Author:
Leo Berit,Hartl Maximilian J,Schweimer Kristian,Mayr Florian,Wöhrl Birgitta M
Abstract
Abstract
Background
RNase H is an endonuclease that hydrolyzes the RNA strand in RNA/DNA hybrids. Retroviral reverse transcriptases harbor a C-terminal RNase H domain whose activity is essential for viral replication. The RNase H degrades the viral genomic RNA after the first DNA strand is synthesized. Here, we report the biophysical and enzymatic properties of the RNase H domain of prototype foamy virus (PFV) as an independently purified protein. Sequence comparisons with other retroviral RNases H indicated that PFV RNase H harbors a basic protrusion, including a basic loop and the so-called C-helix, which was suggested to be important for activity and substrate binding and is absent in the RNase H domain of human immunodeficiency virus. So far, no structure of a retroviral RNase H containing a C-helix is available.
Results
RNase H activity assays demonstrate that the PFV RNase H domain is active, although its activity is about 200-fold reduced as compared to the full length protease-reverse transcriptase enzyme. Fluorescence equilibrium titrations with an RNA/DNA substrate revealed a KD for the RNase H domain in the low micromolar range which is about 4000-fold higher than that of the full-length protease-reverse transcriptase enzyme. Analysis of the RNase H cleavage pattern using a [32P]-labeled substrate indicates that the independent RNase H domain cleaves the substrate non-specifically. The purified RNase H domain exhibits a well defined three-dimensional structure in solution which is stabilized in the presence of Mg2+ ions.
Conclusions
Our data demonstrate that the independent PFV RNase H domain is structured and active. The presence of the C-helix in PFV RNase H could be confirmed by assigning the protein backbone and calculating the chemical shift index using NMR spectroscopy.
Publisher
Springer Science and Business Media LLC
Subject
Infectious Diseases,Virology
Reference47 articles.
1. Linial M: Foamy viruses. Fields Virology. Edited by: Knipe DM, Howley PM. 2007, Lippincott Williams & Wilkins, Philadelphia, 2245-2262.
2. Rethwilm A: Foamy viruses. Topley & Wilson's Microbiology and Microbial Infections - Virology. Edited by: ter Meulen V, Mahy BWJ. 2005, London:Hodder Arnold, 1304-1321.
3. Rethwilm A: Molecular biology of foamy viruses. Med Microbiol Immunol. 2010, 199: 197-207. 10.1007/s00430-010-0158-x.
4. Hartl MJ, Mayr F, Rethwilm A, Wöhrl BM: Biophysical and enzymatic properties of the simian and prototype foamy virus reverse transcriptases. Retrovirology. 2010, 7: 5-10.1186/1742-4690-7-5.
5. Hartl MJ, Bodem J, Jochheim F, Rethwilm A, Rösch P, Wöhrl BM: Regulation of foamy virus protease activity by viral RNA - a novel and unique mechanism among retroviruses. J Virol. 2011, 85: 4462-4469. 10.1128/JVI.02211-10.
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