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N Neamati

Publications and source records attributed to N Neamati.

42 records · Page 3Linked to original sources

Antiretroviral agents as inhibitors of both human immunodeficiency virus type 1 integrase and protease.

The human immunodeficiency virus type one integrase (HIV-1 integrase) is required for integration of a double-stranded DNA copy of the viral RNA genome into a host chromosome and for HIV replication. We have previously reported that phenolic moieties in compounds such as flavones, caffeic acid phenethyl ester (CAPE), tyrphostins, and curcumin confer inhibitory activity against HIV-1 integrase. We have investigated the actions of several recently described protease inhibitors, possessing novel structural features, on HIV-1 integrase. NSC 158393, which contains four 4-hydroxycoumarin residues, was found to exhibit antiviral, antiprotease, and antiintegrase activity. Both the DNA binding and catalytic activities (3'-processing and strand transfer) of integrase were inhibited at micromolar concentrations. Disintegration catalyzed by an integrase mutant containing only the central catalytic domain was also inhibited, indicating that the binding site for these compounds resides in the central 50-212 amino acids of HIV-1 integrase. Binding at or near the integrase catalytic site was also suggested by a global inhibition of the choice of attacking nucleophile in the 3'-processing reaction. NSC 158393 inhibited HIV-2, feline, and simian immunodeficiency virus integrases while eukaryotic topoisomerase I was inhibited at higher concentrations, suggesting selective inhibition of retroviral integrases. Molecular modeling studies revealed that the two hydroxyls and two carbonyl moieties in NSC 158393 may represent essential elements of the pharmacophore. Antiviral efficacy was observed with NSC 158393 derivatives that inhibited both HIV protease and integrase, and the most potent integrase inhibitors also inhibited HIV protease. Hydroxycoumarins may provide lead compounds for development of novel antiviral agents based upon the concurrent inhibition of two viral targets, HIV-1 integrase and protease.

4-Hydroxycoumarins↗

Effects of nucleotide analogues on human immunodeficiency virus type 1 integrase.

We extended our previous study with 3'-azido-3'-deoxythymidine nucleotides [Proc. Natl. Acad. Sci. USA 91:5771-5775 (1994)] and examined the effects on human immunodeficiency virus type 1 (HIV-1) integrase of the nucleotides of three nucleoside analogues currently under evaluation in clinical trials: beta-D-2',3'-didehydro-3'-deoxythymidine, beta-D-2'-ara-fluoro-2', 3'-dideoxyadenosine, and beta-L-2',3'-dideoxy-3'-thiacytidine. Beta-D-2',3'-Didehydro-3'-deoxythymidine and beta-D-2'-ara-fluoro-2',3'-dideoxyadenosine nucleotides had IC50 values for strand transfer of 100 and 200 microM, respectively, whereas the corresponding 2',3'-dideoxynucleoside triphosphates, ddT triphosphate and ddA triphosphate, did not inhibit the integrase at 800 and 200 microM, respectively. Beta-L-2',3'-Dideoxy-3'-thiacytidine triphosphate had no effect up to 500 microM. The L-enantiomers of 5-fluoro-2',3'-dideoxycytidine monophosphate and triphosphate had IC50 values of approximately 40 microM, whereas their D-enantiomer isomers showed no inhibition at 200 microM. NAD, pyridoxal phosphate, and coumermycin A1, which exhibit no antiviral activity but are typically used to probe nucleotide binding sites, were also tested. NAD was inactive, and its etheno derivative exhibited activity at 1 mM. In contrast, pyridoxal phosphate (IC50 = 18 microM and coumermycin A1 (IC50 = 5 microM were potent inhibitors. None of the coumermycin monomeric derivatives were active integrase inhibitors. The physiological ribonucleotides ATP and GTP inhibited HIV-1 integrase at or near cellular concentrations, suggesting that they may regulate HIV-1 integrase activity in cells. In general, the active nucleotides tested inhibited binding of HIV-1 integrase to its substrate DNA an inhibited an integrase deletion mutant containing only amino acids 50-212, indicating that nucleotides bind to the enzyme catalytic core. Consisently, the choice of nucleophile in the 3'-processing reaction was blocked to the same extent regardless of the nucleotide used (water, glycerol, or the viral DNA hydroxyl) by the enzyme. These observations suggest new strategies for antiviral drug development that could be based on nucleotide analogues as inhibitors of HIV-1 integrase.

Antiviral Agents↗

Activation of retinoid receptors RAR alpha and RXR alpha induces differentiation and apoptosis, respectively, in HL-60 cells.

Induction of granulocytic differentiation in HL-60 myeloid leukemia cells by retinoids is followed by their death via apoptosis. Retinoids are known to mediate their biological effects through at least two distinct types of nuclear receptors, the retinoic acid receptors and retinoid X receptors. We undertook to characterize the potential role of these receptors in inducing differentiation and apoptosis by retinoids. For this, we used a previously described variant of an HL-60 cell line (HL-60R) in which retinoid receptor function has been abrogated due to a trans-dominant negative mutation. Retroviral vector-mediated gene transfer was used to introduce the normal retinoic acid receptor (RAR alpha) or retinoid X receptor (RXR alpha) into HL-60R cells. Our results suggest that ligand-induced activation of RAR alpha is sufficient to induce differentiation in HL-60 cells, whereas activation of RXR alpha can induce direct apoptosis of these cells without their prior commitment to differentiate.

ADP-ribosyl Cyclase↗

Degradation of lamin B1 precedes oligonucleosomal DNA fragmentation in apoptotic thymocytes and isolated thymocyte nuclei.

Chromatin condensation and nuclear envelope breakdown are characteristic features of apoptotic cell death, but the mechanisms underlying these phenomena have not been identified. Solubilization of nuclear lamin is responsible for both events in mitosis. In this work, we report that glucocorticoids stimulate rapid degradation of lamin B1 that occurs before oligonucleosomal DNA fragmentation in apoptotic thymocytes. Protease inhibitors and the Ca2+ buffering agent BAPTA-AM block lamin degradation and DNA fragmentation, indicating that the processes are regulated by similar or identical mechanisms. Incubation of isolated thymocyte nuclei with Ca2+ stimulates lamin degradation before the detection of oligonucleosomal DNA fragments. However, in contrast to lamin dissolution during mitosis and some other forms of apoptosis, glucocorticoid-induced degradation of lamin B1 in thymocytes is not accompanied by dephosphorylation-mediated activation of cdc2. Our results demonstrate that lamin degradation is an early feature of apoptosis in thymocytes and suggest that chromatin condensation and breakdown of the nuclear envelope may occur as a result of disruption of nuclear lamina architecture.

Animals↗

3'-Hydroxyesorubicin halogenated at C-2'.

New 3'-deamino-3'-hydroxy-2'-iodoesorubicin analogues were synthesized using optically active 4,6-dideoxyhex-1-enitol (7) as starting material. Direct coupling of daunomycinone (8) and 14-O-tert-butyldimethylsilyladriamycinone (9) with glycal 7 in the presence of N-iodosuccinimide gave 2'-iodo analogues 10 and 12. Deprotection of compounds 10 and 12 led to compounds 11 and 14, the 2'-iodinated, fully unblocked 4'-deoxy-3'-hydroxy congeners of daunorubicin (2) and doxorubicin (1). 2'-Iodo-3'-hydroxyesorubicin (14) showed cytotoxic activity similar to that of doxorubicin in vitro and higher antitumor activity against L-1210 leukemia than doxorubicin in vivo.

Animals↗

3'-Hydroxyesorubicin. Synthesis and antitumor activity.

A novel route to 4'-deoxy anthracycline analogues has been developed starting from previously unavailable, optically active 4,6-dideoxy-hex-1-enitol 9. Coupling of daunomycinone (11) or 14-O-tert-butyldimethylsilyladriamycinone (12) with glycosyl chloride 10 in Koenigs-Knorr condition gave mainly alpha anomers, which were successfully deblocked to final 3'-deamino-4'-deoxy-3'-hydroxydaunorubicin (7) and 3'-deamino-3'-hydroxyesorubicin (8). Analogues were evaluated in vitro against P388 and L1210 leukemia and M5076 cells and in vivo against P388 leukemia. Compared with doxorubicin (1), 3'-hydroxyesorubicin (8) showed in vitro similar cytotoxic potential and in vivo higher antitumor activity.

Animals↗