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High-throughput single-molecule screen for small-molecule perturbation of splicing and transcription kinetics

机译:高通量单分子筛选技术,用于剪接和转录动力学的小分子干扰

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摘要

In eukaryotes, mRNA synthesis is catalyzed by RNA polymerase II and involves several distinct steps, including transcript initiation, elongation, cleavage, and transcript release. Splicing of RNA can occur during (co-transcriptional) or after (post-transcriptional) RNA synthesis. Thus, RNA synthesis and processing occurs through the concerted activity of dozens of enzymes, each of which is potentially susceptible to perturbation by small molecules. However, there are few, if any, high-throughput screening strategies for identifying drugs which perturb a specific step in RNA synthesis and processing. Here we have developed a high-throughput fluorescence microscopy approach in single cells to screen for inhibitors of specific enzymatic steps in RNA synthesis and processing. By utilizing the high affinity interaction between bacteriophage capsid proteins (MS2, PP7) and RNA stem loops, we are able to fluorescently label the intron and exon of a beta-globin reporter gene in human cells. This approach allows one to measure the kinetics of transcription, splicing and release in both fixed and living cells using a tractable, genetically encoded assay in a stable cell line. We tested this reagent in a targeted screen of molecules that target chromatin readers and writers and identified three compounds that slow transcription elongation without changing transcription initiation. Published by Elsevier Inc.
机译:在真核生物中,mRNA的合成被RNA聚合酶II催化,并涉及几个不同的步骤,包括转录物的起始,延伸,切割和转录物的释放。 RNA的剪接可以发生在(共转录)RNA合成过程中(转录后)或之后。因此,RNA的合成和加工是通过数十种酶的协同活性进行的,每种酶都可能易受小分子干扰。但是,很少有(如果有的话)用于识别干扰RNA合成和加工中特定步骤的药物的高通量筛选策略。在这里,我们已经开发出了一种在单细胞中高通量的荧光显微镜方法,以筛选RNA合成和加工中特定酶促步骤的抑制剂。通过利用噬菌体衣壳蛋白(MS2,PP7)和RNA茎环之间的高亲和力相互作用,我们能够荧光标记人类细胞中β-珠蛋白报道基因的内含子和外显子。这种方法允许在稳定细胞系中使用易处理的遗传编码测定法来测量固定细胞和活细胞中转录,剪接和释放的动力学。我们在针对染色质读取器和写入器的分子的靶向筛选中测试了该试剂,并鉴定了三种在不改变转录起始的情况下减慢转录延伸的化合物。由Elsevier Inc.发布

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