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在鱼类rRNA调控过程中观察到的细胞核表型可塑性涉及卡哈尔体的动态变化。

The nuclear phenotypic plasticity observed in fish during rRNA regulation entails Cajal bodies dynamics.

作者信息

Alvarez Marco, Nardocci Gino, Thiry Marc, Alvarez Rodrigo, Reyes Mauricio, Molina Alfredo, Vera M Ines

机构信息

Department of Biological Sciences, Universidad Andres Bello, and Millennium Institute for Fundamental and Applied Biology, Santiago, Chile.

出版信息

Biochem Biophys Res Commun. 2007 Aug 17;360(1):40-5. doi: 10.1016/j.bbrc.2007.05.217. Epub 2007 Jun 13.

Abstract

Cajal bodies (CBs) are small mobile organelles found throughout the nucleoplasm of animal and plant cells. The dynamics of these organelles involves interactions with the nucleolus. The later has been found to play a substantial role in the compensatory response that evolved in eurythermal fish to adapt to the cyclic seasonal habitat changes, i.e., temperature and photoperiod. Contrary to being constitutive, rRNA synthesis is dramatically regulated between summer and winter, thus affecting ribosomal biogenesis which plays a central role in the acclimatization process. To examine whether CBs, up to now, never described in fish, were also sustaining the phenotypic plasticity observed in nuclei of fish undergoing seasonal acclimatization, we identified these organelles both, by transmission electronic microscopy and immunodetection with the marker protein p80-coilin. We found transcripts in all tissues analyzed. Furthermore we assessed that p80-coilin gene expression was always higher in summer-acclimatized fish when compared to that adapted to the cold season, indicating that p80-coilin expression is modulated upon seasonal acclimatization. Concurrently, CBs were more frequently found in summer-acclimatized carp which suggests that the organization of CBs is involved in adaptive processes and contribute to the phenotypic plasticity of fish cell nuclei observed concomitantly with profound reprogramming of nucleolar components and regulation of ribosomal rRNAs.

摘要

卡哈尔体(CBs)是在动植物细胞的核质中发现的小型可移动细胞器。这些细胞器的动态变化涉及与核仁的相互作用。已发现核仁在广温性鱼类进化出的适应周期性季节性栖息地变化(即温度和光周期)的补偿反应中发挥重要作用。与组成型相反,rRNA合成在夏季和冬季之间受到显著调节,从而影响在适应过程中起核心作用的核糖体生物发生。为了研究迄今在鱼类中从未描述过的卡哈尔体是否也维持了经历季节性适应的鱼类细胞核中观察到的表型可塑性,我们通过透射电子显微镜和用标记蛋白p80-卷曲螺旋进行免疫检测来鉴定这些细胞器。我们在所有分析的组织中都发现了转录本。此外,我们评估发现,与适应寒冷季节的鱼类相比,在适应夏季的鱼类中p80-卷曲螺旋基因表达总是更高,这表明p80-卷曲螺旋表达在季节性适应时受到调节。同时,在适应夏季的鲤鱼中更频繁地发现卡哈尔体,这表明卡哈尔体的组织参与了适应性过程,并有助于鱼类细胞核的表型可塑性,这与核仁成分的深度重编程和核糖体rRNA的调节同时出现。

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