New insights into nucleolar architecture and activity.

Ivan Raska, Peter J Shaw, Dusan Cmarko
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引用次数: 187

Abstract

The nucleolus is the most obvious and clearly differentiated nuclear subcompartment. It is where ribosome biogenesis takes place and has been the subject of research over many decades. In recent years progress in our understanding of ribosome biogenesis has been rapid and is accelerating. This review discusses current understanding of how the biochemical processes of ribosome biosynthesis relate to an observable nucleolar structure. Emerging evidence is also described that points to other, unconventional roles for the nucleolus, particularly in the biogenesis of other RNA-containing cellular machinery, and in stress sensing and the control of cellular activity. Striking recent observations show that the nucleolus and its components are highly dynamic, and that the steady state structure observed by microscopical methods must be interpreted as the product of these dynamic processes. We still do not have detailed enough information to understand fully the organization and regulation of the various processes taking place in the nucleolus. However, the present power of light and electron microscopy (EM) techniques means that a description of nucleolar processes at the molecular level is now achievable, and the time is ripe for such an effort.

对核仁结构和活性的新认识。
核仁是最明显、分化最清楚的核亚室。它是核糖体生物发生的地方,几十年来一直是研究的主题。近年来,我们对核糖体生物发生的认识取得了迅速的进展,而且还在加速发展。这篇综述讨论了目前对核糖体生物合成的生化过程如何与可观察到的核仁结构相关的理解。新出现的证据也指出了核仁的其他非常规作用,特别是在其他含有rna的细胞机制的生物发生中,以及在应激传感和细胞活动控制中。最近惊人的观察表明,核仁及其组成部分是高度动态的,用显微方法观察到的稳态结构必须被解释为这些动态过程的产物。我们仍然没有足够详细的信息来充分了解核仁中发生的各种过程的组织和调节。然而,目前的光和电子显微镜(EM)技术意味着现在可以在分子水平上描述核仁过程,并且这种努力的时机已经成熟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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