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Mutation in HBV RNA-dependent DNA polymerase confers resistance to lamivudine in vivo.

The (-) enantiomer of 3'-thiacytidine (lamivudine) has been found to be a potent inhibitor of hepatitis B virus (HBV) and human immunodeficiency virus (HIV) replication. Mutation of methionine to valine or isoleucine at the YMDD (tyrosine, methionine, aspartate, aspartate) motif of the HIV reverse transcriptase has been shown to be responsible for lamivudine resistance in HIV. The hepadnaviruses also have the YMDD motif in their DNA polymerase. Therefore, it is possible that hepadnaviruses could develop lamivudine resistance by a similar mutation at this motif. We analyzed the HBV from a liver transplantation patient who developed recurrent HBV viremia during lamivudine treatment. The polymerase gene was amplified by polymerase chain reaction (PCR), and the region coding for the YMDD motif was sequenced. The pretreatment HBV sequence coded for YMDD, while the lamivudine-resistant mutant HBV coded for YIDD (tyrosine, isoleucine, aspartate, aspartate). With the documented changes in the YMDD motif of lamivudine-resistant HIV, it is likely that the methionine-to-isoleucine mutation in the YMDD motif of the HBV polymerase contributes significantly to the lamivudine-resistance of HBV isolated from this patient.

Adult↗

Intracellular pharmacology of nucleoside analogues and protease inhibitors: role of transporter molecules.

Antiretroviral agents target HIV replication within infected cells. It is therefore important to focus on the pharmacology of these drugs at their site of action rather than just in plasma. Activation of nucleoside analogues to a triphosphate is essential for antiretroviral activity. Following activation, by intracellular kinases, drug triphosphates compete with endogenous triphosphates for HIV reverse transcriptase. Methodologies to measure triphosphates in peripheral blood mononuclear cells from HIV patients have been described. This has allowed investigation of once-daily dosing regimens, drug interactions, modulation of intracellular activation and the bypassing of initial phosphorylation steps. Drug accumulation within a cell is a balance between influx and efflux. There is a growing body of evidence indicating that transport proteins are vitally important in regulating intracellular concentrations of antiretroviral drugs. Allelic variants, inhibition (or induction) are all potentially critical determinants of active drug present in the cell. It is hoped that understanding the intracellular pharmacology will improve long-term therapy and reduce the likelihood of cellular resistance in therapeutic failure.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Modulation of the oligomeric structures of HIV-1 retroviral enzymes by synthetic peptides and small molecules.

The efficacy of antiretroviral agents approved for the treatment of HIV-1 infection is limited by the virus's ability to develop resistance. As such there is an urgent need for new ways of thinking about anti-HIV drug development, and accordingly novel viral and cellular targets critical to HIV-1 replication need to be explored and exploited. The retroviral RNA genome encodes for three enzymes essential for viral replication: HIV-1 protease (PR), HIV-1 reverse transcriptase (RT) and HIV-1 integrase (IN). The enzymatic functioning of each of these enzymes is entirely dependent on their oligomeric structures, suggesting that inhibition of subunit-subunit assembly or modulation of their quaternary structures provide alternative targets for HIV-1 inhibition. This review discusses the recent advances in the design and/or identification of synthetic peptides and small molecules that specifically target the subunit-subunit interfaces of these retroviral enzymes, resulting in the inactivation of their enzymatic functioning.

Anti-HIV Agents↗

HIV-1 drug resistance in Thailand: before and after National Access to Antiretroviral Program.

BACKGROUND: The Ministry of Public Health (Thailand), MoPH, has had a program called National Access to Antiretroviral Program for People who have AIDS (PHA) or "NAPHA", to offer free antiretroviral drugs (ARV), which are locally produced in Thailand, to any HIV-1 infected patients with CD4<200 since 2002. This program may increase usage of ARV therapy and the emergence of HIV-1 drug resistance. OBJECTIVES: To monitor HIV-1 ARV drug resistant codon mutation in Thailand before and after the "NAPHA" program. MATERIALS AND METHODS: EDTA blood samples were collected from 542 HIV-1 infected subjects, who received ARV therapy in 1999 and 2001-2003, and perinatal chemoprophylaxis in 1998 and 2000. HIV-1 pol nucleotide sequences were analyzed. RESULTS: The percentage of drug resistant detection from the ARV therapy group in 1999 and 2001-2003 were 12.14 (34/280), 10.23 (9/88), 86.96 (20/23) and 57.55 (61/106), respectively. Of 332 NRTI drug resistant codon mutation, 226 (68.07%) were thymidine analogue mutations (TAMs). The percentage of TAMs detection in 1999 and 2001-2003 were 7.14 (20/280), 9.09 (8/88), 56.52 (13/23) and 43.34 (46/106), respectively. Of 105 NNRTI drug resistant codon mutation, 95 (90.48%) were related to nevirapine drug resistance. CONCLUSION: Thailand may need more appropriate monitoring of drug resistance in the free ARV therapy program to protect the future usage of drugs by minimizing the emergence of drug resistance.

Anti-Retroviral Agents↗

Immunovirologic consequences and safety of short, non-structured interruptions of successful antiretroviral treatment.

OBJECTIVES: The aim was to evaluate the safety of short antiretroviral treatment interruptions and their virologic and immunologic consequences in HIV-infected adults on highly active antiretroviral treatment (HAART) with suppressed viral replication. The viral efficacy upon reintroduction was also evaluated. PATIENTS AND METHODS: All patients with undetectable viral load while on HAART were prospectively followed to detect any treatment interruption. We analysed viral and cellular kinetics, incidence of resistance mutations, clinical outcome and results after therapy resumption. RESULTS: Twenty patients were included, mean time since HIV diagnosis was 95 months and time with undetectable viral load 16 months. Treatment was interrupted because of adverse effects, cancer, tuberculosis or patient will. Treatment was reintroduced after 4 weeks using, if possible, the same combination. HIV viral load was detectable on day 28 after interruption in 18 patients (90%). Median of CD4 cell count (p25-p75) decreased from 478/mm3 (96-716) to 257/mm3 (118-663) (p=0.5). Resistance mutations were found in 9 patients (45%) after interruptions. Treatment was reintroduced in 14 patients; all of them achieved viral suppression. CONCLUSIONS: In patients receiving HAART who have undetectable viral load, an interruption, no longer than 4 weeks, due to any intercurrent problem seems to be safe. Response to resumption can usually be achieved. Due to the frequent development of resistance, a genotypic test during interruption might be helpful.

Adult↗

Cartesian coordinate analysis of viral burden and CD4+ T-cell count in human immunodeficiency virus type-1 infection.

We have used a Cartesian coordinate plot to analyze the inverse relationship between viral burden (x-axis) and peripheral blood CD4+ cell count (y-axis) to extend our understanding of the mechanisms of antiviral drugs and differences in outcome resulting from variability in virus and host responses. Each of 186 subjects studied were assigned to one of four response quadrants. Quadrants A (x-, y+) and D (x+, y-) defined the effect of a change in virus load on the inverse change in CD4+ cell count expected from the natural history of HIV infection or antiretroviral therapy. Quadrants B (x+, y+) and C (x-, y-) defined the dissociation of the inverse relationship between the relative changes in CD4+ cell count and viral load that resulted from the hypothesized effect of putative virologic or immunologic response modifiers. Of the response modifiers studied, only the syncytium-inducing phenotype resulted in a complete dissociation of this inverse relationship. The analysis provided an integrated virological and immunological approach to better understand therapeutic responses and potential dissociation between changes in viral RNA and CD4+ cell count. This type of analysis may be helpful for individualizing patient management as well as designing and analyzing studies of HIV-1 antiretroviral drugs and disease pathogenesis.

CD4 Lymphocyte Count↗

Combined antiretroviral therapy reduces hyperimmunoglobulinemia in HIV-1 infected children.

OBJECTIVE: To evaluate the effect of combined antiretroviral therapy on serum immunoglobulin (Ig) levels in HIV-1 perinatally infected children. METHODS: Data from 1250 children recorded by the Italian Register for HIV Infection in Children from 1985 to 2002 were analysed. Since Ig levels physiologically vary with age, differences at different age periods were evaluated as differences in z-scores calculated using means and standard deviations of normal population for each age period. Combined antiretroviral therapy has become widespread in Italy since 1996, thus differences in Ig z-scores between the periods 1985-1995 and 1996-2002 were analysed. Data according to type of therapeutic regimen were also analysed. RESULTS: Between the two periods 1985-1995 and 1996-2002, significant (P < 0.0001) decreases in IgG (6.29 +/- 4.72 versus 4.44 +/- 4.33), IgM (9.25 +/- 13.32 versus 5.61 +/- 7.93), and IgA (10.25 +/- 15.68 versus 6.48 +/- 11.56) z-scores, together with a parallel significant (P < 0.0001) increase in CD4 T-lymphocyte percentages, were found. These decreases were confirmed regardless of whether the children were receiving intravenous Ig or not. Ig z-scores were significantly higher in children receiving mono-therapy than in those receiving double-combined therapy (IgG, P < 0.0001; IgM, P = 0.003; IgA, P = 0.031) and in the latter children than in those receiving three or more drugs (P < 0.0001 for all z-scores). Ig z-scores correlated inversely with CD4 T-lymphocyte percentages and, directly, with viral loads. CONCLUSIONS: Our data show that in HIV-1 infected children combined antiretroviral therapy leads to reduction of hyperimmunoglobulinemia which parallels restoration of CD4 T-lymphocyte percentage and viral load decrease, which it turn probably reflects improved B-lymphocyte functions.

Adolescent↗

Incidence of lamivudine resistance associated mutations in pol-gene of HIV-1 in patients from north India: a preliminary report.

Screening of drug-resistant variants is very important for the effective clinical management of HIV-infected patients and development of new strategies. The present study was aimed to detect codon-184 mutations in the pol-gene of HIV leading to resistance to lamivudine (3-TC) by nested cum ARMS-PCR approach in 10 treated and 9 treatment naive patients. For correlation the whole blood CD4/CD8 cell counts and the soluble TNFRII levels in plasma were also determined. Of the 19 patients tested, mutant variants were observed in 2 patients (Met Val in one and Met Val & lle in second) both being treated with 3-TC. No mutations were detected in the treatment-naive patients. The results confirmed that, drug resistant variants of codon-184 emerge rapidly in patients receiving 3-TC containing regimens including our population, which is mainly infected with subtypeC of the virus that could be detected along with wild viral population using sensitive approaches such as ARMS-PCR.

Anti-HIV Agents↗

Deoxythioguanosine triphosphate impairs HIV replication: a new mechanism for an old drug.

Inhibition of HIV-1 reverse transcriptase (RT) and HIV protease are effective mechanisms for anti-retroviral agents, and the combined use of mechanistically different medications has markedly improved the treatment of HIV infected patients. The active metabolite of mercaptopurine and thioguanine (TG), deoxythioguanosine triphosphate, was shown to be incorporated into DNA by the polymerase function of HIV-1 RT and then to abrogate RNA cleavage by HIV-1 RNaseH. Treatment of human lymphocyte cultures with thioguanine produced substantial inhibition of HIV replication (IC(50)=0.035 microM, IC(95)=15.4 microM), with minimal toxicity to host lymphocytes (<10% at 15.4 microM TG, P<0.000005). Furthermore, low concentrations of TG and zidovudine were synergistic in inhibiting HIV replication in human lymphocytes (synergy volume=19 microM(2)%), without additive cytotoxicity to host lymphocytes. Thus, thiopurines are novel anti-retroviral agents that alter the DNA-RNA substrates for HIV RNaseH, thereby abrogating early stages of HIV replication.

Anti-HIV Agents↗

Differential influence of nucleoside analog-resistance mutations K65R and L74V on the overall mutation rate and error specificity of human immunodeficiency virus type 1 reverse transcriptase.

Human immunodeficiency virus type 1 (HIV-1) reverse transcriptase (RT) variants with the K65R or L74V substitution display resistance to several nucleoside analogs. An in vitro dNTP exclusion assay revealed an increased fidelity for K65R RT compared with wild-type RT, but little change for L74V RT. When the forward mutation rates were measured via a gap-filling assay, the K65R variant displayed an 8-fold decrease in the overall mutation rate (1.0 x 10(-3) versus 8.6 x 10(-3) for wild-type HIV-1 RT), whereas the rate for the L74V variant was closer to that for wild-type RT (5.0 x 10(-3)). The increase in overall fidelity observed for K65R RT is the largest reported for any drug-resistant HIV-1 RT variant. Nucleotide sequence analysis of lacZalpha mutants generated by variant RTs indicated that K65R RT displays uniform reduction in most types of errors, whereas L74V RT does not. Modeling the substitutions into the x-ray structure of the ternary complex revealed that the major influence of Leu(74) in stabilizing the templating base is unaffected by Val substitution, whereas the K65R substitution appears to increase the stringency of dNTP binding. It is speculated that the increased fidelity of K65R RT is due to an altered interaction with the dNTP substrate.

Anti-HIV Agents↗

The plant ribosome inactivating proteins luffin and saporin are potent inhibitors of HIV-1 integrase.

The ribosome inactivating proteins (RIPs) are a group of proteins that are able to inactivate eukaryotic protein synthesis by attacking the 28S ribosomal RNA. Recent studies have shown that some RIPs possess strong anti-human immunodeficiency virus (HIV) activity. In this study, several common plant RIPs including agrostin, gelonin, luffin, alpha-momorcharin, beta-momorcharin, saporin and trichosanthin were examined for the ability to interfere with HIV-1 replication in a variety of mechanistic assays in vitro. These assays included the CD4/gp120 interaction assay, HIV-1 reverse transcriptase (RT) assay, HIV-1 protease assay and HIV-1 integrase assay. At the concentration of 100 nM, all RIPs appeared to enhance the CD4/gp120 interaction by about 50%. These RIPs exhibited a very weak suppressive effect on HIV-1 RT and on HIV-1 protease. In contrast, with the exception of agrostin, all the RIPs tested could strongly inhibit HIV-1 integrase, the extent of inhibition ranging from 26.1 to 96.3% in an ELISA-based assay. Two RIPs, saporin and luffin, which licited over 90% inhibition in the ELISA-based assay, were further characterized in a radiometric assay. Both of these two RIPs evoked a strong dose-dependent inhibition in the 3'-end processing and strand-transfer activities of integrase. The results from this study suggest that the anti-HIV property of RIPs may be due to inhibition of HIV-1 integrase.

Anti-HIV Agents↗

Differences among HIV-1 variants in their ability to elicit secretion of TNF-alpha.

HIV-1 infection of human PBMC has been shown to elicit secretion of several different cytokines. TNF-alpha secretion induced by this virus has been of particular interest because it has been associated with the development of HIV-1 dementia and because TNF-alpha increases viral replication by enhancing NF-kappaB interaction with the viral promoter, the HIV-1 long terminal repeat. Thus, an autocrine pathway is potentially created in which HIV-1 stimulates its own replication. Conflicting reports exist, however, on the ability of HIV-1 to induce TNF-alpha secretion in vitro or in vivo. Using experimental protocols that controlled for potential bacterial endotoxin-induced TNF-alpha secretion, the current study demonstrates significant differences in TNF-alpha-eliciting properties among primary and laboratory obtained HIV-1. The relative TNF-alpha-inducing ability of different variants is conserved when tested using PBMC from different individuals. Elicitation of TNF-alpha secretion was not blocked by exposure of cells to zidovudine, indicating that viral integration was not required to induce secretion. Rather, the interaction between the virus and cell surface is critical for TNF-alpha induction, as Abs against CD4 or CCR5 blocked the induction of TNF-alpha synthesis by PBMC when added before virus exposure. Furthermore, the ability to induce TNF-alpha secretion mapped to a region of the HIV-1 env gene that includes the third hypervariable domain. Differences in the ability of different HIV-1 variants to elicit TNF-alpha may account for individual differences in HIV-1 disease course.

Antigenic Variation↗

TSAO compounds: the comprehensive story of a unique family of HIV-1 specific inhibitors of reverse transcriptase.

Emergence of drug-resistant viral strains is one of the major milestones and the main cause for the failure of antiretroviral therapy. Combination of different anti-HIV agents has become the standard clinical practice to keep the viral load at low or even undetectable levels and to prevent emergence of virus-drug resistance. Among the human immunodeficiency virus (HIV) reverse transcriptase (RT) inhibitors, the so called nonnucleoside RT inhibitors (NNRTIs) have gained a definitive place in the treatment of HIV infections in combination with nucleoside analogue RT inhibitors (NRTIs) and HIV protease inhibitors (PIs). The virus can be markedly suppressed for a relatively long period of time when exposed to multiple drug combination therapy (highly active antiretroviral therapy, HAART). TSAO derivatives are a peculiar group of highly functionalized nucleosides that belong to the so-called nonnucleoside RT inhibitors (NNRTIs). They exert their unique selectivity for HIV-1 through a specific interaction with the p51 subunit of HIV-1 RT. They are the first small molecules that seem to interfere with the dimerization process of the enzyme. This review covers the work carried out with this unique class of specific inhibitors of HIV-1 reverse transcriptase, including structure activity relationship studies (SAR), its mechanism of action, resistance studies, model of interaction with the enzyme, etc.

Anti-HIV Agents↗

Nuclear and mitochondrial changes of muscle fibers in AIDS after treatment with high doses of zidovudine.

Zidovudine (formerly azidothymidine) is a potent inhibitor of the human immunodeficiency virus (HIV) reverse transcriptase and represents the first approved drug showing clinical efficacy in HIV-associated diseases. However, considerable toxicity causing macrocytic anemia, neutropenia, and myopathy has been reported, with severe mitochondrial alterations as a special feature of this myopathy. The mitochondrial changes are consistent with the fact that zidovudine acts as an inhibitor of the mitochondrial gamma-polymerase. Electron microscopically, we could confirm the presence of severely altered mitochondria in a 32-year-old male, who developed a necrotizing myopathy after daily administration of 1,000 mg zidovudine over a period of 15 months. In addition, there were even more severe nuclear changes that, for the most part, have not been documented electron microscopically in HIV-related myopathy either with or without zidovudine treatment, especially in non-necrotic and non-regenerating fibers. Since various in vitro studies have shown interference of zidovudine with nuclear DNA metabolism even in human cell lines, we assume that the nuclear changes that we observed are at least in part related to zidovudine treatment.

Acquired Immunodeficiency Syndrome↗