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在完整的小核核糖核蛋白颗粒(snRNPs)中,小核RNA(snRNAs)的5'-末端帽可与2,2,7-三甲基鸟苷特异性抗体发生反应。

5'-terminal caps of snRNAs are accessible for reaction with 2,2,7-trimethylguanosine-specific antibody in intact snRNPs.

作者信息

Bringmann P, Reuter R, Rinke J, Appel B, Bald R, Lührmann R

出版信息

J Biol Chem. 1983 Mar 10;258(5):2745-7.

PMID:6186660
Abstract

Immune precipitation assays with antibodies specific for 2,2,7-trimethylguanosine (m2,2,7(3)G) have been used to study the accessibility of the 5'-terminal m2,2,7(3)G-containing caps of eucaryotic small nuclear RNAs (snRNAs) either as naked RNAs or in intact small nuclear ribonucleoprotein (snRNPs). The antibody selectively precipitates snRNA species U1a, U1b, U2, U4, and U5 from total deproteinized RNA isolated from Ehrlich ascites cells. Binding by the antibody occurs via the m2,2,7(3)G moiety of the snRNAs' caps, since complex formation with the antibody can be completely abolished by excess nucleoside m2,2,7(3)G. The specificity of the antibody is further demonstrated by the complete absence of reaction with deproteinized snRNA species U6, the 5' terminus of which does not contain m2,2,7(3)G. Most importantly, the cap structures of the snRNAs U1a, U1b, U2, U4, and U5 are also accessible for anti-m2,2,7(3)G IgGs when intact snRNPs are reacted with the antibody. In this case, snRNP species U6 is coprecipitated, suggesting that there are intermolecular interactions between this and other snRNPs. Our data demonstrate that the 5'-terminal regions of the above snRNAs are not protected by the snRNP proteins. This finding is of special interest for snRNP species U1, and is discussed in terms of a model which proposes that the 5'-terminal region of U1 participates in the proper alignment of splice junctions in eucaryotic pre-mRNAs (Lerner, M. R., Boyle, J.A., Mount, S.M., Wolin, S.L., and Steitz, J. A. (1980) Nature (Lond.) 283, 220-224).

摘要

用对2,2,7 - 三甲基鸟苷(m2,2,7(3)G)具有特异性的抗体进行免疫沉淀分析,已被用于研究真核小核RNA(snRNAs)5'-末端含m2,2,7(3)G的帽结构,这些snRNAs既可以是裸露的RNA,也可以存在于完整的小核核糖核蛋白(snRNPs)中。该抗体能从艾氏腹水细胞中分离得到的总脱蛋白RNA中选择性沉淀出snRNA种类U1a、U1b、U2、U4和U5。抗体的结合是通过snRNAs帽结构的m2,2,7(3)G部分实现的,因为与抗体形成的复合物可被过量的核苷m2,2,7(3)G完全消除。抗体的特异性还通过与脱蛋白的snRNA种类U6完全不发生反应得到进一步证明,U6的5'末端不含m2,2,7(3)G。最重要的是,当完整的snRNPs与抗体反应时,snRNAs U1a、U1b、U2、U4和U5的帽结构也能与抗m2,2,7(3)G IgG结合。在这种情况下,snRNP种类U6会被共沉淀,这表明它与其他snRNPs之间存在分子间相互作用。我们的数据表明,上述snRNAs的5'-末端区域不受snRNP蛋白的保护。这一发现对于snRNP种类U1特别有意义,并根据一个模型进行了讨论,该模型提出U1的5'-末端区域参与真核前体mRNA中剪接位点的正确排列(Lerner, M. R., Boyle, J.A., Mount, S.M., Wolin, S.L., and Steitz, J. A. (1980) Nature (Lond.) 283, 220 - 224)。

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