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血管抑肽 1 通过蛋白聚糖依赖的机制激活血管内皮细胞中的 eNOS。

Vasostatin 1 activates eNOS in endothelial cells through a proteoglycan-dependent mechanism.

机构信息

Dipartimento di Biologia Animale e dell'Uomo, Università di Torino, Italy.

出版信息

J Cell Biochem. 2010 May;110(1):70-9. doi: 10.1002/jcb.22510.

Abstract

Accumulating evidences point to a significant role for the chromogranin A (CgA)-derived peptide vasostatin 1 (VS-1) in the protective modulation of the cardiovascular activity, because of its ability to counteract the adrenergic signal. We have recently shown that VS-1 induces a PI3K-dependent-nitric oxide (NO) release by endothelial cells, contributing to explain the mechanism of its cardio-suppressive and vasodilator properties. However, the cellular processes upstream the eNOS activation exerted by this peptide are still unknown, as typical high-affinity receptors have not been identified. Here we hypothesize that in endothelial cells VS-1 acts, on the basis of its cationic and amphipathic properties, as a cell penetrating peptide, binding to heparan sulfate proteoglycans (HSPGs) and activating eNOS phosphorylation (Ser1179) through a PI3K-dependent, endocytosis-coupled mechanism. In bovine aortic endothelial cells (BAE-1 cells) endocytotic vesicles trafficking was quantified by confocal microscopy with a water-soluble membrane dye; caveolin 1 (Cav1) shift from plasma membrane was studied by immunofluorescence staining; VS-1-dependent eNOS phosphorylation was assessed by immunofluorescence and immunoblot analysis. Our experiments demonstrate that VS-1 induces a marked increase in the caveolae-dependent endocytosis, (115 +/- 23% endocytotic spots/cell/field in VS-1-treated cells with respect to control cells), that is significantly reduced by both heparinase III (HEP, 17 +/- 15% above control) and Wortmannin (Wm, 7 +/- 22% above control). Heparinase, Wortmannin, and methyl-beta-cyclodextrin (MbetaCD) abolish the VS-1-dependent eNOS phosphorylation (P(Ser1179)eNOS). These results suggest a novel signal transduction pathway for endogenous cationic and amphipathic peptides in endothelial cells: HSPGs interaction and caveolae endocytosis, coupled with a PI3K-dependent eNOS phosphorylation.

摘要

越来越多的证据表明,嗜铬粒蛋白 A(CgA)衍生肽血管抑肽 1(VS-1)在心血管活动的保护性调节中起着重要作用,因为它能够对抗肾上腺素能信号。我们最近表明,VS-1 通过内皮细胞诱导依赖 PI3K 的一氧化氮(NO)释放,有助于解释其心脏抑制和血管扩张特性的机制。然而,这种肽引起的内皮型一氧化氮合酶(eNOS)激活的细胞内过程仍然未知,因为尚未鉴定出典型的高亲和力受体。在这里,我们假设 VS-1 基于其阳离子和两亲性特性,作为细胞穿透肽,通过 PI3K 依赖性、内吞作用偶联机制与硫酸乙酰肝素蛋白聚糖(HSPGs)结合并激活 eNOS 磷酸化(Ser1179),在血管内皮细胞中发挥作用。在牛主动脉内皮细胞(BAE-1 细胞)中,通过共焦显微镜用水溶性膜染料定量测定内吞小泡的运输;通过免疫荧光染色研究质膜中 cav1(Cav1)的移位;通过免疫荧光和免疫印迹分析评估 VS-1 依赖性 eNOS 磷酸化。我们的实验表明,VS-1 诱导 caveolae 依赖性内吞作用显著增加(VS-1 处理的细胞中的内吞斑点/细胞/视野比对照细胞增加 115 +/- 23%),肝素酶 III(HEP)和 Wortmannin(Wm)显著降低(对照细胞增加 17 +/- 15%和 7 +/- 22%)。肝素酶、Wortmannin 和甲基-β-环糊精(MbetaCD)消除了 VS-1 依赖性的 eNOS 磷酸化(P(Ser1179)eNOS)。这些结果表明了内皮细胞中内源性阳离子和两亲肽的新信号转导途径:HSPGs 相互作用和 caveolae 内吞作用,与 PI3K 依赖性 eNOS 磷酸化偶联。

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