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Spatial Organization and Dynamics of Transcription Elongation and Pre-mRNA Processing in Live Cells

机译:活细胞中转录延伸和前mRNA加工的空间组织和动力学

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During the last 30 years, systematic biochemical and functional studies have significantly expanded our knowledge of the transcriptional molecular components and the pre-mRNA processing machinery of the cell. However, our current understanding of how these functions take place spatiotemporally within the highly compartmentalized eukaryotic nucleus remains limited. Moreover, it is increasingly clear that “the whole is more than the sum of its parts” and that an understanding of the dynamic coregulation of genes is essential for fully characterizing complex biological phenomena and underlying diseases. Recent technological advances in light microscopy in addition to novel cell and molecular biology approaches have led to the development of new tools, which are being used to address these questions and may contribute to achieving an integrated and global understanding of how the genome works at a cellular level. Here, we review major hallmarks and novel insights in RNA polymerase II activity and pre-mRNA processing in the context of nuclear organization, as well as new concepts and challenges arising from our ability to gather extensive dynamic information at the single-cell resolution.
机译:在过去的30年中,系统的生化和功能研究极大地扩展了我们对细胞的转录分子成分和pre-mRNA处理机制的了解。但是,我们目前对这些功能如何在高度分隔的真核细胞内时空发生的理解仍然有限。此外,越来越清楚的是,“整体不仅仅是其各个部分的总和”,而且对基因的动态共调节的理解对于充分表征复杂的生物现象和潜在疾病至关重要。除了新颖的细胞和分子生物学方法外,光学显微镜的最新技术进步还导致了新工具的开发,这些新工具正用于解决这些问题,并可能有助于实现对基因组在细胞内如何工作的全面和全球性了解。水平。在这里,我们回顾了在核组织背景下RNA聚合酶II活性和mRNA前加工的主要标志和新颖见解,以及由于我们能够以单细胞分辨率收集大量动态信息而产生的新概念和新挑战。

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