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What have single-molecule studies taught us about gene expression?

机译:单分子研究对基因表达有什么启示?

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摘要

The production of a single mRNA is the result of many sequential steps, from docking of transcription factors to polymerase initiation, elongation, splicing, and, finally, termination. Much of our knowledge about the fundamentals of RNA synthesis and processing come from ensemble in vitro biochemical measurements. Single-molecule approaches are very much in this same reductionist tradition but offer exquisite sensitivity in space and time along with the ability to observe heterogeneous behavior and actually manipulate macromolecules. These techniques can also be applied in vivo, allowing one to address questions in living cells that were previously restricted to reconstituted systems. In this review, we examine the unique insights that single-molecule techniques have yielded on the mechanisms of gene expression.
机译:单个mRNA的产生是许多连续步骤的结果,从转录因子的对接到聚合酶的起始,延伸,剪接,最后是终止。我们对RNA合成和加工基础知识的大部分知识来自整体体外生化测量。单分子方法在相同的还原论传统中非常多,但是在空间和时间上具有出色的敏感性,并具有观察异质行为并实际操纵大分子的能力。这些技术也可以在体内应用,从而使人们能够解决以前仅限于重组系统的活细胞中的问题。在这篇综述中,我们研究了单分子技术对基因表达机制产生的独特见解。

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