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剪切应力诱导的转录因子Sp1磷酸化抑制内皮细胞中膜型1基质金属蛋白酶的表达。

Transcription factor Sp1 phosphorylation induced by shear stress inhibits membrane type 1-matrix metalloproteinase expression in endothelium.

作者信息

Yun Sangseob, Dardik Alan, Haga Masae, Yamashita Akimasa, Yamaguchi Seiichi, Koh Yongbok, Madri Joseph A, Sumpio Bauer E

机构信息

Department of Surgery, Yale University School of Medicine, New Haven, Connecticut 06510, USA.

出版信息

J Biol Chem. 2002 Sep 20;277(38):34808-14. doi: 10.1074/jbc.M205417200. Epub 2002 Jul 1.

Abstract

Membrane type 1-matrix metalloproteinase (MT1-MMP) plays a key role in endothelial cell migration, matrix remodeling, and angiogenesis. Previous studies demonstrated that a mechanical force, cyclic strain, increases MT1-MMP expression by displacing Sp1 with increased Egr-1 expression and binding to the promoter site. However, the effect of shear stress (SS) on MT1-MMP expression is poorly understood. Although Egr-1 mRNA transcription and protein was induced (7.6-fold) in response to SS (n = 5, 0-8 h, p < 0.05), SS decreased MT1-MMP mRNA transcription and protein levels in a time-dependent fashion (10, 50, and 90% reduction at 1, 4, and 8 h, respectively; n = 5, p < 0.05). Egr-1 protein was increased after SS and cyclic strain, but Sp1 was serine-phosphorylated only after SS. SS increased Sp1 DNA binding (3.8-, 5.8-, and 2.4-fold increase at 1, 4, and 8 h, respectively; n = 5, p < 0.05) that was inhibitable by calf intestinal phosphatase. Thus, SS inhibits MT1-MMP expression despite Egr-1 up-regulation by inducing the serine phosphorylation of Sp1, which in turn increases its binding affinity for its site on the MT1-MMP promoter, reducing the ability of Egr-1 to displace it. These data illustrate the complex control of microvascular endothelial cell MT1-MMP expression in response to distinct environmental stimuli (cyclic strain versus shear stress), consisting of both the modulation of specific transcription factor expression (Egr-1) as well as transcription factor post-translational modification (serine phosphorylation of Sp1).

摘要

膜型1基质金属蛋白酶(MT1-MMP)在内皮细胞迁移、基质重塑和血管生成中起关键作用。先前的研究表明,机械力即周期性牵张,通过增加Egr-1表达并结合启动子位点取代Sp1来增加MT1-MMP的表达。然而,剪切应力(SS)对MT1-MMP表达的影响却知之甚少。尽管SS可诱导Egr-1 mRNA转录和蛋白表达(增加7.6倍)(n = 5,0 - 8小时,p < 0.05),但SS却以时间依赖性方式降低MT1-MMP mRNA转录和蛋白水平(在1、4和8小时分别降低10%、50%和90%;n = 5,p < 0.05)。SS和周期性牵张后Egr-1蛋白增加,但只有SS后Sp1发生丝氨酸磷酸化。SS增加Sp1与DNA的结合(在1、4和8小时分别增加3.8倍、5.8倍和2.4倍;n = 5,p < 0.05),且这种增加可被小牛肠碱性磷酸酶抑制。因此,尽管Egr-1上调,但SS通过诱导Sp1的丝氨酸磷酸化抑制MT1-MMP表达,这反过来增加了Sp1对MT1-MMP启动子位点的结合亲和力,降低了Egr-1取代它的能力。这些数据说明了微血管内皮细胞MT1-MMP表达在响应不同环境刺激(周期性牵张与剪切应力)时的复杂调控,这包括特定转录因子表达(Egr-1)的调节以及转录因子的翻译后修饰(Sp1的丝氨酸磷酸化)。

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