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线粒体偶联因子6存在于人类血管内皮细胞表面,并由剪切应力释放。

Mitochondrial coupling factor 6 is present on the surface of human vascular endothelial cells and is released by shear stress.

作者信息

Osanai T, Okada S, Sirato K, Nakano T, Saitoh M, Magota K, Okumura K

机构信息

Second Department of Internal Medicine, Hirosaki University School of Medicine, Hirosaki, Japan.

出版信息

Circulation. 2001 Dec 18;104(25):3132-6. doi: 10.1161/hc5001.100832.

Abstract

BACKGROUND

We showed that mitochondrial coupling factor 6 (CF6), an endogenous inhibitor of prostacyclin synthesis, is present in the systemic circulation as a pressor substance in rats. We investigated the possibility of vascular endothelial cells as a source of circulating CF6.

METHODS AND RESULTS

We used 2 cultured endothelial cell lines, human umbilical vein endothelial cells (HUVECs) and ECV 304 cells (transformed HUVECs), for this study. Immunofluorescence microscopy of both ECV 304 and HUVECs confirmed the surface-associated immunoreactivity of anti-CF6 antibody on the plasma membrane. The concentration of CF6 in the medium increased gradually with time in both ECV 304 and HUVECs in static conditions. Exposure of ECV 304 and HUVECs to a fluid shear stress enhanced the release of CF6: In ECV 304, the concentration of CF6 in the medium (ng. well(-1). 6 hours(-1)) was 2.1+/-0.8 at baseline, 4.3+/-0.8 after shear at 15 dynes/cm(2), and 57.7+/-8.4 after shear at 25 dynes/cm(2). CF6 contents in the cell homogenate and mitochondria were both significantly increased after exposure of ECV 304 to 6-hour shear at 15 dynes/cm(2), whereas they were unchanged after shear stress at 25 dynes/cm(2). The ratio of CF6 to GAPDH mRNA was enhanced significantly, by 1.8+/-0.2-fold, after 6-hour shear stress at 25 dynes/cm(2). Flow cytometry analysis revealed that the surface-associated CF6 was significantly increased in a 3-hour static condition after the previous exposure of the cells to shear stress for 3 hours.

CONCLUSIONS

Vascular endothelial cells are a source of CF6, and shear stress regulates the release of the surface-associated CF6.

摘要

背景

我们发现,线粒体偶联因子6(CF6)作为前列环素合成的内源性抑制剂,在大鼠体内作为一种升压物质存在于体循环中。我们研究了血管内皮细胞作为循环CF6来源的可能性。

方法与结果

本研究使用了2种培养的内皮细胞系,人脐静脉内皮细胞(HUVECs)和ECV 304细胞(转化的HUVECs)。对ECV 304和HUVECs进行免疫荧光显微镜检查,证实抗CF6抗体在质膜上具有表面相关免疫反应性。在静态条件下,ECV 304和HUVECs培养基中CF6的浓度均随时间逐渐增加。将ECV 304和HUVECs暴露于流体剪切应力下可增强CF6的释放:在ECV 304中,培养基中CF6的浓度(ng·孔-1·6小时-1)在基线时为2.1±0.8,在15达因/平方厘米的剪切力作用后为4.3±0.8,在25达因/平方厘米的剪切力作用后为57.7±8.4。将ECV 304暴露于15达因/平方厘米的剪切力6小时后,细胞匀浆和线粒体中的CF6含量均显著增加,而在25达因/平方厘米的剪切应力作用后,它们保持不变。在25达因/平方厘米的剪切应力作用6小时后,CF6与GAPDH mRNA的比值显著提高,提高了1.8±0.2倍。流式细胞术分析显示,在细胞先前暴露于剪切应力3小时后的3小时静态条件下,表面相关CF6显著增加。

结论

血管内皮细胞是CF6的来源,剪切应力调节表面相关CF6的释放。

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