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在哺乳动物剪接体组装过程中,U2 snRNA的5'端结构域是建立U2 snRNP与U2辅助因子相互作用所必需的。

The 5' end domain of U2 snRNA is required to establish the interaction of U2 snRNP with U2 auxiliary factor(s) during mammalian spliceosome assembly.

作者信息

Khellil S, Daugeron M C, Alibert C, Jeanteur P, Cathala G, Brunel C

机构信息

UA CNRS 1191 'Génétique Moléculaire', Laboratoire de Biochimie, CRLC Val d'Aurelle-Paul Lamarque, Montpellier, France.

出版信息

Nucleic Acids Res. 1991 Feb 25;19(4):877-84. doi: 10.1093/nar/19.4.877.

Abstract

Stable association of U2 snRNP with the branchpoint sequence of mammalian pre-mRNAs requires binding of a non-snRNP protein to the polypyrimidine tract. In order to determine how U2 snRNP contacts this protein, we have used an RNA containing the consensus 5' and the (Py)n-AG 3' splice sites but lacking the branchpoint sequence so as to prevent direct U2 snRNA base pairing to the branchpoint. Different approaches including electrophoretic separation of RNP complexes formed in nuclear extracts, RNase T1 protection immunoprecipitation assays with antibodies against snRNPs and UV cross-linking experiments coupled to immunoprecipitations allowed us to demonstrate that at least three splicing factors contact this RNA at 0 degree C without ATP. As expected, U1 snRNP interacts with the region comprising the 5' splice site. A protein of approximately 65,000 molecular weight recognizes the RNA specifically at the 5' boundary of the polypyrimidine tract. It could be either the U2 auxiliary factor (U2AF) (Zamore and Green (1989) PNAS 86, 9243-9247), the polypyrimidine tract binding protein (pPTB) (Garcia-Blanco et al. (1989) Genes and Dev. 3, 1874-1886) or a mixture of both. U2 snRNP also contacts the RNA in a way depending on p65 binding, thereby further arguing that the latter may correspond to the previously characterized U2AF and pPTB. Cleavage of U2 snRNA sequence by a complementary oligonucleotide and RNase H led us to conclude that the 5' terminus of U2 snRNA is required to ensure the contact between U2 snRNP and p65 bound to the RNA. More importantly, this conclusion can be extended to authentic pre-mRNAs. When we have used a human beta-globin pre-mRNA instead of the above artificial substrate, RNA bound p65 became precipitable by anti-(U2) RNP and anti-Sm antibodies except when the 5' end of U2 snRNA was selectively cleaved.

摘要

U2 snRNP与哺乳动物前体mRNA的分支点序列稳定结合需要一种非snRNP蛋白与多嘧啶序列结合。为了确定U2 snRNP如何与这种蛋白接触,我们使用了一种RNA,它含有共有5'端和(Py)n-AG 3'剪接位点,但缺少分支点序列,以防止U2 snRNA与分支点直接碱基配对。不同的方法,包括对核提取物中形成的RNP复合物进行电泳分离、用针对snRNP的抗体进行RNase T1保护免疫沉淀测定以及与免疫沉淀相结合的紫外线交联实验,使我们能够证明至少有三种剪接因子在0℃且无ATP的条件下与该RNA接触。正如预期的那样,U1 snRNP与包含5'剪接位点的区域相互作用。一种分子量约为65,000的蛋白在多嘧啶序列的5'边界特异性识别该RNA。它可能是U2辅助因子(U2AF)(扎莫尔和格林(1989年)《美国国家科学院院刊》86,9243 - 9247)、多嘧啶序列结合蛋白(pPTB)(加西亚 - 布兰科等人(1989年)《基因与发育》3,1874 - 1886)或两者的混合物。U2 snRNP也以一种依赖于p65结合的方式与RNA接触,从而进一步表明后者可能对应于先前鉴定的U2AF和pPTB。用互补寡核苷酸和RNase H切割U2 snRNA序列使我们得出结论,U2 snRNA的5'末端是确保U2 snRNP与结合在RNA上的p65接触所必需的。更重要的是,这一结论可以扩展到真实的前体mRNA。当我们使用人β - 珠蛋白前体mRNA代替上述人工底物时,除了U2 snRNA的5'末端被选择性切割外,与RNA结合的p65可被抗 - (U2) RNP和抗 - Sm抗体沉淀。

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