Department of Biological Sciences, Columbia University, New York, NY, United States.
Integrative Program for Biological and Genome Sciences, University of North Carolina at Chapel Hill, Chapel Hill, NC, United States.
Methods Enzymol. 2021;655:291-324. doi: 10.1016/bs.mie.2021.03.021. Epub 2021 May 3.
In animal cells, replication-dependent histone pre-mRNAs are processed at the 3'-end by an endonucleolytic cleavage carried out by the U7 snRNP, a machinery that contains the U7 snRNA and many protein subunits. Studies on the composition of this machinery and understanding of its role in 3'-end processing were greatly facilitated by the development of an in vitro system utilizing nuclear extracts from mammalian cells 35 years ago and later from Drosophila cells. Most recently, recombinant expression and purification of the components of the machinery have enabled the full reconstitution of an active machinery and its complex with a model pre-mRNA substrate, using 13 proteins and 2 RNAs, and the determination of the structure of this active machinery. This chapter presents protocols for preparing nuclear extracts containing endogenous processing machinery, for assembling semi-recombinant and fully reconstituted machineries, and for histone pre-mRNA 3'-end processing assays with these samples.
在动物细胞中,复制依赖性组蛋白前体 mRNA 通过由 U7 snRNP 进行的核内切割进行 3'-末端加工,该机制包含 U7 snRNA 和许多蛋白质亚基。该机制的组成研究及其在 3'-末端加工中的作用的理解得益于 35 年前从哺乳动物细胞和后来从果蝇细胞中开发的体外系统。最近,该机制的组成部分的重组表达和纯化使使用 13 种蛋白质和 2 种 RNA 对活性机制及其与模型前体 mRNA 底物的复合物进行全面重建成为可能,并确定了该活性机制的结构。本章提供了制备含有内源性加工机制的核提取物、组装半重组和完全重建的机制以及使用这些样品进行组蛋白前体 mRNA 3'-末端加工测定的方案。