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氧化磷脂诱导的内皮细胞/单核细胞相互作用由cAMP依赖性R-Ras/PI3激酶途径介导。

Oxidized phospholipid-induced endothelial cell/monocyte interaction is mediated by a cAMP-dependent R-Ras/PI3-kinase pathway.

作者信息

Cole Amy L, Subbanagounder Ganesamoorthy, Mukhopadhyay Srirupa, Berliner Judith A, Vora Devendra K

机构信息

David Geffen School of Medicine at University of California Los Angeles, Los Angeles, Calif, USA.

出版信息

Arterioscler Thromb Vasc Biol. 2003 Aug 1;23(8):1384-90. doi: 10.1161/01.ATV.0000081215.45714.71. Epub 2003 Jun 12.

Abstract

OBJECTIVE

Previous studies have demonstrated the importance of endothelial apical expression of connecting segment-1 (CS-1) fibronectin in mediating the entry of monocytes into atherosclerotic lesions and other sites of chronic inflammation. We previously demonstrated that oxidized PAPC (OxPAPC) increases monocyte-specific binding to arterial endothelium by causing deposition of CS-1 fibronectin on apical alpha5beta1 integrin. The present studies identify important signal transduction components regulating this pathway.

METHODS AND RESULTS

Using endothelial cells in culture, we demonstrate that activation of R-Ras is responsible for CS-1-mediated monocyte binding. Although few natural activators of R-Ras have been demonstrated, OxPAPC activated endothelial R-Ras by 2.5-fold but decreased levels of activated H-Ras. The importance of R-Ras/H-Ras balance in regulating monocyte binding was shown by overexpression studies. Constitutively active R-Ras enhanced monocyte adhesion, whereas coexpression with constitutively active H-Ras was inhibitory. Elevated cAMP, mediated by OxPAPC and specific components POVPC and PEIPC, was responsible for R-Ras activation, and dibutyryl cAMP and pertussis toxin were also effective activators of R-Ras. Using inhibitor and dominant-negative constructs, we demonstrated that phosphatidylinositol 3-kinase (PI3K) was a key downstream effector of R-Ras in this pathway.

CONCLUSIONS

OxPAPC, POVPC, and PEIPC induce a cAMP/R-Ras/PI3K signaling pathway that contributes to monocyte/endothelial cell adhesion and potentially atherosclerosis.

摘要

目的

先前的研究已证明连接段-1(CS-1)纤连蛋白在内皮顶端的表达在介导单核细胞进入动脉粥样硬化病变及其他慢性炎症部位中的重要性。我们先前证明,氧化型1-棕榈酰-2-花生酰-sn-甘油-3-磷酸胆碱(OxPAPC)通过使CS-1纤连蛋白沉积在顶端α5β1整合素上,增加单核细胞与动脉内皮的特异性结合。本研究确定了调节该途径的重要信号转导成分。

方法与结果

利用培养的内皮细胞,我们证明R-Ras的激活负责CS-1介导的单核细胞结合。虽然已证明的R-Ras天然激活剂很少,但OxPAPC使内皮R-Ras激活了2.5倍,但降低了激活的H-Ras水平。过表达研究显示了R-Ras/H-Ras平衡在调节单核细胞结合中的重要性。组成型活性R-Ras增强单核细胞黏附,而与组成型活性H-Ras共表达则具有抑制作用。由OxPAPC以及特定成分1-棕榈酰-2-油酰-sn-甘油-3-磷酸胆碱(POVPC)和1-棕榈酰-2-二十二碳六烯酰-sn-甘油-3-磷酸胆碱(PEIPC)介导的cAMP升高是R-Ras激活的原因,二丁酰cAMP和百日咳毒素也是R-Ras的有效激活剂。使用抑制剂和显性负性构建体,我们证明磷脂酰肌醇3激酶(PI3K)是该途径中R-Ras的关键下游效应器。

结论

OxPAPC、POVPC和PEIPC诱导一种cAMP/R-Ras/PI3K信号通路,该通路有助于单核细胞/内皮细胞黏附并可能导致动脉粥样硬化。

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