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短干扰RNA在培养的松树细胞中诱导的差异基因沉默与细胞周期阶段相关。

Differential gene silencing induced by short interfering RNA in cultured pine cells associates with the cell cycle phase.

作者信息

Tang Wei, Newton Ronald J, Weidner Douglas A

机构信息

Department of Biology, Howell Science Complex, East Carolina University, Greenville, NC 27858-4353, USA.

出版信息

Planta. 2006 Jun;224(1):53-60. doi: 10.1007/s00425-005-0190-z. Epub 2005 Dec 9.

Abstract

The double-stranded short interfering RNA (siRNA) molecules can silence targeted genes through sequence-specific cleavage of the cognate RNA transcript. The rapid adoption of technologies based on this siRNA interference mechanism has been a widely used method to analyze gene function in plants, invertebrates, and mammalian systems. In order to understand the dynamics of siRNA-mediated gene inactivation during cell division, we have investigated the relationship between the cell cycle phase and the post-transcriptional gene silencing mediated by siRNA in gfp transgenic Virginia pine (Pinus virginiana Mill.) cells. Among the different phases of the cell cycle, transgenic cells at the M phase gave 2-3 times lower gfp silencing than those at the G1, S, and G2 phases. The similar results of the siRNA-mediated gfp silencing were obtained in three transgenic cell lines. Differential gfp silencing induced by siRNA has been confirmed by northern blot, laser scanning microscopy, and siRNA analysis. These data suggested that siRNA-mediated gene inactivation is associated with the cell cycle phase in Virginia pine.

摘要

双链短干扰RNA(siRNA)分子可通过对同源RNA转录本进行序列特异性切割来沉默靶向基因。基于这种siRNA干扰机制的技术迅速得到应用,已成为在植物、无脊椎动物和哺乳动物系统中分析基因功能的广泛使用的方法。为了了解细胞分裂过程中siRNA介导的基因失活动态,我们研究了细胞周期阶段与绿色荧光蛋白(GFP)转基因弗吉尼亚松(Pinus virginiana Mill.)细胞中siRNA介导的转录后基因沉默之间的关系。在细胞周期的不同阶段中,处于M期的转基因细胞的GFP沉默水平比处于G1、S和G2期的细胞低2至3倍。在三个转基因细胞系中获得了相似的siRNA介导的GFP沉默结果。通过Northern印迹、激光扫描显微镜和siRNA分析证实了siRNA诱导的差异性GFP沉默。这些数据表明,在弗吉尼亚松中,siRNA介导的基因失活与细胞周期阶段有关。

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