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[血管生成素核功能的体外核转录分析]

[An in vitro nuclear run-on assay for nuclear function of angiogenin].

作者信息

Li Ling-Yun, Zhang Yao-Zhou, Zheng Yi-Fan, Hu Guo-Fu, Xu Zheng-Ping

机构信息

Department of Public Health, Zhejiang University School of Medicine, Hangzhou 310031, China.

出版信息

Sheng Wu Hua Xue Yu Sheng Wu Wu Li Xue Bao (Shanghai). 2003 Apr;35(4):350-4.

Abstract

A sensitive and quantitative in vitro analysis method was established to detect the nascent RNAs stimulated by angiogenin using the nuclei isolated from human umbilical vein endothelial cells (HUVE). Angiogenin was mixed with nuclei in the reaction buffer, then transcription was initiated by adding the NTPs mixture. The RNA products were measured quantitatively by [alpha-(32)P]CTP incorporation with a liquid scintillation counter, either after removing free isotope by using spin column, or cutting the electrophoresis lane and counting after autoradiography. It was found that the optimum reacting temperature was 30 degrees, the most suitable reaction time was 30 min for this system, and the transcription enhancement activity of angiogenin was dose-dependent with the feasible concentration being 1 mg/L. Higher concentration of angiogenin degraded the RNA products in the system, suggesting that there is a mechanism to control the entry and accumulation of angiogenin in the target cells, which ensured angiogenin to play its role properly in the cells. Based on the evidence that angiogenin bound to DNA in nucleolus and enhanced RNA transcription, it was proposed that angiogenin might act as a trans-acting factor in nucleus to regulate RNA transcription, and inhibition of angiogenin-stimulated RNA transcription might be a promising target for screening anti-angiogenesis inhibitor.

摘要

利用从人脐静脉内皮细胞(HUVE)分离得到的细胞核,建立了一种灵敏且定量的体外分析方法,以检测血管生成素刺激产生的新生RNA。将血管生成素与细胞核在反应缓冲液中混合,然后通过添加NTP混合物启动转录。RNA产物通过[α-(32)P]CTP掺入,使用液体闪烁计数器进行定量测量,测量方法有两种:一种是使用旋转柱去除游离同位素后测量,另一种是在放射自显影后切割电泳条带并计数。结果发现,该系统的最佳反应温度为30℃,最合适的反应时间为30分钟,血管生成素的转录增强活性呈剂量依赖性,可行浓度为1mg/L。较高浓度的血管生成素会降解系统中的RNA产物,这表明存在一种机制来控制血管生成素在靶细胞中的进入和积累,从而确保血管生成素在细胞中正常发挥作用。基于血管生成素与核仁中的DNA结合并增强RNA转录这一证据,有人提出血管生成素可能作为细胞核中的反式作用因子来调节RNA转录,抑制血管生成素刺激的RNA转录可能是筛选抗血管生成抑制剂的一个有前景的靶点。

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