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在重力改变的情况下,独行菜根分生组织细胞中纤维蛋白原和NopA64的核仁亚定位发生变化。

Subnucleolar location of fibrillarin and NopA64 in Lepidium sativum root meristematic cells is changed in altered gravity.

作者信息

Sobol M, Gonzalez-Camacho F, Rodríguez-Vilariño V, Kordyum E, Medina F J

机构信息

Centro de Investigaciones Biológicas, Consejo Superior de Investigaciones Cientificas, Madrid, Spain.

出版信息

Protoplasma. 2006 Sep;228(4):209-19. doi: 10.1007/s00709-006-0157-3. Epub 2006 Jul 17.

Abstract

Fibrillarin and the plant nucleolin homolog NopA64 are two important nucleolar proteins involved in pre-rRNA processing. In order to determine the effects of the altered gravity environment on the nucleolus, we have investigated the location of fibrillarin and NopA64 in nucleolar subcomponents of cress (Lepidium sativum L.) root meristematic cells grown under clinorotation, which reproduces an important feature of microgravity, namely, the absence of the orienting action of a gravity vector, and compared it to the location in control cells grown in normal 1 g conditions. Prior to these experiments, we report here the characterization of cress fibrillarin as a 41 kDa protein which can be isolated from meristematic cells in three nuclear fractions, namely, the soluble ribonucleoprotein fraction, the chromatin fraction, and the nuclear-matrix fraction. Furthermore, as reported for other species, the location of both fibrillarin and NopA64 in the cress cell nucleolus was in zones known to contain complex ribonucleoprotein particles involved in early pre-rRNA processing, i.e., processomes. Under altered gravity, a decrease in the quantity of both fibrillarin and NopA64 compared to controls was observed in the transition zone between fibrillar centers and the dense fibrillar component, as well as in the bulk of the dense fibrillar component. These data suggest that altered (reduced) gravity results in a lowered level of functional activity in the nucleolus.

摘要

纤维蛋白和植物核仁素同源物NopA64是参与前体rRNA加工的两种重要核仁蛋白。为了确定重力环境改变对核仁的影响,我们研究了在回转器模拟微重力重要特征(即不存在重力矢量定向作用)下生长的水芹(独行菜)根分生组织细胞核仁亚组分中纤维蛋白和NopA64的定位,并将其与在正常1g条件下生长的对照细胞中的定位进行比较。在进行这些实验之前,我们在此报告水芹纤维蛋白的特性,它是一种41 kDa的蛋白质,可从分生组织细胞的三个核组分中分离出来,即可溶性核糖核蛋白组分、染色质组分和核基质组分。此外,正如其他物种所报道的那样,水芹细胞核仁中纤维蛋白和NopA64的定位都在已知含有参与早期前体rRNA加工的复合核糖核蛋白颗粒(即加工体)的区域。在重力改变的情况下,在纤维中心与致密纤维组分之间的过渡区以及大部分致密纤维组分中,观察到纤维蛋白和NopA64的量与对照相比有所减少。这些数据表明,重力改变(降低)导致核仁功能活性水平降低。

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