Pages that link to "Q38297932"
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The following pages link to Nevirapine alters the cleavage specificity of ribonuclease H of human immunodeficiency virus 1 reverse transcriptase (Q38297932):
Displaying 42 items.
- RNase H activity: structure, specificity, and function in reverse transcription (Q24643032) (← links)
- Selective inhibition of HIV-1 reverse transcriptase-associated ribonuclease H activity by hydroxylated tropolones (Q24798680) (← links)
- HIV-1 Reverse Transcriptase Structure with RNase H Inhibitor Dihydroxy Benzoyl Naphthyl Hydrazone Bound at a Novel Site (Q27640888) (← links)
- Structures of HIV-1 RT-RNA/DNA ternary complexes with dATP and nevirapine reveal conformational flexibility of RNA/DNA: insights into requirements for RNase H cleavage (Q27684014) (← links)
- Structure of unliganded HIV-1 reverse transcriptase at 2.7 A resolution: implications of conformational changes for polymerization and inhibition mechanisms (Q27733392) (← links)
- Inhibition of human immunodeficiency virus type 1 reverse transcriptase and ribonuclease H activities by constituents of Juglans mandshurica (Q28372629) (← links)
- Argentine plant extracts active against polymerase and ribonuclease H activities of HIV-1 reverse transcriptase (Q28377234) (← links)
- Molecular dynamics study of HIV-1 RT-DNA-nevirapine complexes explains NNRTI inhibition and resistance by connection mutations (Q30355077) (← links)
- Structures of complexes formed by HIV-1 reverse transcriptase at a termination site of DNA synthesis (Q30654060) (← links)
- Inhibition of the ribonuclease H activity of HIV-1 reverse transcriptase by GSK5750 correlates with slow enzyme-inhibitor dissociation (Q33718515) (← links)
- The P236L delavirdine-resistant human immunodeficiency virus type 1 mutant is replication defective and demonstrates alterations in both RNA 5'-end- and DNA 3'-end-directed RNase H activities (Q33815628) (← links)
- A novel molecular mechanism of dual resistance to nucleoside and nonnucleoside reverse transcriptase inhibitors. (Q33826904) (← links)
- The non-nucleoside reverse transcriptase inhibitor efavirenz stimulates replication of human immunodeficiency virus type 1 harboring certain non-nucleoside resistance mutations (Q33872810) (← links)
- Nevirapine: a review of its use in the prevention and treatment of paediatric HIV infection (Q34055828) (← links)
- HIV-1 Ribonuclease H: Structure, Catalytic Mechanism and Inhibitors (Q34223771) (← links)
- The "Connection" Between HIV Drug Resistance and RNase H (Q34313605) (← links)
- HIV-1 integrase and RNase H activities as therapeutic targets (Q34837210) (← links)
- 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 (Q34849844) (← links)
- Indolopyridones inhibit human immunodeficiency virus reverse transcriptase with a novel mechanism of action (Q35185934) (← links)
- The effects of RNase H inhibitors and nevirapine on the susceptibility of HIV-1 to AZT and 3TC. (Q35684111) (← links)
- The HIV-1 reverse transcriptase mutants G190S and G190A, which confer resistance to non-nucleoside reverse transcriptase inhibitors, demonstrate reductions in RNase H activity and DNA synthesis from tRNA(Lys, 3) that correlate with reductions in rep (Q35794241) (← links)
- Interaction of HIV-1 reverse transcriptase ribonuclease H with an acylhydrazone inhibitor (Q35874082) (← links)
- The next generation of HIV/AIDS drugs: novel and developmental antiHIV drugs and targets (Q35917148) (← links)
- Inhibition of HIV-1 reverse transcription: basic principles of drug action and resistance (Q35917530) (← links)
- Structural basis of the allosteric inhibitor interaction on the HIV-1 reverse transcriptase RNase H domain. (Q36300994) (← links)
- Alizarine derivatives as new dual inhibitors of the HIV-1 reverse transcriptase-associated DNA polymerase and RNase H activities effective also on the RNase H activity of non-nucleoside resistant reverse transcriptases (Q36928605) (← links)
- Efavirenz stimulates HIV-1 reverse transcriptase RNase H activity by a mechanism involving increased substrate binding and secondary cleavage activity. (Q37350895) (← links)
- Inhibition of HIV-1 replication using a mutated tRNALys-3 primer (Q38345179) (← links)
- From housekeeper to microsurgeon: the diagnostic and therapeutic potential of ribonucleases (Q38345567) (← links)
- Strand displacement synthesis of the long terminal repeats by HIV reverse transcriptase (Q38362535) (← links)
- Nonnucleoside reverse transcriptase inhibitor-resistant HIV is stimulated by efavirenz during early stages of infection (Q38632038) (← links)
- Effects of HIV-1 reverse transcriptase connection subdomain mutations on polypurine tract removal and initiation of (+)-strand DNA synthesis. (Q42170864) (← links)
- Kaempferol acetylrhamnosides from the rhizome of Dryopteris crassirhizoma and their inhibitory effects on three different activities of human immunodeficiency virus-1 reverse transcriptase (Q43624368) (← links)
- Inhibitory effects of Korean plants on HIV-1 activities (Q43649655) (← links)
- Inhibitory effects of quinones on RNase H activity associated with HIV-1 reverse transcriptase (Q43947612) (← links)
- Inhibition of HIV-1 ribonuclease H by a novel diketo acid, 4-[5-(benzoylamino)thien-2-yl]-2,4-dioxobutanoic acid (Q44248249) (← links)
- A novel mechanism for inhibition of HIV-1 reverse transcriptase (Q44365269) (← links)
- The isolated RNase H domain of murine leukemia virus reverse transcriptase. Retention of activity with concomitant loss of specificity (Q45760983) (← links)
- Macrophage Targeted Nanoparticles for Antiretroviral (ARV) Delivery (Q50327669) (← links)
- Reactions of Uracils, 24. Multiple Anellation to Uracils and their Analogs - An Approach to Nevirapine-Type Tricycles (Q58751458) (← links)
- Misincorporation by HIV-1 reverse transcriptase promotes recombination via strand transfer synthesis (Q71514590) (← links)
- Mutations within the primer grip region of HIV-1 reverse transcriptase result in loss of RNase H function (Q73248252) (← links)