 genes showed a >5-fold higher induction by IFN-α in EC compared with human fibroblasts; among them, the gene encoding the angiostatic chemokine CXCL11 was selectively induced by IFN-α in EC along with other genes associated with angiogenesis regulation, including CXCL10, TRAIL, and guanylate-binding protein 1. These transcriptional changes were confirmed and extended by quantitative PCR analysis and ELISA; whereas IFN-α and IFN-β exerted virtually identical effects on transcriptome modulation, a differential gene regulation by type I and type II IFN emerged, especially as far as quantitative aspects were concerned. In vivo, IFN-α-producing tumors overexpressed murine CXCL10 and CXCL11, guanylate-binding protein 1, and TRAIL, with evidence of CXCL11 production by tumor-associated EC. Overall, these findings improve our understanding of the antiangiogenic effects of IFNs by showing that these cytokines trigger an antiangiogenic transcriptional program in EC. Moreover, we suggest that quantitative differences in the magnitude of the transcriptional activation of IFN-responsive genes could form the basis for cell-specific transcriptional signatures.
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