Institute of Microbiology and Immunology, National Yang-Ming University, Taipei, Taiwan 112, Republic of China.
RNA. 2011 Jan;17(1):145-54. doi: 10.1261/rna.2459611. Epub 2010 Nov 22.
The assembly of the spliceosome involves dynamic rearrangements of interactions between snRNAs, protein components, and the pre-mRNA substrate. DExD/H-box ATPases are required to mediate structural changes of the spliceosome, utilizing the energy of ATP hydrolysis. Two DExD/H-box ATPases are required for the catalytic steps of the splicing pathway, Prp2 for the first step and Prp16 for the second step, both belonging to the DEAH subgroup of the protein family. The detailed mechanism of their action was not well understood until recently, when Prp2 was shown to be required for the release of U2 components SF3a and SF3b, presumably to allow the binding of Cwc25 to promote the first transesterification reaction. We show here that Cwc25 and Yju2 are released after the reaction in Prp16- and ATP-dependent manners, possibly to allow for the binding of Prp22, Prp18, and Slu7 to promote the second catalytic reaction. The binding of Cwc25 to the spliceosome is destabilized by mutations at the branchpoint sequence, suggesting that Cwc25 may bind to the branch site. We also show that Prp16 has an ATP-independent role in the first catalytic step, in addition to its known role in the second step. In the absence of ATP, Prp16 stabilizes the binding of Cwc25 to the spliceosome formed with branchpoint mutated pre-mRNAs to facilitate their splicing. Our results uncovered novel functions of Prp16 in both catalytic steps, and provide mechanistic insights into splicing catalysis.
剪接体的组装涉及到 snRNA、蛋白质成分和前体 mRNA 底物之间相互作用的动态重排。DExD/H 盒 ATP 酶需要介导剪接体的结构变化,利用 ATP 水解的能量。两种 DExD/H 盒 ATP 酶是剪接途径催化步骤所必需的,Prp2 用于第一步,Prp16 用于第二步,两者都属于 DEAH 蛋白家族的亚组。直到最近,当 Prp2 被证明需要释放 U2 成分 SF3a 和 SF3b 以允许 Cwc25 结合来促进第一次转酯反应时,人们才对其作用的详细机制有了较好的理解。我们在这里表明,Cwc25 和 Yju2 在 Prp16 和 ATP 依赖性方式下在反应后被释放,可能允许 Prp22、Prp18 和 Slu7 结合以促进第二次催化反应。Cwc25 与剪接体的结合通过分支点序列的突变而不稳定,这表明 Cwc25 可能结合到分支位点。我们还表明,Prp16 在第一步除了其在第二步中的已知作用外,还具有 ATP 非依赖性作用。在没有 ATP 的情况下,Prp16 稳定 Cwc25 与带有分支点突变前体 mRNA 形成的剪接体的结合,以促进其剪接。我们的结果揭示了 Prp16 在两个催化步骤中的新功能,并为剪接催化提供了机制上的见解。