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RGDN肽与内皮细胞α5β1整合素的相互作用导致大鼠骨骼肌小动脉持续的内皮素依赖性血管收缩。

RGDN peptide interaction with endothelial alpha5beta1 integrin causes sustained endothelin-dependent vasoconstriction of rat skeletal muscle arterioles.

作者信息

Mogford J E, Davis G E, Meininger G A

机构信息

Microcirculation Research Institute and Department of Medical Physiology, Texas A&M University Health Science Center, Texas A&M University, College Station, Texas 77843-1114, USA.

出版信息

J Clin Invest. 1997 Sep 15;100(6):1647-53. doi: 10.1172/JCI119689.

Abstract

The ability of an integrin-binding Arg-Gly-Asp-Asn (RGDN)- containing peptide to influence vascular tone by interacting with the alpha5beta1 integrin was studied using rat skeletal muscle arterioles. After blockade of beta3 integrin function, isolated arterioles with spontaneous tone showed concentration-dependent vasoconstrictions to topical application of GRGDNP, a peptide that shows a greater ability to interact with alpha5beta1 than with alphavbeta3. The constriction to GRGDNP (2.1 mM) was inhibited by blocking alpha5 integrin function, and was intensified by blocking beta3 integrin function. In contrast, GRGDSP, a peptide that interacts better with alphavbeta3, was unable to induce sustained constrictions. Removal of the endothelium abolished the vasoconstriction in response to GRGDNP, suggesting that the response was due to release of an endothelium-dependent factor. Indeed, blockade of ETA endothelin receptors with BQ-610 (1 microM), similar to removal of the endothelium and alpha5 integrin blockade, inhibited the vasoconstriction. These data indicate that interaction of RGD peptides, and in particular the RGDN sequence with endothelial cell alpha5beta1, causes endothelin-mediated arteriolar vasoconstriction. These results indicate that integrins are novel signaling receptors within the vascular wall that affect vasomotor tone, and may play an important role in vascular control.

摘要

利用大鼠骨骼肌小动脉研究了含整合素结合精氨酸 - 甘氨酸 - 天冬氨酸 - 天冬酰胺(RGDN)的肽通过与α5β1整合素相互作用影响血管张力的能力。在阻断β3整合素功能后,具有自发张力的分离小动脉对局部应用GRGDNP(一种与α5β1相互作用能力强于αvβ3的肽)呈现浓度依赖性血管收缩。对GRGDNP(2.1 mM)的收缩反应可通过阻断α5整合素功能而受到抑制,并通过阻断β3整合素功能而增强。相比之下,与αvβ3相互作用更好的肽GRGDSP不能诱导持续收缩。去除内皮可消除对GRGDNP的血管收缩反应,提示该反应是由于内皮依赖性因子的释放所致。实际上,用BQ - 610(1 microM)阻断ETA内皮素受体,类似于去除内皮和阻断α5整合素,可抑制血管收缩。这些数据表明RGD肽,特别是RGDN序列与内皮细胞α5β1的相互作用会导致内皮素介导的小动脉血管收缩。这些结果表明整合素是血管壁内影响血管舒缩张力的新型信号受体,可能在血管控制中起重要作用。

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