Formation of the conserved pseudouridine at position 55 in archaeal tRNA
Open Access
- 18 August 2006
- journal article
- Published by Oxford University Press (OUP) in Nucleic Acids Research
- Vol. 34 (15) , 4293-4301
- https://doi.org/10.1093/nar/gkl530
Abstract
Pseudouridine (Psi) located at position 55 in tRNA is a nearly universally conserved RNA modification found in all three domains of life. This modification is catalyzed by TruB in bacteria and by Pus4 in eukaryotes, but so far the Psi55 synthase has not been identified in archaea. In this work, we report the ability of two distinct pseudouridine synthases from the hyperthermophilic archaeon Pyrococcus furiosus to specifically modify U55 in tRNA in vitro. These enzymes are (pfu)Cbf5, a protein known to play a role in RNA-guided modification of rRNA, and (pfu)PsuX, a previously uncharacterized enzyme that is not a member of the TruB/Pus4/Cbf5 family of pseudouridine synthases. (pfu)PsuX is hereafter renamed (pfu)Pus10. Both enzymes specifically modify tRNA U55 in vitro but exhibit differences in substrate recognition. In addition, we find that in a heterologous in vivo system, (pfu)Pus10 efficiently complements an Escherichia coli strain deficient in the bacterial Psi55 synthase TruB. These results indicate that it is probable that (pfu)Cbf5 or (pfu)Pus10 (or both) is responsible for the introduction of pseudouridine at U55 in tRNAs in archaea. While we cannot unequivocally assign the function from our results, both possibilities represent unexpected functions of these proteins as discussed herein.Keywords
This publication has 45 references indexed in Scilit:
- THUMP from archaeal tRNA:m22G10 methyltransferase, a genuine autonomously folding domainNucleic Acids Research, 2006
- The ASCH superfamily: novel domains with a fold related to the PUA domain and a potential role in RNA metabolismBioinformatics, 2005
- The Cbf5–Nop10 complex is a molecular bracket that organizes box H/ACA RNPsNature Structural & Molecular Biology, 2005
- Precursor complex structure of pseudouridine synthase TruB suggests coupling of active site perturbations to an RNA-sequestering peripheral protein domainProtein Science, 2005
- Crystal Structure of the Apo Forms of ψ 55 tRNA Pseudouridine Synthase from Mycobacterium tuberculosisPublished by Elsevier ,2004
- A novel unanticipated type of pseudouridine synthase with homologs in bacteria, archaea, and eukaryaRNA, 2003
- RNA-modifying enzymesCurrent Opinion in Structural Biology, 2003
- Mapping Pseudouridines in RNA MoleculesMethods, 2001
- THUMP – a predicted RNA-binding domain shared by 4-thiouridine, pseudouridine synthases and RNA methylasesTrends in Biochemical Sciences, 2001
- Major identity determinants for enzymatic formation of ribothymidine and pseudouridine in the TΨ-loop of yeast tRNAsJournal of Molecular Biology, 1997