Article

  • The EMBO Journal (2003) 22, 3930 - 3940
  • doi:10.1093/emboj/cdg368

  • Subject Category:

Efficient RNA 2'-O-methylation requires juxtaposed and symmetrically assembled archaeal box C/D and C'/D' RNPs

Elizabeth J. Tran1, Xinxin Zhang1 and E.Stuart Maxwell1

  1. Department of Molecular and Structural Biochemistry, North Carolina State University, Raleigh, NC 27695-7622, USA

Correspondence to:

E.Stuart Maxwell, E-mail: stu_maxwell@ncsu.edu

Received 27 January 2003; Accepted 2 June 2003; Revised 21 May 2003


Box C/D ribonucleoprotein (RNP) complexes direct the nucleotide-specific 2'-O-methylation of ribonucleotide sugars in target RNAs. In vitro assembly of an archaeal box C/D sRNP using recombinant core proteins L7, Nop56/58 and fibrillarin has yielded an RNA:protein enzyme that guides methylation from both the terminal box C/D core and internal C'/D' RNP complexes. Reconstitution of sRNP complexes containing only box C/D or C'/D' motifs has demonstrated that the terminal box C/D RNP is the minimal methylation-competent particle. However, efficient ribonucleotide 2'-O-methylation requires that both the box C/D and C'/D' RNPs function within the full-length sRNA molecule. In contrast to the eukaryotic snoRNP complex, where the core proteins are distributed asymmetrically on the box C/D and C'/D' motifs, all three archaeal core proteins bind both motifs symmetrically. This difference in core protein distribution is a result of altered RNA-binding capabilities of the archaeal and eukaryotic core protein homologs. Thus, evolution of the box C/D nucleotide modification complex has resulted in structurally distinct archaeal and eukaryotic RNP particles.

  • Keywords:

    • Archaea,
    • box C,
    • D RNP,
    • ribonucleotide methylation,
    • snoRNA,
    • sRNA