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U-1核糖核蛋白颗粒中U-1 RNA经T1核糖核酸酶进行的位点特异性切割。

Site-specific cleavage by T1 RNase of U-1 RNA in u-1 ribonucleoprotein particles.

作者信息

Epstein P, Reddy R, Busch H

出版信息

Proc Natl Acad Sci U S A. 1981 Mar;78(3):1562-6. doi: 10.1073/pnas.78.3.1562.

Abstract

The structures and functions of small nuclear ribonucleoprotein particles have become of interest because of their suggested role in processing heterogeneous nuclear RNA [Lerner, M. R., Boyle, J. A., Mount, S. M., Wolin S. L. & Steitz, J. A. (1980) Nature (London) 283, 220-224]. To determine the conformation of U-1 RNA in U-1 ribonucleoprotein particles and whether proteins of these particles protect segments of U-1 RNA, intact particles and isolated U-1 RNA were digested with T1 RNase. The digested particles were immunoprecipitated with anti-Sm antibodies. A 5'-end fragment containing nucleotides 1-107 and 3'-end fragments containing nucleotides 108-165 and 108-153 were recovered in nearly quantitative yield from digestion of the particles, suggesting that position 107 is the principal cleavage site in them. At the same T1 RNase concentrations, deproteinized U-1 RNA was cleaved into many fragments. At low T1 RNase concentrations, major cleavage site of deproteinized U-1 RNA was at nucleotide 69. Comparison of the cleavage sites of free U-1 RNA and of U-1 RNA in U-1 ribonucleoprotein particles suggested similar secondary structures. The resistance of the 5' end of U-1 RNA to T1 RNase was unexpected inasmuch as this region has been implicated in hydrogen bonding with heterogeneous nuclear RNA splice junctions.

摘要

小核核糖核蛋白颗粒的结构和功能已引起人们的关注,因为它们在异质核RNA加工中可能发挥作用[勒纳,M.R.,博伊尔,J.A.,芒特,S.M.,沃林,S.L.和施泰茨,J.A.(1980年)《自然》(伦敦)283,220 - 224]。为了确定U1核糖核蛋白颗粒中U1 RNA的构象以及这些颗粒中的蛋白质是否保护U1 RNA的片段,完整颗粒和分离的U1 RNA用T1核糖核酸酶进行消化。消化后的颗粒用抗Sm抗体进行免疫沉淀。从颗粒消化物中几乎以定量产率回收了包含核苷酸1 - 107的5'端片段以及包含核苷酸108 - 165和108 - 153的3'端片段,这表明位置107是它们中的主要切割位点。在相同的T1核糖核酸酶浓度下,脱蛋白的U1 RNA被切割成许多片段。在低T1核糖核酸酶浓度下,脱蛋白的U1 RNA的主要切割位点在核苷酸69处。游离U1 RNA和U-1核糖核蛋白颗粒中U1 RNA的切割位点比较表明它们具有相似的二级结构。U1 RNA的5'端对T1核糖核酸酶具有抗性这一点出乎意料,因为该区域与异质核RNA剪接连接的氢键形成有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ae3/319171/19e73e61743f/pnas00654-0277-a.jpg

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