Abstract

Box C/D RNA-protein complexes (RNPs) guide the 2'-O-methylation of nucleotides in both archaeal and eukaryotic ribosomal RNAs. The archaeal box C/D and C'/D' RNP subcomplexes are each assembled with three sRNP core proteins. The archaeal Nop56/58 core protein mediates crucial protein-protein interactions required for both sRNP assembly and the methyltransferase reaction by bridging the L7Ae and fibrillarin core proteins. The interaction of Methanocaldococcus jannaschii (Mj) Nop56/58 with the methyltransferase fibrillarin has been investigated using site-directed mutagenesis of specific amino acids in the N-terminal domain of Nop56/58 that interacts with fibrillarin. Extensive mutagenesis revealed an unusually strong Nop56/58-fibrillarin interaction. Only deletion of the NTD itself prevented dimerization with fibrillarin. The extreme stability of the Nop56/58-fibrillarin heterodimer was confirmed in both chemical and thermal denaturation analyses. However, mutations that did not affect Nop56/58 binding to fibrillarin or sRNP assembly nevertheless disrupted sRNP-guided nucleotide modification, revealing a role for Nop56/58 in methyltransferase activity. This conclusion was supported with the cross-linking of Nop56/58 to the target RNA substrate. The Mj Nop56/58 NTD was further characterized by solving its three-dimensional crystal structure to a resolution of 1.7 Å. Despite low primary sequence conservation among the archaeal Nop56/58 homologs, the overall structure of the archaeal NTD domain is very well conserved. In conclusion, the archaeal Nop56/58 NTD exhibits a conserved domain structure whose exceptionally stable interaction with fibrillarin plays a role in both RNP assembly and methyltransferase activity.

Highlights

  • Box C/D RNA-protein complexes (RNPs) direct site-specific 2Ј-O-methylation of rRNA

  • Our observations reveal a novel role for the Nop56/58 core protein in box C/D RNP function

  • The archaeal Nop56/58 core protein mediates crucial protein-protein interactions required for both sRNP assembly and the methyltransferase reaction by bridging the L7Ae and fibrillarin core proteins

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Summary

Background

Box C/D RNPs direct site-specific 2Ј-O-methylation of rRNA. Results: The Nop56/58 and fibrillarin core proteins establish a very stable dimer with Nop56/58 contributing to methyltransferase activity. Mutations that did not affect Nop56/58 binding to fibrillarin or sRNP assembly disrupted sRNPguided nucleotide modification, revealing a role for Nop56/58 in methyltransferase activity This conclusion was supported with the cross-linking of Nop56/58 to the target RNA substrate. Two NTD mutations that did not affect RNP assembly greatly reduced or abolished methyltransferase activity, indicating the importance of Nop56/58 for the 2Ј-O-methylation reaction Supporting this functional contribution, Nop56/58 can be cross-linked to the target RNA. The structurally conserved Nop56/58 NTD interacts with fibrillarin to play a role in box C/D sRNP assembly and sRNP-guided nucleotide methylation

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