Chiara M D, Gozani O, Bennett M, Champion-Arnaud P, Palandjian L, Reed R
Department of Cell Biology, Harvard Medical School, Boston, Massachusetts 02115, USA.
Mol Cell Biol. 1996 Jul;16(7):3317-26. doi: 10.1128/MCB.16.7.3317.
We have carried out a systematic analysis of the proteins that interact with specific intron and exon sequences during each stage of mammalian spliceosome assembly. This was achieved by site-specifically labeling individual nucleotides within the 5' and 3' splice sites, the branchpoint sequence (BPS), or the exons with 32P and identifying UV-cross-linked proteins in the E, A, B, or C spliceosomal complex. Significantly, two members of the SR family of splicing factors, which are known to promote E-complex assembly, cross-link within exon sequences to a region approximately 25 nucleotides upstream from the 5' splice site. At the 5' splice site, cross-linking of the U5 small nuclear ribonucleoprotein particle protein, U5(200), was detected in both the B and C complexes. As observed in yeast cells, U5(200), also cross-links to intron/exon sequences at the 3' splice site in the C complex and may play a role in aligning the 5' and 3' exons for ligation. With label at the branch site, we detected three distinct proteins, designated BPS72,BpS70, and BPS56, which replace one another in the E, A, and C complexes. Another dynamic exchange was detected with pre-mRNA labeled at the AG dinucleotide of the 3' splice site. In this case, a protein, AG100,cross-links in the A complex and is replaced by another protein, AG75, in the C complex. The observation that these proteins are specifically associated with critical pre-mRNA sequence elements in functional complexes at different stages of spliceosome assembly implicates roles for these factors in key recognition events during the splicing pathway.
我们对哺乳动物剪接体组装各阶段中与特定内含子和外显子序列相互作用的蛋白质进行了系统分析。这是通过用³²P对5'和3'剪接位点、分支点序列(BPS)或外显子内的单个核苷酸进行位点特异性标记,并鉴定E、A、B或C剪接体复合物中的紫外线交联蛋白来实现的。值得注意的是,已知促进E复合物组装的剪接因子SR家族的两个成员在外显子序列内交联到5'剪接位点上游约25个核苷酸的区域。在5'剪接位点,在B和C复合物中均检测到U5小核核糖核蛋白颗粒蛋白U5(200)的交联。正如在酵母细胞中观察到的那样,U5(200)在C复合物中也与3'剪接位点的内含子/外显子序列交联,并且可能在使5'和3'外显子对齐以进行连接中发挥作用。用分支位点处的标记,我们检测到三种不同的蛋白质,分别命名为BPS72、BpS70和BPS56,它们在E、A和C复合物中相互取代。在3'剪接位点的AG二核苷酸处标记的前体mRNA检测到另一种动态交换。在这种情况下,一种蛋白质AG100在A复合物中交联,并在C复合物中被另一种蛋白质AG75取代。这些蛋白质在剪接体组装的不同阶段与功能复合物中的关键前体mRNA序列元件特异性相关的观察结果表明这些因子在剪接途径中的关键识别事件中发挥作用。