Shopland Lindsay S, Johnson Carol V, Lawrence Jeanne B
Department of Cell Biology, University of Massachusetts Medical School, 55 Lake Avenue North (S3-138), Worcester, MA 01655-0002, USA.
J Struct Biol. 2002 Oct-Dec;140(1-3):131-9. doi: 10.1016/s1047-8477(02)00507-5.
A fundamental question of mRNA metabolism concerns the spatial organization of the steps involved in generating mature transcripts and their relationship to SC-35 domains, nuclear compartments enriched in mRNA metabolic factors and poly A+ RNA. Because poly A+ RNA in SC-35 domains remains after transcription inhibition, a prevailing view has been that most or all SC-35 domains do not contain protein-encoding mRNAs but stable RNAs with nuclear functions and thus that these compartments do not have direct roles in mRNA synthesis or transport. However, the transcription, splicing, and transport of transcripts from a specific gene have been shown to occur in association with two of these 15-30 nuclear compartments. Here we show that virtually all SC-35 domains can contain specific mRNAs and that these persist in SC-35 domains after treatment with three different transcription-inhibitory drugs. This suggests perturbation of an mRNA transport step that normally occurs in SC-35 domains and is post-transcriptional but still dependent on ongoing transcription. Finally, even after several hours of transcription arrest, these transcripts do not disperse from SC-35 domains, indicating that they are structurally constrained within them. Our findings importantly suggest a spatially direct role for all SC-35 domains in the coupled steps of mRNA metabolism and transport.
信使核糖核酸(mRNA)代谢的一个基本问题涉及生成成熟转录本所涉及步骤的空间组织,以及它们与SC - 35结构域、富含mRNA代谢因子和多聚腺苷酸加(poly A+)RNA的核区室之间的关系。由于转录抑制后SC - 35结构域中的多聚腺苷酸加RNA仍然存在,一种普遍的观点认为,大多数或所有SC - 35结构域不包含编码蛋白质的mRNA,而是具有核功能的稳定RNA,因此这些区室在mRNA合成或运输中没有直接作用。然而,已经表明来自特定基因的转录本的转录、剪接和运输与这15 - 30个核区室中的两个相关联。在这里,我们表明几乎所有的SC - 35结构域都可以包含特定的mRNA,并且在用三种不同的转录抑制药物处理后,这些mRNA仍保留在SC - 35结构域中。这表明通常发生在SC - 35结构域中的一个mRNA运输步骤受到了干扰,该步骤是转录后但仍依赖于正在进行的转录。最后,即使转录停滞数小时后,这些转录本也不会从SC - 35结构域中分散,这表明它们在结构上受到其限制。我们的发现重要地表明所有SC - 35结构域在mRNA代谢和运输的耦合步骤中具有空间上的直接作用。