Cheng Bo, Price David H
Molecular and Cellular Biology Program, University of Iowa, Iowa City, IA 52242, USA.
Methods. 2009 Aug;48(4):346-52. doi: 10.1016/j.ymeth.2009.02.026. Epub 2009 May 4.
The elongation phase of transcription by RNA polymerase II (RNAP II) is tightly controlled by a large number of transcription elongation factors. Here we describe experimental approaches for the isolation of RNAPII elongation complexes in vitro and the use of these complexes in the examination of the function of a variety of factors. The methods start with formation of elongation complexes on DNA templates immobilized to paramagnetic beads. Elongation is halted by removing the nucleotides and the ternary elongation complexes are then stripped of factors by a high salt wash. The effect of any factor or mixture of factors on elongation is determined by adding the factor(s) along with nucleotides and observing the change in the pattern of RNAs generated. Association of a factor with elongation complexes can be examined using an elongation complex-electrophoretic mobility shift assay (EC-EMSA) in which elongation complexes that have been liberated from the beads are analyzed on a native gel. Besides being used to dissect the mechanisms of elongation control, these experimental systems are useful for analyzing the function of termination factors and mRNA processing factors. Together these experimental systems permit detailed characterization of the molecular mechanisms of elongation, termination, and mRNA processing factors by providing information concerning both physical interactions with and functional consequences of the factors on RNAPII elongation complexes.
RNA聚合酶II(RNAP II)转录的延伸阶段受到大量转录延伸因子的严格控制。在这里,我们描述了体外分离RNAPII延伸复合物的实验方法,以及使用这些复合物来研究各种因子功能的方法。这些方法首先在固定于顺磁珠的DNA模板上形成延伸复合物。通过去除核苷酸来终止延伸,然后用高盐洗涤去除三元延伸复合物中的因子。通过将因子与核苷酸一起加入并观察所产生RNA模式的变化,来确定任何一种因子或因子混合物对延伸的影响。可以使用延伸复合物-电泳迁移率变动分析(EC-EMSA)来检测因子与延伸复合物的结合,其中从珠子上释放的延伸复合物在天然凝胶上进行分析。除了用于剖析延伸控制的机制外,这些实验系统还可用于分析终止因子和mRNA加工因子的功能。通过提供有关因子与RNAPII延伸复合物的物理相互作用以及功能后果的信息,这些实验系统共同允许对延伸、终止和mRNA加工因子的分子机制进行详细表征。