Analysis of efficiency and fidelity of HIV-1 (+)-strand DNA synthesis reveals a novel rate-limiting step during retroviral reverse transcription

Citation
M. Gotte et al., Analysis of efficiency and fidelity of HIV-1 (+)-strand DNA synthesis reveals a novel rate-limiting step during retroviral reverse transcription, J BIOL CHEM, 276(9), 2001, pp. 6711-6719
Citations number
56
Categorie Soggetti
Biochemistry & Biophysics
Journal title
JOURNAL OF BIOLOGICAL CHEMISTRY
ISSN journal
00219258 → ACNP
Volume
276
Issue
9
Year of publication
2001
Pages
6711 - 6719
Database
ISI
SICI code
0021-9258(20010302)276:9<6711:AOEAFO>2.0.ZU;2-H
Abstract
We have analyzed the efficiency and accuracy of polymerization at several d ifferent stages during the initiation of human immunodeficiency virus type 1 (HIV-1) (+)-strand DNA synthesis. This reaction is of particular interest , as it involves the recruitment by reverse transcriptase of an RNA primer that serves as substrate for both the polymerase and RNase H activities of the enzyme. We found that the correct incorporation of the first two nucleo tides was severely compromised and that formation of mismatches was complet ely absent at this stage of initiation. Although the fidelity of incorporat ions decreased concomitantly with ensuing polymerization, the elongation of mispaired primers was literally blocked. Instead, mispaired primer strands initiated a switch from active synthesis of DNA to premature RNase H-media ted primer removal These findings suggest the existence of a fragile equili brium between these two enzymatic activities that is shifted toward RNase H cleavage once the polymerization process is aggravated. Our data show that the initiation of HIV-1 (+)-strand DNA synthesis differs significantly fro m reactions involving other primer/template combinations, including tRNA-pr imed (-)-strand DNA synthesis.