Department of Biological Science, Wayne State University, Detroit, MI 48202, USA.
Genome Sciences Core, Wayne State University, Detroit, MI 48202, USA.
Methods. 2023 Sep;217:18-26. doi: 10.1016/j.ymeth.2023.06.009. Epub 2023 Jun 24.
Global Run-On sequencing is a reliable and widely used approach for monitoring nascent transcription on a genomewide scale. The assay has been successfully used for studying global transcription in humans, plants, worms, flies, and fission yeast. Here we describe a GRO-seq protocol for studying transcription in budding yeast, Saccharomyces cerevisiae. Briefly, the technique involves permeabilization of actively growing yeast cells, allowing transcription to proceed in permeabilized cells in the presence of brominated UTP, affinity purification of bromo-UMP incorporated nascent transcripts followed by cDNA library construction, deep sequencing, and mapping against the reference genome. The approach maps the position of transcriptionally active RNA polymerase on a genomewide basis. In addition to identifying the complete set of transcriptionally active genes in a cell under a given set of conditions, the method can be used to determine elongation rate, termination defect and promoter directionality at the genomewide level. The approach is especially useful in identifying short-lived unstable transcripts that are rapidly degraded even before they leave the nucleus.
全基因组延伸测序是一种可靠且广泛应用的方法,可用于在全基因组范围内监测新生转录。该检测方法已成功用于研究人类、植物、蠕虫、苍蝇和裂殖酵母的全球转录。本文描述了用于研究芽殖酵母酿酒酵母转录的 GRO-seq 方案。简而言之,该技术包括活酵母细胞的透化处理,在溴化尿嘧啶核苷三磷酸存在下使透化细胞中的转录继续进行,然后进行溴代尿嘧啶核苷掺入的新生转录物的亲和纯化,随后构建 cDNA 文库、深度测序,并与参考基因组进行比对。该方法在全基因组范围内绘制了转录活性 RNA 聚合酶的位置。除了鉴定给定条件下细胞中所有转录活性基因外,该方法还可用于在全基因组水平上确定延伸率、终止缺陷和启动子方向性。该方法特别适用于鉴定短寿命不稳定的转录本,这些转录本甚至在离开细胞核之前就迅速降解。