Durán W N, Seyama A, Yoshimura K, González D R, Jara P I, Figueroa X F, Borić M P
Program in Vascular Biology, UMDNJ-New Jersey Medical School, Newark, New Jersey, 07013, USA.
Microvasc Res. 2000 Sep;60(2):104-11. doi: 10.1006/mvre.2000.2250.
The role of nitric oxide (NO) in microvascular permeability is controversial, in part because the regulation of its endothelial constitutive synthase, eNOS, has been studied in vitro but not in vivo. Our study was designed to detect the morphologic and functional presence of eNOS and to test whether eNOS could be phosphorylated by platelet-activating factor (PAF), an agent that induces hyperpermeability. Immunocytochemistry was applied using human anti-eNOS antibodies in the hamster cheek pouch (hcp). The hcp microvessels demonstrated positive reaction products in the endothelium. The functional presence of eNOS in hcp was investigated by topical application of 10(-7) M PAF to the hcp and by measuring NO production by chemiluminescence. The mean baseline value of NO release was 63.3 +/- 6.9 pmol/ml (mean +/- SE). Application of PAF led to an increase in mean NO release to 120.8 +/- 31.2 pmol/ml (P < 0.05). In another series of experiments, 10(-7) M PAF was applied topically to hcp preincubated with [(32)P]orthophosphoric acid. Immunoprecipitation and Western blots detected (32)P-labeled bands that migrated with the mobility of positive eNOS indicating phosphorylated eNOS protein. The intensity of the radioactive bands was evaluated by computer-assisted image analysis. Comparison of the net band intensities yielded a mean PAF-treated/control ratio of 1.6 +/- 0.1. Our data demonstrate the morphologic and functional presence of eNOS in the microcirculation. The data also provide evidence that the function of microvascular eNOS is subject to regulation by phosphorylation.
一氧化氮(NO)在微血管通透性中所起的作用存在争议,部分原因是其内皮型组成型合酶(eNOS)的调节作用已在体外进行研究,但尚未在体内进行研究。我们的研究旨在检测eNOS的形态学和功能性存在,并测试eNOS是否可被诱导通透性增加的血小板活化因子(PAF)磷酸化。在仓鼠颊囊(hcp)中使用人抗eNOS抗体进行免疫细胞化学检测。hcp微血管在内皮中显示出阳性反应产物。通过向hcp局部应用10^(-7) M PAF并通过化学发光测量NO生成来研究hcp中eNOS的功能性存在。NO释放的平均基线值为63.3±6.9 pmol/ml(平均值±标准误)。应用PAF导致平均NO释放增加至120.8±31.2 pmol/ml(P<0.05)。在另一系列实验中,将10^(-7) M PAF局部应用于预先用[³²P]正磷酸孵育的hcp。免疫沉淀和蛋白质印迹检测到与阳性eNOS迁移率相同的³²P标记条带,表明eNOS蛋白被磷酸化。通过计算机辅助图像分析评估放射性条带的强度。对净条带强度进行比较,得出PAF处理组/对照组的平均比值为1.6±0.1。我们的数据证明了eNOS在微循环中的形态学和功能性存在。这些数据还提供了证据,表明微血管eNOS的功能受磷酸化调节。