Tarn W Y, Steitz J A
Department of Molecular Biophysics and Biochemistry, Howard Hughes Medical Institute, Yale University School of Medicine, New Haven, CT 06536-0812, USA.
Proc Natl Acad Sci U S A. 1995 Mar 28;92(7):2504-8. doi: 10.1073/pnas.92.7.2504.
Ser/Arg-rich proteins (SR proteins) are essential splicing factors that commit pre-messenger RNAs to splicing and also modulate 5' splice site choice in the presence or absence of functional U1 small nuclear ribonucleoproteins (snRNPs). Here, we perturbed the U1 snRNP in HeLa cell nuclear extract by detaching the U1-specific A protein using a 2'-O-methyl oligonucleotide (L2) complementary to its binding site in U1 RNA. In this extract, the standard adenovirus substrate is spliced normally, but excess amounts of SR proteins do not exclusively switch splicing from the normal 5' splice site to a proximal site (site 125 within the adenovirus intron), suggesting that modulation of 5' splice site choice exerted by SR proteins requires integrity of the U1 snRNP. The observation that splicing does not necessarily follow U1 binding indicates that interactions between the U1 snRNP and components assembled on the 3' splice site via SR proteins may also be critical for 5' splice site selection. Accordingly, we found that SR proteins promote the binding of the U2 snRNP to the branch site and stabilize the complex formed on a 3'-half substrate in the presence or absence of functional U1 snRNPs. A novel U2/U6/3'-half substrate crosslink was also detected and promoted by SR proteins. Our results suggest that SR proteins in collaboration with the U1 snRNP function in two distinct steps to modulate 5' splice site selection.
富含丝氨酸/精氨酸的蛋白质(SR蛋白)是重要的剪接因子,可促使前体信使RNA进行剪接,并且在有或没有功能性U1小核核糖核蛋白(snRNP)的情况下调节5'剪接位点的选择。在此,我们通过使用与其在U1 RNA中的结合位点互补的2'-O-甲基寡核苷酸(L2)分离U1特异性A蛋白,来干扰HeLa细胞核提取物中的U1 snRNP。在这种提取物中,标准腺病毒底物正常剪接,但过量的SR蛋白并不会专门将剪接从正常的5'剪接位点切换到近端位点(腺病毒内含子内的125位点),这表明SR蛋白对5'剪接位点选择的调节需要U1 snRNP的完整性。剪接不一定遵循U1结合这一观察结果表明,U1 snRNP与通过SR蛋白在3'剪接位点组装的成分之间的相互作用对于5'剪接位点的选择也可能至关重要。因此,我们发现SR蛋白促进U2 snRNP与分支位点的结合,并在有或没有功能性U1 snRNP的情况下稳定在3'半底物上形成的复合物。还检测到一种新型的U2/U6/3'半底物交联,并且它由SR蛋白促进。我们的结果表明,SR蛋白与U1 snRNP协同作用,在两个不同步骤中调节5'剪接位点的选择。