Department of Chemistry and Biochemistry, and the Molecular Biology Institute, PO Box 951569,University of California, Los Angeles, CA 90095-1569, USA.
J Mol Biol. 2011 Sep 2;411(5):927-42. doi: 10.1016/j.jmb.2011.06.022. Epub 2011 Jun 25.
H/ACA small nucleolar and Cajal body ribonucleoproteins (RNPs) function in site-specific pseudouridylation of eukaryotic rRNA and snRNA, rRNA processing, and vertebrate telomerase biogenesis. Nhp2, one of four essential protein components of eukaryotic H/ACA RNPs, forms a core trimer with the pseudouridylase Cbf5 and Nop10 that binds to H/ACA RNAs specifically. Crystal structures of archaeal H/ACA RNPs have revealed how the protein components interact with each other and with the H/ACA RNA. However, in place of Nhp2p, archaeal H/ACA RNPs contain L7Ae, which binds specifically to an RNA K-loop motif absent from eukaryotic H/ACA RNPs, while Nhp2 binds a broader range of RNA structures. We report solution NMR studies of Saccharomyces cerevisiae Nhp2 (Nhp2p), which reveal that Nhp2p exhibits two major conformations in solution due to cis/trans isomerization of the evolutionarily conserved Pro83. The equivalent proline is in the cis conformation in all reported structures of L7Ae and other homologous proteins. Nhp2p has the expected α-β-α fold, but the solution structures of the major conformation of Nhp2p with trans Pro83 and of Nhp2p-S82W with cis Pro83 reveal that Pro83 cis/trans isomerization affects the positions of numerous residues at the Nop10 and RNA binding interface. An S82W substitution, which stabilizes the cis conformation, also stabilizes the association of Nhp2p with H/ACA snoRNPs expressed in vivo. We propose that Pro83 plays a key role in the assembly of the eukaryotic H/ACA RNP, with the cis conformation locking in a stable Cbf5-Nop10-Nhp2 ternary complex and positioning the protein backbone to interact with the H/ACA RNA.
H/ACA 小核仁 RNA 和 Cajal 体核糖核蛋白(RNP)在真核 rRNA 和 snRNA 的特异性假尿嘧啶化、rRNA 加工和脊椎动物端粒酶生物发生中发挥作用。Nhp2 是真核 H/ACA RNP 的四个必需蛋白成分之一,与假尿嘧啶酶 Cbf5 和 Nop10 形成核心三聚体,特异性结合 H/ACA RNA。古菌 H/ACA RNP 的晶体结构揭示了蛋白成分之间以及与 H/ACA RNA 的相互作用方式。然而,在古菌 H/ACA RNP 中取代 Nhp2p 的是 L7Ae,它特异性结合真核 H/ACA RNP 中不存在的 RNA K-环基序,而 Nhp2p 则结合更广泛的 RNA 结构。我们报告了酿酒酵母 Nhp2(Nhp2p)的溶液 NMR 研究,结果表明,由于进化上保守的 Pro83 的顺/反异构化,Nhp2p 在溶液中呈现两种主要构象。在所有报道的 L7Ae 和其他同源蛋白的结构中,等效脯氨酸均处于顺式构象。Nhp2p 具有预期的 α-β-α 折叠,但主要构象的顺式 Pro83 和反式 Pro83 的 Nhp2p 以及顺式 Pro83 的 Nhp2p-S82W 的溶液结构表明,Pro83 顺/反异构化会影响 Nop10 和 RNA 结合界面上许多残基的位置。稳定顺式构象的 S82W 取代也稳定了体内表达的 Nhp2p 与 H/ACA snoRNP 的结合。我们提出,Pro83 在真核 H/ACA RNP 的组装中起着关键作用,顺式构象锁定稳定的 Cbf5-Nop10-Nhp2 三元复合物,并将蛋白骨架定位以与 H/ACA RNA 相互作用。