Skip to main navigation Skip to search Skip to main content

Molecular modeling of the three-dimensional structure of the bacterial RNase P holoenzyme

  • Hsin Yue Tsai
  • , Benoît Masquida
  • , Roopa Biswas
  • , Eric Westhof
  • , Venkat Gopalan*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

105 Scopus citations

Abstract

Bacterial ribonuclease P (RNase P), an enzyme involved in tRNA maturation, consists of a catalytic RNA subunit and a protein cofactor. Comparative phylogenetic analysis and molecular modeling have been employed to derive secondary and tertiary structure models of the RNA subunits from Escherichia coli (type A) and Bacillus subtilis (type B) RNase P. The tertiary structure of the protein subunit of B.subtilis and Staphylococcus aureus RNase P has recently been determined. However, an understanding of the structure of the RNase P holoenzyme (i.e. the ribonucleoprotein complex) is lacking. We have now used an EDTA-Fe-based footprinting approach to generate information about RNA-protein contact sites in E.coli RNase P. The footprinting data, together with results from other biochemical and biophysical studies, have furnished distance constraints, which in turn have enabled us to build three-dimensional models of both type A and B versions of the bacterial RNase P holoenzyme in the absence and presence of its precursor tRNA substrate. These models are consistent with results from previous studies and provide both structural and mechanistic insights into the functioning of this unique catalytic RNP complex.

Original languageEnglish
Pages (from-to)661-675
Number of pages15
JournalJournal of Molecular Biology
Volume325
Issue number4
DOIs
StatePublished - 24 Jan 2003

Keywords

  • Bacterial RNase P
  • RNA-protein interactions

Fingerprint

Dive into the research topics of 'Molecular modeling of the three-dimensional structure of the bacterial RNase P holoenzyme'. Together they form a unique fingerprint.

Cite this