Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, CT 06520, USA.
Proc Natl Acad Sci U S A. 2012 Sep 18;109(38):15235-40. doi: 10.1073/pnas.1213795109. Epub 2012 Sep 4.
The RtcB protein has recently been identified as a 3'-phosphate RNA ligase that directly joins an RNA strand ending with a 2',3'-cyclic phosphate to the 5'-hydroxyl group of another RNA strand in a GTP/Mn(2+)-dependent reaction. Here, we report two crystal structures of Pyrococcus horikoshii RNA-splicing ligase RtcB in complex with Mn(2+) alone (RtcB/ Mn(2+)) and together with a covalently bound GMP (RtcB-GMP/Mn(2+)). The RtcB/ Mn(2+) structure (at 1.6 Å resolution) shows two Mn(2+) ions at the active site, and an array of sulfate ions nearby that indicate the binding sites of the RNA phosphate backbone. The structure of the RtcB-GMP/Mn(2+) complex (at 2.3 Å resolution) reveals the detailed geometry of guanylylation of histidine 404. The critical roles of the key residues involved in the binding of the two Mn(2+) ions, the four sulfates, and GMP are validated in extensive mutagenesis and biochemical experiments, which also provide a thorough characterization for the three steps of the RtcB ligation pathway: (i) guanylylation of the enzyme, (ii) guanylyl-transfer to the RNA substrate, and (iii) overall ligation. These results demonstrate that the enzyme's substrate-induced GTP binding site and the putative reactive RNA ends are in the vicinity of the binuclear Mn(2+) active center, which provides detailed insight into how the enzyme-bound GMP is tansferred to the 3'-phosphate of the RNA substrate for activation and subsequent nucleophilic attack by the 5'-hydroxyl of the second RNA substrate, resulting in the ligated product and release of GMP.
RtcB 蛋白最近被鉴定为一种 3'-磷酸 RNA 连接酶,它能够在 GTP/Mn(2+)依赖性反应中,直接将带有 2',3'-环磷酸的 RNA 链连接到另一条 RNA 链的 5'-羟基上,该链的末端带有 2',3'-环磷酸。在这里,我们报道了 Pyrococcus horikoshii RNA 剪接连接酶 RtcB 与 Mn(2+)单独(RtcB/Mn(2+))以及与共价结合的 GMP(RtcB-GMP/Mn(2+))复合物的两个晶体结构。RtcB/Mn(2+)结构(分辨率为 1.6 Å)显示活性位点有两个 Mn(2+)离子,以及附近的一系列硫酸盐离子,表明 RNA 磷酸骨架的结合位点。RtcB-GMP/Mn(2+)复合物的结构(分辨率为 2.3 Å)揭示了组氨酸 404 胍基化的详细几何形状。涉及两个 Mn(2+)离子、四个硫酸盐和 GMP 结合的关键残基的广泛突变和生化实验验证了它们的关键作用,这些实验还为 RtcB 连接途径的三个步骤提供了全面的特征描述:(i)酶的胍基化,(ii)RNA 底物的胍基转移,和(iii)整体连接。这些结果表明,酶的底物诱导的 GTP 结合位点和假定的反应性 RNA 末端位于双核 Mn(2+)活性中心附近,这为酶结合的 GMP 如何转移到 RNA 底物的 3'-磷酸上以进行激活以及随后第二个 RNA 底物的 5'-羟基的亲核攻击提供了详细的见解,从而产生连接产物并释放 GMP。