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Identification of CD44 as a senescence-induced cell adhesion gene responsible for the enhanced monocyte recruitment to senescent endothelial cells.鉴定 CD44 为衰老诱导的细胞黏附基因,负责增强衰老内皮细胞对单核细胞的募集。
Am J Physiol Heart Circ Physiol. 2010 Jun;298(6):H2102-11. doi: 10.1152/ajpheart.00835.2009. Epub 2010 Apr 9.
2
Defining the regulation of KLF4 expression and its downstream transcriptional targets in vascular endothelial cells.定义血管内皮细胞中 KLF4 表达及其下游转录靶标的调控。
Biochem Biophys Res Commun. 2010 Jan 1;391(1):984-9. doi: 10.1016/j.bbrc.2009.12.002. Epub 2009 Dec 5.
3
Differential gene expression in young and senescent endothelial cells under static and laminar shear stress conditions.在静态和层流剪切应力条件下,年轻和衰老内皮细胞中的差异基因表达。
Free Radic Biol Med. 2009 Aug 1;47(3):291-9. doi: 10.1016/j.freeradbiomed.2009.04.032. Epub 2009 May 3.
4
Key transcriptional regulators of the vasoprotective effects of shear stress.剪切应力血管保护作用的关键转录调节因子。
Hamostaseologie. 2009 Jan;29(1):39-40, 41-3.
5
Laminar shear stress inhibits lipid peroxidation induced by high glucose plus arachidonic acid in endothelial cells.层流切应力抑制高糖加花生四烯酸诱导的内皮细胞脂质过氧化。
Am J Physiol Heart Circ Physiol. 2008 Nov;295(5):H1966-73. doi: 10.1152/ajpheart.00727.2008. Epub 2008 Sep 12.
6
Characterization of the brachial artery shear stress following walking exercise.步行运动后肱动脉剪切应力的特征分析
Vasc Med. 2008;13(2):105-11. doi: 10.1177/1358863x07086671.
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Endothelial nitric oxide production is tightly coupled to the citrulline-NO cycle.内皮细胞一氧化氮的产生与瓜氨酸-一氧化氮循环紧密相关。
Nitric Oxide. 2007 Nov-Dec;17(3-4):115-21. doi: 10.1016/j.niox.2007.07.001. Epub 2007 Aug 3.
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Endothelial-dependent mechanisms of leukocyte recruitment to the vascular wall.白细胞募集至血管壁的内皮依赖性机制。
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10
Role of endothelial shear stress in the natural history of coronary atherosclerosis and vascular remodeling: molecular, cellular, and vascular behavior.内皮剪切应力在冠状动脉粥样硬化自然病程及血管重塑中的作用:分子、细胞及血管行为
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内皮精氨酸琥珀酸合成酶 1 在静态和层流剪切应力条件下调节一氧化氮的产生和单核细胞黏附。

Endothelial argininosuccinate synthetase 1 regulates nitric oxide production and monocyte adhesion under static and laminar shear stress conditions.

机构信息

Department of Molecular Medicine, Cell and Matrix Research Institute, BK21 Medical Education Program for Human Resources, Kyungpook National University School of Medicine, Daegu 700-422, Korea.

出版信息

J Biol Chem. 2011 Jan 28;286(4):2536-42. doi: 10.1074/jbc.M110.180489. Epub 2010 Nov 24.

DOI:10.1074/jbc.M110.180489
PMID:21106532
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3024748/
Abstract

Laminar shear stress (LSS) is known to increase endothelial nitric oxide (NO) production, which is essential for vascular health, through expression and activation of nitric oxide synthase 3 (NOS3). Recent studies demonstrated that LSS also increases the expression of argininosuccinate synthetase 1 (ASS1) that regulates the provision of L-arginine, the substrate of NOS3. It was thus hypothesized that ASS1 might contribute to vascular health by enhancing NO production in response to LSS. This hypothesis was pursued in the present study by modulating NOS3 and ASS1 levels in cultured endothelial cells. Exogenous expression of either NOS3 or ASS1 in human umbilical vein endothelial cells increased NO production and decreased monocyte adhesion stimulated by tumor necrosis factor-α (TNF-α). The latter effect of overexpressed ASS1 was reduced when human umbilical vein endothelial cells were co-treated with small interfering RNAs (siRNAs) for ASS1 or NOS3. SiRNAs of NOS3 and ASS1 attenuated the increase of NO production in human aortic endothelial cells stimulated by LSS (12 dynes·cm(-2)) for 24 h. LSS inhibited monocyte adhesion to human aortic endothelial cells stimulated by TNF-α, but this effect of LSS was abrogated by siRNAs of NOS3 and ASS1 that recovered the expression of vascular cell adhesion molecule-1. The current study suggests that the expression of ASS1 harmonized with that of NOS3 may be important for the optimized endothelial NO production and the prevention of the inflammatory monocyte adhesion to endothelial cells.

摘要

层流切应力(LSS)已知通过表达和激活一氧化氮合酶 3(NOS3)来增加内皮细胞一氧化氮(NO)的产生,这对于血管健康至关重要。最近的研究表明,LSS 还会增加精氨酸琥珀酸合成酶 1(ASS1)的表达,从而调节 NOS3 的底物 L-精氨酸的供应。因此,有人假设 ASS1 可能通过增加对 LSS 的反应来促进一氧化氮的产生,从而有助于血管健康。本研究通过调节培养的内皮细胞中的 NOS3 和 ASS1 水平来验证这一假说。在人脐静脉内皮细胞中过表达 NOS3 或 ASS1 可增加 NO 产生并减少肿瘤坏死因子-α(TNF-α)刺激的单核细胞黏附。当人脐静脉内皮细胞与 ASS1 或 NOS3 的小干扰 RNA(siRNA)共同处理时,过表达 ASS1 的后一种作用会降低。NOS3 和 ASS1 的 siRNA 减弱了 LSS(12 dynes·cm(-2)) 刺激 24 小时后对人主动脉内皮细胞 NO 产生的增加。LSS 抑制 TNF-α刺激的人主动脉内皮细胞单核细胞黏附,但这种 LSS 的作用被 NOS3 和 ASS1 的 siRNA 阻断,后者恢复了血管细胞黏附分子-1 的表达。本研究表明,ASS1 的表达与 NOS3 的表达相协调可能对优化内皮细胞一氧化氮的产生和防止炎症性单核细胞黏附到内皮细胞非常重要。