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小核核糖核蛋白(RNP)U2包含许多其他蛋白质,并且在剪接条件下具有双组分核糖核蛋白结构。

Small nuclear ribonucleoprotein (RNP) U2 contains numerous additional proteins and has a bipartite RNP structure under splicing conditions.

作者信息

Behrens S E, Tyc K, Kastner B, Reichelt J, Lührmann R

机构信息

Institut für Molekularbiologie und Tumorforschung, Philipps-Universität Marburg, Germany.

出版信息

Mol Cell Biol. 1993 Jan;13(1):307-19. doi: 10.1128/mcb.13.1.307-319.1993.

Abstract

Small nuclear (sn) ribonucleoprotein (RNP) U2 functions in the splicing of mRNA by recognizing the branch site of the unspliced pre-mRNA. When HeLa nuclear splicing extracts are centrifuged on glycerol gradients, U2 snRNPs sediment at either 12S (under high salt concentration conditions) or 17S (under low salt concentration conditions). We isolated the 17S U2 snRNPs from splicing extracts under nondenaturing conditions by using centrifugation and immunoaffinity chromatography and examined their structure by electron microscope. In addition to common proteins B', B, D1, D2, D3, E, F, and G and U2-specific proteins A' and B", which are present in the 12S U2 snRNP, at least nine previously unidentified proteins with apparent molecular masses of 35, 53, 60, 66, 92, 110, 120, 150, and 160 kDa bound to the 17S U2 snRNP. The latter proteins dissociate from the U2 snRNP at salt concentrations above 200 mM, yielding the 12S U2 snRNP particle. Under the electron microscope, the 17S U2 snRNPs exhibited a bipartite appearance, with two main globular domains connected by a short filamentous structure that is sensitive to RNase. These findings suggest that the additional globular domain, which is absent from 12S U2 snRNPs, contains some of the 17S U2-specific proteins. The 5' end of the RNA in the U2 snRNP is more exposed for reaction with RNase H and with chemical probes when the U2 snRNP is in the 17S form than when it is in the 12S form. Removal of the 5' end of this RNA reduces the snRNP's Svedberg value from 17S to 12S. Along with the peculiar morphology of the 17S snRNP, these data indicate that most of the 17S U2-specific proteins are bound to the 5' half of the U2 snRNA.

摘要

小核(sn)核糖核蛋白(RNP)U2通过识别未剪接前体mRNA的分支位点参与mRNA的剪接过程。当将HeLa细胞核剪接提取物在甘油梯度上进行离心时,U2 snRNP在高盐浓度条件下以12S沉降,而在低盐浓度条件下以17S沉降。我们通过离心和免疫亲和层析在非变性条件下从剪接提取物中分离出17S U2 snRNP,并用电镜检查其结构。除了存在于12S U2 snRNP中的常见蛋白质B'、B、D1、D2、D3、E、F和G以及U2特异性蛋白质A'和B"外,至少还有9种先前未鉴定的蛋白质与17S U2 snRNP结合,其表观分子量分别为35、53、60、66、92、110、120、150和160 kDa。当盐浓度高于200 mM时,后一组蛋白质会从U2 snRNP上解离,产生12S U2 snRNP颗粒。在电子显微镜下,17S U2 snRNP呈现出二分体外观,有两个主要的球状结构域通过对核糖核酸酶敏感的短丝状结构相连。这些发现表明,12S U2 snRNP中不存在的额外球状结构域包含一些17S U2特异性蛋白质。当U2 snRNP处于17S形式时,其RNA的5'端比处于12S形式时更易与核糖核酸酶H和化学探针发生反应。去除该RNA的5'端会使snRNP的沉降系数值从17S降至12S。连同17S snRNP的特殊形态,这些数据表明大多数17S U2特异性蛋白质与U2 snRNA的5'半段结合。

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