The RNase H Domain: Structure, Function and Mechanism
Author:
Publisher
Springer New York
Link
http://link.springer.com/content/pdf/10.1007/978-1-4614-7291-9_3
Reference116 articles.
1. Arion D et al (2002) Mutational analysis of Tyr-501 of HIV-1 reverse transcriptase. Effects on ribonuclease H activity and inhibition of this activity by N-acylhydrazones. J Biol Chem 277(2):1370–1374
2. Arudchandran A et al (2000) The absence of ribonuclease H1 or H2 alters the sensitivity of Saccharomyces cerevisiae to hydroxyurea, caffeine and ethyl methanesulphonate: implications for roles of RNases H in DNA replication and repair. Genes Cells 5(10):789–802
3. Beilhartz GL et al (2009) HIV-1 reverse transcriptase can simultaneously engage its DNA/RNA substrate at both DNA polymerase and RNase H active sites: implications for RNase H inhibition. J Mol Biol 388(3):462–474
4. Ben-Artzi H et al (1992) Characterization of the double stranded RNA dependent RNase activity associated with recombinant reverse transcriptases. Nucleic Acids Res 20(19): 5115–5118
5. Boyer PL, Ferris AL, Hughes SH (1992a) Cassette mutagenesis of the reverse transcriptase of human immunodeficiency virus type 1. J Virol 66(2):1031–1039
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