Substrate mimicry: HIV-1 reverse transcriptase recognizes 6-modified-3'-azido-2',3'-dideoxyguanosine-5'-triphosphates as adenosine analogs. 2012

Brian D Herman, and Raymond F Schinazi, and Hong-wang Zhang, and James H Nettles, and Richard Stanton, and Mervi Detorio, and Aleksandr Obikhod, and Ugo Pradère, and Steven J Coats, and John W Mellors, and Nicolas Sluis-Cremer
Department of Medicine, Division of Infectious Diseases, University of Pittsburgh, Pittsburgh, PA 15261, USA.

β-D-3'-Azido-2',3'-dideoxyguanosine (3'-azido-ddG) is a potent inhibitor of HIV-1 replication with a superior resistance profile to zidovudine. Recently, we identified five novel 6-modified-3'-azido-ddG analogs that exhibit similar or superior anti-HIV-1 activity compared to 3'-azido-ddG in primary cells. To gain insight into their structure-activity-resistance relationships, we synthesized their triphosphate (TP) forms and assessed their ability to inhibit HIV-1 reverse transcriptase (RT). Steady-state and pre-steady-state kinetic experiments show that the 6-modified-3'-azido-ddGTP analogs act as adenosine rather than guanosine mimetics in DNA synthesis reactions. The order of potency of the TP analogs against wild-type RT was: 3'-azido-2,6-diaminopurine >3'-azido-6-chloropurine; 3'-azido-6-N-allylaminopurine > 2-amino-6-N,N-dimethylaminopurine; 2-amino-6-methoxypurine. Molecular modeling studies reveal unique hydrogen-bonding interactions between the nucleotide analogs and the template thymine base in the active site of RT. Surprisingly, the structure-activity relationship of the analogs differed in HIV-1 RT ATP-mediated excision assays of their monophosphate forms, suggesting that it may be possible to rationally design a modified base analog that is efficiently incorporated by RT but serves as a poor substrate for ATP-mediated excision reactions. Overall, these studies identify a promising strategy to design novel nucleoside analogs that exert profound antiviral activity against both WT and drug-resistant HIV-1.

UI MeSH Term Description Entries
D008958 Models, Molecular Models used experimentally or theoretically to study molecular shape, electronic properties, or interactions; includes analogous molecules, computer-generated graphics, and mechanical structures. Molecular Models,Model, Molecular,Molecular Model
D009154 Mutation Any detectable and heritable change in the genetic material that causes a change in the GENOTYPE and which is transmitted to daughter cells and to succeeding generations. Mutations
D000241 Adenosine A nucleoside that is composed of ADENINE and D-RIBOSE. Adenosine or adenosine derivatives play many important biological roles in addition to being components of DNA and RNA. Adenosine itself is a neurotransmitter. Adenocard,Adenoscan
D000255 Adenosine Triphosphate An adenine nucleotide containing three phosphate groups esterified to the sugar moiety. In addition to its crucial roles in metabolism adenosine triphosphate is a neurotransmitter. ATP,Adenosine Triphosphate, Calcium Salt,Adenosine Triphosphate, Chromium Salt,Adenosine Triphosphate, Magnesium Salt,Adenosine Triphosphate, Manganese Salt,Adenylpyrophosphate,CaATP,CrATP,Manganese Adenosine Triphosphate,MgATP,MnATP,ATP-MgCl2,Adenosine Triphosphate, Chromium Ammonium Salt,Adenosine Triphosphate, Magnesium Chloride,Atriphos,Chromium Adenosine Triphosphate,Cr(H2O)4 ATP,Magnesium Adenosine Triphosphate,Striadyne,ATP MgCl2
D015224 Dideoxynucleosides Nucleosides that have two hydroxy groups removed from the sugar moiety. The majority of these compounds have broad-spectrum antiretroviral activity due to their action as antimetabolites. The nucleosides are phosphorylated intracellularly to their 5'-triphosphates and act as chain-terminating inhibitors of viral reverse transcription. 2',3'-Dideoxynucleosides,Dideoxyribonucleosides,ddNus,2',3' Dideoxynucleosides
D054303 HIV Reverse Transcriptase A reverse transcriptase encoded by the POL GENE of HIV. It is a heterodimer of 66 kDa and 51 kDa subunits that are derived from a common precursor protein. The heterodimer also includes an RNAse H activity (RIBONUCLEASE H, HUMAN IMMUNODEFICIENCY VIRUS) that plays an essential role the viral replication process. Reverse Transcriptase, HIV,Reverse Transcriptase, Human Immunodeficiency Virus,Transcriptase, HIV Reverse
D054306 Dideoxynucleotides The phosphate esters of DIDEOXYNUCLEOSIDES. Dideoxynucleotide Triphosphates,ddNTPs,Triphosphates, Dideoxynucleotide
D018716 Molecular Mimicry The structure of one molecule that imitates or simulates the structure of a different molecule. Antigenic Mimicry,DNA Mimicry,Mimicry, Molecular,Antigen Mimicry,Antigen Mimicries,Antigenic Mimicries,DNA Mimicries,Mimicries, Antigen,Mimicries, Antigenic,Mimicries, DNA,Mimicries, Molecular,Mimicry, Antigen,Mimicry, Antigenic,Mimicry, DNA,Molecular Mimicries
D018894 Reverse Transcriptase Inhibitors Inhibitors of reverse transcriptase (RNA-DIRECTED DNA POLYMERASE), an enzyme that synthesizes DNA on an RNA template. Reverse Transcriptase Inhibitor,Inhibitors, Reverse Transcriptase,Inhibitor, Reverse Transcriptase,Transcriptase Inhibitor, Reverse
D019380 Anti-HIV Agents Agents used to treat AIDS and/or stop the spread of the HIV infection. These do not include drugs used to treat symptoms or opportunistic infections associated with AIDS. AIDS Drug,AIDS Drugs,Anti-AIDS Agents,Anti-AIDS Drug,Anti-HIV Agent,Anti-HIV Drug,Anti-AIDS Drugs,Anti-HIV Drugs,Agent, Anti-HIV,Agents, Anti-AIDS,Agents, Anti-HIV,Anti AIDS Agents,Anti AIDS Drug,Anti AIDS Drugs,Anti HIV Agent,Anti HIV Agents,Anti HIV Drug,Anti HIV Drugs,Drug, AIDS,Drug, Anti-AIDS,Drug, Anti-HIV,Drugs, AIDS,Drugs, Anti-AIDS,Drugs, Anti-HIV

Related Publications

Brian D Herman, and Raymond F Schinazi, and Hong-wang Zhang, and James H Nettles, and Richard Stanton, and Mervi Detorio, and Aleksandr Obikhod, and Ugo Pradère, and Steven J Coats, and John W Mellors, and Nicolas Sluis-Cremer
December 1989, Antiviral research,
Brian D Herman, and Raymond F Schinazi, and Hong-wang Zhang, and James H Nettles, and Richard Stanton, and Mervi Detorio, and Aleksandr Obikhod, and Ugo Pradère, and Steven J Coats, and John W Mellors, and Nicolas Sluis-Cremer
January 2014, Antiviral research,
Brian D Herman, and Raymond F Schinazi, and Hong-wang Zhang, and James H Nettles, and Richard Stanton, and Mervi Detorio, and Aleksandr Obikhod, and Ugo Pradère, and Steven J Coats, and John W Mellors, and Nicolas Sluis-Cremer
August 1992, Journal of medicinal chemistry,
Brian D Herman, and Raymond F Schinazi, and Hong-wang Zhang, and James H Nettles, and Richard Stanton, and Mervi Detorio, and Aleksandr Obikhod, and Ugo Pradère, and Steven J Coats, and John W Mellors, and Nicolas Sluis-Cremer
December 1987, Biochemical pharmacology,
Brian D Herman, and Raymond F Schinazi, and Hong-wang Zhang, and James H Nettles, and Richard Stanton, and Mervi Detorio, and Aleksandr Obikhod, and Ugo Pradère, and Steven J Coats, and John W Mellors, and Nicolas Sluis-Cremer
January 2005, Nucleosides, nucleotides & nucleic acids,
Brian D Herman, and Raymond F Schinazi, and Hong-wang Zhang, and James H Nettles, and Richard Stanton, and Mervi Detorio, and Aleksandr Obikhod, and Ugo Pradère, and Steven J Coats, and John W Mellors, and Nicolas Sluis-Cremer
January 2007, Biochemistry,
Brian D Herman, and Raymond F Schinazi, and Hong-wang Zhang, and James H Nettles, and Richard Stanton, and Mervi Detorio, and Aleksandr Obikhod, and Ugo Pradère, and Steven J Coats, and John W Mellors, and Nicolas Sluis-Cremer
April 1992, Chemical & pharmaceutical bulletin,
Brian D Herman, and Raymond F Schinazi, and Hong-wang Zhang, and James H Nettles, and Richard Stanton, and Mervi Detorio, and Aleksandr Obikhod, and Ugo Pradère, and Steven J Coats, and John W Mellors, and Nicolas Sluis-Cremer
October 1986, FEBS letters,
Brian D Herman, and Raymond F Schinazi, and Hong-wang Zhang, and James H Nettles, and Richard Stanton, and Mervi Detorio, and Aleksandr Obikhod, and Ugo Pradère, and Steven J Coats, and John W Mellors, and Nicolas Sluis-Cremer
April 2005, Journal of medicinal chemistry,
Brian D Herman, and Raymond F Schinazi, and Hong-wang Zhang, and James H Nettles, and Richard Stanton, and Mervi Detorio, and Aleksandr Obikhod, and Ugo Pradère, and Steven J Coats, and John W Mellors, and Nicolas Sluis-Cremer
August 2011, Antimicrobial agents and chemotherapy,
Copied contents to your clipboard!