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A20 通过调节基础 IFNβ 水平来调节血管细胞中的致动脉粥样硬化干扰素 (IFN)-γ 信号。

A20 regulates atherogenic interferon (IFN)-γ signaling in vascular cells by modulating basal IFNβ levels.

机构信息

From the Division of Vascular and Endovascular Surgery, Center for Vascular Biology Research and the Transplant Institute, Department of Surgery.

the Division of Interdisciplinary Medicine and Biotechnology, Bioinformatics Core, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, Massachusetts 02135.

出版信息

J Biol Chem. 2014 Nov 7;289(45):30912-24. doi: 10.1074/jbc.M114.591966. Epub 2014 Sep 12.

Abstract

IFNγ signaling in endothelial (EC) and smooth muscle cells (SMC) is a key culprit of pathologic vascular remodeling. The impact of NF-κB inhibitory protein A20 on IFNγ signaling in vascular cells remains unknown. In gain- and loss-of-function studies, A20 inversely regulated expression of IFNγ-induced atherogenic genes in human EC and SMC by modulating STAT1 transcription. In vivo, inadequate A20 expression in A20 heterozygote mice aggravated intimal hyperplasia following partial carotid artery ligation. This outcome uniquely associated with increased levels of Stat1 and super-induction of Ifnγ-dependent genes. Transcriptome analysis of the aortic media from A20 heterozygote versus wild-type mice revealed increased basal Ifnβ signaling as the likely cause for higher Stat1 transcription. We confirmed higher basal IFNβ levels in A20-silenced human SMC and showed that neutralization or knockdown of IFNβ abrogates heightened STAT1 levels in these cells. Upstream of IFNβ, A20-silenced EC and SMC demonstrated higher levels of phosphorylated/activated TANK-binding kinase-1 (TBK1), a regulator of IFNβ transcription. This suggested that A20 knockdown increased STAT1 transcription by enhancing TBK1 activation and subsequently basal IFNβ levels. Altogether, these results uncover A20 as a key physiologic regulator of atherogenic IFNγ/STAT1 signaling. This novel function of A20 added to its ability to inhibit nuclear factor-κB (NF-κB) activation solidifies its promise as an ideal therapeutic candidate for treatment and prevention of vascular diseases. In light of recently discovered A20/TNFAIP3 (TNFα-induced protein 3) single nucleotide polymorphisms that impart lower A20 expression or function, these results also qualify A20 as a reliable clinical biomarker for vascular risk assessment.

摘要

IFNγ 信号在血管内皮细胞(EC)和血管平滑肌细胞(SMC)中的作用是病理性血管重构的关键罪魁祸首。NF-κB 抑制蛋白 A20 对血管细胞中 IFNγ 信号的影响尚不清楚。在功能获得和功能丧失研究中,A20 通过调节 STAT1 转录,反向调节人 EC 和 SMC 中 IFNγ 诱导的动脉粥样硬化基因的表达。在体内,A20 杂合子小鼠中 A20 表达不足加剧了颈动脉部分结扎后的内膜增生。这一结果与 Stat1 水平升高和 Ifnγ 依赖性基因的超诱导独特相关。与野生型相比,A20 杂合子小鼠的主动脉中层的转录组分析显示,IFNβ 信号的基础水平升高可能是 Stat1 转录升高的原因。我们证实了沉默 A20 的人 SMC 中基础 IFNβ 水平升高,并表明中和或敲低 IFNβ 可消除这些细胞中升高的 STAT1 水平。在 IFNβ 上游,沉默的 EC 和 SMC 表现出更高水平的磷酸化/激活的 TANK 结合激酶 1(TBK1),这是 IFNβ 转录的调节剂。这表明 A20 敲低通过增强 TBK1 激活和随后的基础 IFNβ 水平增加 STAT1 转录。总的来说,这些结果揭示了 A20 是致动脉粥样硬化 IFNγ/STAT1 信号的关键生理调节剂。A20 抑制核因子-κB(NF-κB)激活的新功能与其抑制 NF-κB 激活的能力一起,使其成为治疗和预防血管疾病的理想治疗候选物。鉴于最近发现的 A20/TNFAIP3(TNFα 诱导蛋白 3)单核苷酸多态性赋予较低的 A20 表达或功能,这些结果也将 A20 作为血管风险评估的可靠临床生物标志物。

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