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Physiological importance of RNA and protein mobility in the cell nucleus

机译:RNA和蛋白质在细胞核中的迁移的生理重要性

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摘要

Trafficking of proteins and RNAs is essential for cellular function and homeostasis. While it has long been appreciated that proteins and RNAs move within cells, only recently has it become possible to visualize trafficking events in vivo. Analysis of protein and RNA motion within the cell nucleus have been particularly intriguing as they have revealed an unanticipated degree of dynamics within the organelle. These methods have revealed that the intranuclear trafficking occurs largely by energy-independent mechanisms and is driven by diffusion. RNA molecules and non-DNA binding proteins undergo constrained diffusion, largely limited by the spatial constraint imposed by chromatin, and chromatin binding proteins move by a stop-and-go mechanism where their free diffusion is interrupted by random association with the chromatin fiber. The ability and mode of motion of proteins and RNAs has implications for how they find nuclear targets on chromatin and in nuclear subcompartments and how macromolecular complexes are assembled in vivo. Most importantly, the dynamic nature of proteins and RNAs is emerging as a means to control physiological cellular responses and pathways.
机译:蛋白质和RNA的运输对于细胞功能和体内平衡至关重要。尽管人们早就认识到蛋白质和RNA在细胞内移动,但直到最近才有可能可视化体内的运输事件。对细胞核内蛋白质和RNA运动的分析特别引人入胜,因为它们揭示了细胞器内动力学的意外程度。这些方法表明,核内贩运主要是通过与能量无关的机制发生的,并由扩散驱动。 RNA分子和非DNA结合蛋白会受到约束的扩散,很大程度上受染色质施加的空间限制,染色质结合蛋白会通过走走停停的机制移动,在那里它们的自由扩散会因与染色质纤维的随机缔合而中断。蛋白质和RNA的运动能力和模式对它们如何在染色质和核小室中找到核靶标以及在体内如何组装大分子复合物具有影响。最重要的是,蛋白质和RNA的动态性质正在成为控制生理细胞反应和途径的手段。

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