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G972R IRS-1变体损害培养的人内皮细胞中胰岛素对内皮型一氧化氮合酶的调节作用。

G972R IRS-1 variant impairs insulin regulation of endothelial nitric oxide synthase in cultured human endothelial cells.

作者信息

Federici Massimo, Pandolfi Assunta, De Filippis Elena Anna, Pellegrini Giuliana, Menghini Rossella, Lauro Davide, Cardellini Marina, Romano Mario, Sesti Giorgio, Lauro Renato, Consoli Agostino

机构信息

Department of Medicine and Aging Sciences, Edificio CeSi, Room 271, University of Chieti, Via dei Vestini, 1, 66100 Chieti, Italy.

出版信息

Circulation. 2004 Jan 27;109(3):399-405. doi: 10.1161/01.CIR.0000109498.77895.6F. Epub 2004 Jan 5.

Abstract

BACKGROUND

Impaired insulin-mediated vasodilation might contribute to vascular damage in insulin-resistant states. Little is known about insulin regulation of nitric oxide (NO) synthesis in insulin-resistant cells. The aim of this work was to investigate insulin regulation of NO synthesis in human umbilical vein endothelial cells (HUVECs) carrying the IRS-1 gene G972R variant, known to be associated with impaired insulin activation of the PI3-kinase (PI3-K) pathway in transfected cells.

METHODS AND RESULTS

HUVECs were screened for the presence of the G972R-IRS-1 (HUVEC-G972R) variant by restriction fragment length polymorphisms. After 24-hour exposure to 10(-7) mol/L insulin, endothelial NO synthase (eNOS) mRNA (reverse transcription-polymerase chain reaction), eNOS protein levels (Western blotting), and NOS activity (conversion of [(3)H]arginine into [(3)H]citrulline) were increased in wild-type HUVECs (HUVEC-WT), whereas they did not change from baseline in HUVEC-G972R. Compared with HUVEC-WT, in HUVEC-G972R after 2 and 10 minutes of insulin stimulation, IRS-1-associated PI3-K activity was reduced by 47% and 32%, respectively; Akt phosphorylation was decreased by 40% at both time points; and eNOS-Ser1177 phosphorylation was reduced by 38% and 51%, respectively. In HUVEC-WT, eNOS-Thr495 phosphorylation decreased after insulin stimulation. In contrast, in HUVEC-G972R, eNOS-Thr495 phosphorylation increased after insulin stimulation and was 40% greater than in HUVEC-WT.

CONCLUSIONS

Our data demonstrate that genetic impairment of the (IRS)-1/PI3-K/PDK-1/Akt insulin signaling cascade determines impaired insulin-stimulated NO release and suggest that the G972R-IRS-1 polymorphism, through a direct impairment of Akt/eNOS activation in endothelial cells, may contribute to the genetic predisposition to develop endothelial dysfunction and cardiovascular disease.

摘要

背景

胰岛素介导的血管舒张功能受损可能导致胰岛素抵抗状态下的血管损伤。关于胰岛素抵抗细胞中一氧化氮(NO)合成的胰岛素调节知之甚少。本研究旨在探讨携带IRS-1基因G972R变异体的人脐静脉内皮细胞(HUVECs)中NO合成的胰岛素调节情况,已知该变异体与转染细胞中PI3激酶(PI3-K)途径的胰岛素激活受损有关。

方法与结果

通过限制性片段长度多态性筛选HUVECs中G972R-IRS-1(HUVEC-G972R)变异体的存在。在10⁻⁷mol/L胰岛素作用24小时后,野生型HUVECs(HUVEC-WT)中内皮型一氧化氮合酶(eNOS)mRNA(逆转录-聚合酶链反应)、eNOS蛋白水平(蛋白质印迹法)和NOS活性([³H]精氨酸转化为[³H]瓜氨酸)均升高,而HUVEC-G972R中这些指标与基线相比无变化。与HUVEC-WT相比,在胰岛素刺激2分钟和10分钟后,HUVEC-G972R中与IRS-1相关的PI3-K活性分别降低了47%和32%;两个时间点的Akt磷酸化均降低了40%;eNOS-Ser1177磷酸化分别降低了38%和51%。在HUVEC-WT中,胰岛素刺激后eNOS-Thr495磷酸化降低。相反,在HUVEC-G972R中,胰岛素刺激后eNOS-Thr495磷酸化增加,且比HUVEC-WT高40%。

结论

我们的数据表明,(IRS)-1/PI3-K/PDK-1/Akt胰岛素信号级联反应的基因损伤决定了胰岛素刺激的NO释放受损,并提示G972R-IRS-1多态性通过直接损害内皮细胞中的Akt/eNOS激活,可能导致发生内皮功能障碍和心血管疾病的遗传易感性。

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