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The movement of coiled bodies visualized in living plant cells by the green fluorescent protein.

机译:通过绿色荧光蛋白可以在活植物细胞中看到盘绕物体的运动。

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摘要

Coiled bodies are nuclear organelles that contain components of at least three RNA-processing pathways: pre-mRNA splicing, histone mRNA 3'- maturation, and pre-rRNA processing. Their function remains unknown. However, it has been speculated that coiled bodies may be sites of splicing factor assembly and/or recycling, play a role in histone mRNA 3'-processing, or act as nuclear transport or sorting structures. To study the dynamics of coiled bodies in living cells, we have stably expressed a U2B"-green fluorescent protein fusion in tobacco BY-2 cells and in Arabidopsis plants. Time-lapse confocal microscopy has shown that coiled bodies are mobile organelles in plant cells. We have observed movements of coiled bodies in the nucleolus, in the nucleoplasm, and from the periphery of the nucleus into the nucleolus, which suggests a transport function for coiled bodies. Furthermore, we have observed coalescence of coiled bodies, which suggests a mechanism for the decrease in coiled body number during the cell cycle. Deletion analysis of the U2B" gene construct has shown that the first RNP-80 motif is sufficient for localization to the coiled body.
机译:卷状体是核细胞器,包含至少三个RNA加工途径的成分:mRNA前剪接,组蛋白mRNA 3'成熟和rRNA预处理。它们的功能仍然未知。然而,已经推测,盘绕体可以是剪接因子组装和/或再循环的位点,在组蛋白mRNA 3'加工中起作用,或者充当核转运或分选结构。为了研究活细胞中螺旋体的动力学,我们已经在烟草BY-2细胞和拟南芥属植物中稳定表达了U2B“-绿色荧光蛋白融合体。延时共聚焦显微镜显示,螺旋体是植物细胞中的移动细胞器。我们已经观察到螺旋状核在核仁中,核质中以及从核的外围进入核仁的运动,这暗示了螺旋状核的转运功能;此外,我们还观察到了螺旋状核的聚结,这表明了一种机制对U2B”基因构建体的缺失分析表明,第一个RNP-80基序足以定位于螺旋状体。

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