Skip to main content
Journal cover image

New tools provide a second look at HDV ribozyme structure, dynamics and cleavage.

Publication ,  Journal Article
Kapral, GJ; Jain, S; Noeske, J; Doudna, JA; Richardson, DC; Richardson, JS
Published in: Nucleic Acids Res
November 10, 2014

The hepatitis delta virus (HDV) ribozyme is a self-cleaving RNA enzyme essential for processing viral transcripts during rolling circle viral replication. The first crystal structure of the cleaved ribozyme was solved in 1998, followed by structures of uncleaved, mutant-inhibited and ion-complexed forms. Recently, methods have been developed that make the task of modeling RNA structure and dynamics significantly easier and more reliable. We have used ERRASER and PHENIX to rebuild and re-refine the cleaved and cis-acting C75U-inhibited structures of the HDV ribozyme. The results correct local conformations and identify alternates for RNA residues, many in functionally important regions, leading to improved R values and model validation statistics for both structures. We compare the rebuilt structures to a higher resolution, trans-acting deoxy-inhibited structure of the ribozyme, and conclude that although both inhibited structures are consistent with the currently accepted hammerhead-like mechanism of cleavage, they do not add direct structural evidence to the biochemical and modeling data. However, the rebuilt structures (PDBs: 4PR6, 4PRF) provide a more robust starting point for research on the dynamics and catalytic mechanism of the HDV ribozyme and demonstrate the power of new techniques to make significant improvements in RNA structures that impact biologically relevant conclusions.

Duke Scholars

Altmetric Attention Stats
Dimensions Citation Stats

Published In

Nucleic Acids Res

DOI

EISSN

1362-4962

Publication Date

November 10, 2014

Volume

42

Issue

20

Start / End Page

12833 / 12846

Location

England

Related Subject Headings

  • Ribonucleoprotein, U1 Small Nuclear
  • RNA, Catalytic
  • RNA Cleavage
  • Nucleic Acid Conformation
  • Models, Molecular
  • Hepatitis Delta Virus
  • Developmental Biology
  • Base Pairing
  • 41 Environmental sciences
  • 34 Chemical sciences
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Kapral, G. J., Jain, S., Noeske, J., Doudna, J. A., Richardson, D. C., & Richardson, J. S. (2014). New tools provide a second look at HDV ribozyme structure, dynamics and cleavage. Nucleic Acids Res, 42(20), 12833–12846. https://doi.org/10.1093/nar/gku992
Kapral, Gary J., Swati Jain, Jonas Noeske, Jennifer A. Doudna, David C. Richardson, and Jane S. Richardson. “New tools provide a second look at HDV ribozyme structure, dynamics and cleavage.Nucleic Acids Res 42, no. 20 (November 10, 2014): 12833–46. https://doi.org/10.1093/nar/gku992.
Kapral GJ, Jain S, Noeske J, Doudna JA, Richardson DC, Richardson JS. New tools provide a second look at HDV ribozyme structure, dynamics and cleavage. Nucleic Acids Res. 2014 Nov 10;42(20):12833–46.
Kapral, Gary J., et al. “New tools provide a second look at HDV ribozyme structure, dynamics and cleavage.Nucleic Acids Res, vol. 42, no. 20, Nov. 2014, pp. 12833–46. Pubmed, doi:10.1093/nar/gku992.
Kapral GJ, Jain S, Noeske J, Doudna JA, Richardson DC, Richardson JS. New tools provide a second look at HDV ribozyme structure, dynamics and cleavage. Nucleic Acids Res. 2014 Nov 10;42(20):12833–12846.
Journal cover image

Published In

Nucleic Acids Res

DOI

EISSN

1362-4962

Publication Date

November 10, 2014

Volume

42

Issue

20

Start / End Page

12833 / 12846

Location

England

Related Subject Headings

  • Ribonucleoprotein, U1 Small Nuclear
  • RNA, Catalytic
  • RNA Cleavage
  • Nucleic Acid Conformation
  • Models, Molecular
  • Hepatitis Delta Virus
  • Developmental Biology
  • Base Pairing
  • 41 Environmental sciences
  • 34 Chemical sciences