Reed R, Chiara M D
Department of Cell Biology, Harvard Medical School, Boston, Massachusetts 02115, USA.
Methods. 1999 May;18(1):3-12. doi: 10.1006/meth.1999.0751.
A variety of cellular processes are carried out by highly complex ribonucleoprotein (RNP) particles in which multiple RNA-RNA, RNA-protein, and protein-protein interactions occur. The spliceosome, which executes the nuclear pre-mRNA splicing reaction, is a particularly striking example of a complex RNP, containing a minimum of 50 distinct protein components as well as five small nuclear RNAs. In order to identify which among the numerous proteins may play critical roles in the splicing reaction, we have assembled spliceosomal complexes on pre-mRNA containing a single 32P-labeled nucleotide, isolated the complexes by gel filtration, and then carried out UV crosslinking. The combination of these three methods has allowed the identification of proteins that crosslink to critical sequence elements during each stage in spliceosome assembly. These methods should be generally applicable to the analysis of RNP complexes assembled in vitro.
多种细胞过程由高度复杂的核糖核蛋白(RNP)颗粒执行,其中会发生多种RNA-RNA、RNA-蛋白质和蛋白质-蛋白质相互作用。执行核前体mRNA剪接反应的剪接体是复杂RNP的一个特别显著的例子,它至少包含50种不同的蛋白质成分以及五种小核RNA。为了确定众多蛋白质中哪些可能在剪接反应中起关键作用,我们在含有单个32P标记核苷酸的前体mRNA上组装剪接体复合物,通过凝胶过滤分离复合物,然后进行紫外线交联。这三种方法的结合使得能够鉴定在剪接体组装的每个阶段与关键序列元件交联的蛋白质。这些方法通常应适用于体外组装的RNP复合物的分析。