Swanson M S, Dreyfuss G
Department of Biochemistry, Molecular Biology and Cell Biology, Northwestern University, Evanston, IL 60208.
EMBO J. 1988 Nov;7(11):3519-29. doi: 10.1002/j.1460-2075.1988.tb03228.x.
The binding of hnRNP proteins to pre-mRNAs in nuclear extracts, and as isolated proteins, was studied by using monoclonal antibody immunopurification of hnRNP proteins bound to RNase T1-generated fragments. Several major hnRNP proteins, A1, C and D, bind specifically to the 3' end of introns within a region containing the conserved polypyrimidine stretch between the branch site and the 3' splice site. Mutations which alter the conserved 3' splice site dinucleotide AG strongly impair or abolish the binding of the A1 protein as well as of an anti-Sm reactive component(s) to this region. The A1, C and D proteins do not bind efficiently to fragments of either bacterial RNA or the intronless spliced product (mRNA). The binding of these proteins at the 3' end of the intron does not require addition to the extract of exogenous ATP, but remains after ATP addition. These findings demonstrate that several hnRNP proteins have RNA binding specificities on pre-mRNA, and suggest a model for hnRNP particle structure and assembly.
通过使用单克隆抗体免疫纯化与核糖核酸酶T1产生的片段结合的不均一核糖核蛋白(hnRNP),研究了hnRNP蛋白在核提取物中以及作为分离蛋白与前体信使核糖核酸(pre-mRNA)的结合情况。几种主要的hnRNP蛋白,即A1、C和D,在包含分支位点和3'剪接位点之间保守多嘧啶序列的区域内,特异性地结合到内含子的3'末端。改变保守的3'剪接位点二核苷酸AG的突变会强烈损害或消除A1蛋白以及一种抗Sm反应性成分与该区域的结合。A1、C和D蛋白不能有效地结合到细菌RNA片段或无内含子的剪接产物(信使核糖核酸,mRNA)上。这些蛋白在内含子3'末端的结合不需要向提取物中添加外源三磷酸腺苷(ATP),但在添加ATP后仍然存在。这些发现表明几种hnRNP蛋白在前体信使核糖核酸上具有RNA结合特异性,并提出了一个hnRNP颗粒结构和组装的模型。