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Biomedical subjects

S Shigeta

Publications and source records attributed to S Shigeta.

At least 55 records · Page 3Linked to original sources

Acridone derivatives are selective inhibitors of HIV-1 replication in chronically infected cells.

In our extensive screening of anti-HIV-1 agents in chronically infected cell lines, we have found acridone derivatives to be selective inhibitors of HIV-1 replication. Among the acridone derivatives, 1-hydroxy-10-methyl-9,10-dihydroacrid-9-one (RD6-5071) suppressed tumor necrosis factor (TNF)-alpha-induced HIV-1 expression in the latently infected cell line OM-10.1, U1, and ACH-2. Its 50% effective concentration for HIV-1 p24 antigen production was 2.0 microg/ml in OM-10.1 cells, while its 50% cytotoxic concentration was 18 microg/ml. The compound also inhibited phorbol 12-myristate 13-acetate (PMA)-induced HIV-1 expression in these cell lines. Furthermore, RD6-5071 was inhibitory to HIV-1 replication in acutely infected U937 and peripheral blood mononuclear cells. The compound was found to suppress TNF-alpha-induced HIV-1 long terminal repeat-driven gene expression. An inhibition assay for protein kinase C (PKC) revealed that RD6-5071 could reduce the enzyme activity. Furthermore, the compound was a moderate inhibitor of PMA-induced nuclear factor kappaB (NF-kappaB) activation, as determined by a gel mobility shift analysis. These results suggest that the acridone derivatives suppress HIV-1 replication at the transcriptional level primarily through a mechanism of PKC inhibition.

Acridines↗

Antisense oligonucleotides directed against the viral RNA polymerase gene enhance survival of mice infected with influenza A.

We have investigated the ability of antisense phosphorothioate oligonucleotides to enhance the survival of mice infected with influenza A virus. The oligonucleotides were complementary to sequences surrounding the translation initiation codons of the viral PB2 or PA genes (PB2-as or PA-as, respectively) of the influenza A virus RNA polymerases. Intravenous administration of PB2-as in a complex with a cationic liposome, Tfx-10, significantly prolonged the mean survival time in days and increased overall survival rates of mice infected with the influenza A virus. Liposomally encapsulated PB2-as inhibited viral growth in lung tissues and reduced pulmonary consolidations. Liposomally encapsulated PB2-as could be an effective therapeutic agent against influenza A virus.

Animals↗

Efficacy of RD3-0028 aerosol treatment against respiratory syncytial virus infection in immunosuppressed mice.

RD3-0028, a benzodithiin compound, has antiviral activity against respiratory syncytial virus (RSV) in cell culture. We used a mouse model of RSV infection to determine the in vivo effect of RD3-0028. Cyclophosphamide (CYP)-treated, immunosuppressed mice were inoculated intranasally. The lungs of the mice were removed on day 4. The virus titers of the lungs of RD3-0028-treated mice were compared to the virus titers of the lungs of virus-inoculated, untreated control mice. In an effort to increase the therapeutic effectiveness of this compound, RD3-0028 was administered by aerosol to RSV-infected mice by using a head-exposure system. Aerosols generated from reservoirs containing RD3-0028 (7 mg/ml) administered for 2 h twice daily for 3 days significantly reduced the pulmonary titer of RSV-infected mice. It is clear that the minimal effective dose of RD3-0028 for RSV-infected mice is significantly less than that of ribavirin, the only compound currently available for use against RSV disease. Furthermore, the RD3-0028 aerosol administration appeared to protect the lungs of infected, CYP-treated mice against tissue damage, as evidenced by the preservation of the lung architecture and a reduction in pulmonary inflammatory infiltrates. RD3-0028 aerosol was not toxic for mice at the therapeutic dose. The present study demonstrates the effectiveness of aerosol administration of RD3-0028 for RSV-infected mice.

Aerosols↗

Human follicular dendritic cells remain uninfected and capture human immunodeficiency virus type 1 through CD54-CD11a interaction.

It has been reported that human immunodeficiency virus type 1 (HIV-1) bound to follicular dendritic cells (FDCs) remains highly infectious to CD4(+) T cells even when it forms immune complexes with neutralizing antibody (HIV-1/IC). To elucidate the role of FDCs in HIV-1 transmission to CD4(+) T cells in lymph nodes, we have isolated and purified FDCs from human tonsils and examined whether the HIV-1/IC trapped on their surface is infectious to CD4(+) T cells. To our surprise, not the HIV-1/IC but the antibody-free HIV-1 on FDCs could be transmitted to CD4(+) T cells. Furthermore, in contrast to previous studies showing that FDCs are productively infected with HIV-1, the present study clearly demonstrated that FDCs were not the target cells for HIV-1 infection. FDCs could capture the viral particles on their surface; however, the binding of HIV-1 to FDCs was strongly inhibited by the presence of anti-CD54 (ICAM-1) monoclonal antibody (MAb) and anti-CD11a (LFA-1) MAb, suggesting that the adhesion molecules play an important role in the interaction between HIV-1 and FDCs.

CD4-Positive T-Lymphocytes↗

Inhibition of human immunodeficiency virus replication by RD6-Y664, a novel benzylhydroxylamine derivative.

We have examined novel benzylhydroxylamine derivatives for their inhibitory effects on the replication of human immunodeficiency virus (HIV) in cell cultures. Among the series, O-(2-chloro-6-fluorobenzyl)hydroxylamine (RD6-Y664) was found to be the most potent inhibitor of HIV-1. The EC50 for HIV-1 strain IIIB was 1.6 micrograms/ml with a selectivity index greater than 38 in MT-4 cells. It also inhibited the replication of other HIV strains including a non-nucleoside reverse transcriptase (RT) inhibitor-resistant mutant, a nucleoside RT inhibitor-resistant mutant and HIV-2, in acutely infected cells. However, the compound did not affect HIV-1 production in chronically infected cells. A time-of-addition experiment and detection of proviral DNA synthesis suggested that RD6-Y664 targeted an early step of the viral replication cycle, presumably a process prior to reverse transcription. In fact, an assay for HIV-1 RT revealed that the compound did not suppress enzyme activity. Furthermore, RD6-Y664 did not show any inhibition of gp120-CD4 interaction, or binding of anti-CXCR4 antibody to CXCR4.

Anti-HIV Agents↗

Mouse model of respiratory syncytial virus infection to evaluate antiviral activity in vivo.

In this study, we have developed a practical mouse model for evaluating in vivo the antiviral activity of compounds against respiratory syncytial virus (RSV) infection. BALB/c mice are not particularly susceptible to RSV infection; however, infection rates were improved by pretreatment with the immunosuppressive agent cyclophosphamide (CYP). When mice were inoculated intranasally with RSV A2 strain, the pulmonary RSV titres of CYP-pretreated 10-week-old mice were higher than those of untreated 10-week-old and 28-week-old mice, peaking on days 4 and 5 post-infection. Sections of lung from RSV-infected mice pretreated with CYP, taken on day 4 post-inoculation, showed widespread evidence of interstitial pneumonia and other significant pathological changes. We also confirmed that ribavirin, a representative antiviral agent, significantly reduced the pulmonary RSV titres of mice pretreated with CYP when administered intraperitoneally.

Animals↗

Anti-herpesvirus activities and cytotoxicities of 2-thiopyrimidine nucleoside analogues in vitro.

Twenty 2-thiopyrimidine nucleoside analogues were synthesized and examined for inhibitory activity against herpes simplex virus (HSV) type 1 and 2, varicella-zoster virus (VZV), human cytomegalovirus (HCMV) and thymidine kinase-deficient HSV (HSV-TK-) replication in vitro. 2-thiouracil (thymine) arabinoside, 2'-deoxy-2-thiouridine (or 2-thiothymidine) and their 5-halogenated derivatives showed anti-HSV activity in both RPM18226 (human B-lymphoblastoid cells) and MRC-5 (human embryo lung cells). 2'-deoxy-5-halogenated-2-thiocytidines were also inhibitory against HSV, whereas 2-thiocytosine arabinoside and its derivatives were not inhibitory against HSV replication, except 5-bromo and 5-iodo congeners (TN-31, TN-32). Substitution of the halogen atom at the 5-position of the pyrimidine rings to an atom with a higher molecular weight increased anti-HSV and VZV activities, except for the anti-HSV activity of 2-thiouracil arabinosides. 2'-deoxy-5-methyl-, and 2'-deoxy-5-iodo-2-thiouridines (TN-17, TN-44) showed the most potent anti-HSV activity, and 2'-deoxy-5-chloro- and 2'-deoxy-5-bromo-2-thiocytidines were potent inhibitors of VZV replication. However, none of the compounds inhibited HCMV and HSV-TK- replication. TN-31 and TN-32 were shown to inhibited HCMV and HSV-TK- as well as HSV and VZV replication. The cytotoxicity of the 2-thio-pyrimidine nucleoside analogues was less than that of the 2-oxy-congeners of the compounds (5-iodo-2'-deoxyuridine, 5-iodo-2'-deoxycytidine, thymine arabinoside and cytosine arabinoside). The selectivity index of 2'-deoxy-5-iodo-2-thiouridine (TN-44) was higher than that of 5-iodo-deoxyuridine. TN-17 and TN-44 were not cytotoxic to resting or stimulated human peripheral blood mononuclear cells at 400 microM, although TN-32 was cytotoxic at a concentration of 20 microM.

Antiviral Agents↗

Characterization of human immunodeficiency virus type 1 strains resistant to the non-nucleoside reverse transcriptase inhibitor RD4-2217.

The non-nucleoside reverse transcriptase (RT) inhibitor RD4-2217 is a thiadiazole derivative that has proved to be a highly potent and selective inhibitor of human immunodeficiency virus type 1 (HIV-1) replication in vitro. In this study we examined genotypic and phenotypic characteristics of RD4-2217-resistant mutants that have been obtained by serial passage of HIV-1 in MT-4 cells in the presence of increasing concentrations (0.05, 0.25, 1 and 10 microM) of the compound. The strains obtained, III(B/2217RE/0.05) and III(B/2217RE/0.25,) were two- and 15-fold resistant to RD4-2217, respectively, whereas III(B/2217RE/1) and III(B/2217RE/10) displayed 161- and >238-fold resistance, respectively. Both III(B/2217RE/1) and III(B/2217RE/10) had two amino acid substitutions, V1891 and T2401, in the RT. Furthermore, RD4-2217 did not inhibit the replication of an HIV-1 molecular clone, which had the same mutation, at concentrations up to 10 microM, indicating that the V1891 plus T2401 mutation confers high-level resistance to RD4-2217. Interestingly, the replicability of III(B2217RE/1) and III(B/2217RE/10) appeared to be lower than that of wildtype III(B) in MT-4 cells, suggesting that the V1891 plus T2401 mutation may impair the enzymatic activity of HIV-1 RT.

Anti-HIV Agents↗

Nucleosides and nucleotides. 186. Synthesis and biological activities of pyrimidine carbocyclic nucleosides with a hydroxyamino group instead of a hydroxymethyl group at the 4'-position of the sugar moiety.

Pyrimidine carbocyclic nucleosides with a hydroxyamino group instead of a hydroxymethyl group at the 4'-position of the sugar moiety were designed as potential antitumor and/or antiviral agents. Pd (O)-catalyzed reactions of enantiomerically pure (+)-(1R,4S)-4-[(tert-butyldiphenylsilyl)oxy]-1-(ethoxycarbonylo xy)-2- cyclopentene (9) with N3-benzoylthymine and -uracil gave carbocyclic nucleosides 10 and 11. Subsequent Pd (O)-catalyzed reactions of N3-benzoyl-1-[(1R,4S)-4-(ethoxycarbonyloxy)-2-cyclopenten-1- yl]thymine (14) and -uracil (15) with O-benzylhydroxylamine smoothly gave the hydroxyamino-substituted carbocyclic nucleosides 16 and 17. From these nucleosides, the target compounds were prepared after deprotection or further reactions. The 2',3'-didehydro-2',3'-dideoxythymidine (D4T) analogue 20 was the most effective compound, with IC50 values of 27.3 and 34.5 microM against KB and L1210 cells in vitro. Carbocyclic analogues of uridine and cytidine (29 and 32) were less effective than 20 against both cell lines.

Animals↗

Recent progress in anti-influenza chemotherapy.

Influenza virus infections in high risk individuals, such as infants, the elderly, and patients with cardiopulmonary disorders or immunocompromised states, cause severe manifestations which often result in fatalities. The emergence of a new antigen type of influenza A virus (H5N1) in Hong Kong during 1997 and 1998 threatened a possible pandemic of a new influenza infection. The investigation for anti-influenza chemotherapies has progressed in the last decade whereas clinical trials of new compounds have been limited to amantadine, rimantadine and ribavirin. Fusion inhibitors which directly inhibit conformational change of haemagglutinin (HA), protease inhibitors which inhibit cleavage of HA to HA1 and HA2, RNA transcription inhibitors which inhibit cap formation of mRNA and antisense oligonucleotides targeted at mRNA of PB2 (a part of viral RNA polymerase) have been reported, in their development phases. Recently, 2 neuraminidase (NA) inhibitors, zanamivir and oseltamivir (GS 4104), were used in clinical trials for the treatment of patients with influenza. Both agents showed promising results. A polyoxometalate, PM-523, inhibits fusion between the virus envelope and cell membrane and inhibits the penetration of the virus into cells. This compound has shown potent anti-influenza activity and synergistic inhibitory activity in combination with ribavirin or zanamivir in vitro and in vivo. Resistant strains for zanamivir, oseltamivir or PM-523 have been isolated. The analysis of mutation points of these strains have contributed to the investigation of the antiviral mechanisms of action of these compounds and the mechanism of resistance of the mutants to these compounds.

Animals↗

[Comparative studies on activities of antimicrobial agents against causative organisms isolated from patients with urinary tract infections (1997). I. Susceptibility distribution].

The frequencies of isolation and susceptibilities to antimicrobial agents were investigated on 560 bacterial strains isolated from patients with urinary tract infections (UTIs) in 9 hospitals during the period of June 1997 to May 1998. Of the above bacterial isolates, Gram-positive bacteria accounted for 29.3% and a majority of them were Enterococcus faecalis. Gram-negative bacteria accounted for 70.7% and most of them were Escherichia coli. Susceptibilities of several isolated bacteria to antimicrobial agents were as followed; 1. Enterococcus faecalis Ampicillin (ABPC) showed the highest activity against E. faecalis isolated from patients with UTIs. Its MIC90 was 1 microgram/ml. Imipenem (IPM) and vancomycin (VCM) were also active with the MIC90s of 2 micrograms/ml. The others had low activities with the MIC90s of 16 micrograms/ml or above. 2. Staphylococcus aureus including MRSA VCM and arbekacin (ABK) showed the highest activities against both S. aureus and MRSA isolated from patients with UTIs. The MIC90s of them were 1 microgram/ml. The others except minocycline (MINO) had low activities with the MIC90s of 32 micrograms/ml or above. More than a half of S. aureus strains (including MRSA) showed high susceptibilities to gentamicin (GM) and MINO, the MIC50s of 0.25 microgram/ml or 0.5 microgram/ml. 3. Enterobacter cloacae IPM showed the highest activity against E. cloacae. The MICs for all strains were equal to or lower than 1 microgram/ml. The MIC90s of ciprofloxacin (CPFX) and tosufloxacin (TFLX) were 1 microgram/ml, the MIC90s of amikacin (AMK) and ofloxacin (OFLX) were 4 micrograms/ml, the MIC90 of GM was 16 micrograms/ml. Among E. cloacae strains, those with low susceptibilities to quinolones have decreased in 1997, compared with those in 1996. But the other drugs were not so active in 1997 as 1996. 4. Escherichia coli All drugs except penicillins were active against E. coli with the MIC90s of 8 micrograms/ml or below. Particularly, flomoxef (FMOX), cefmenoxime (CMX), cefpirome (CPR), cefozopran (CZOP), IPM, CPFX and TFLX showed the highest activities against E. coli with the MIC90s of 0.125 microgram/ml or below. 5. Klebsiella pneumoniae K. pneumoniae was susceptible to almost all the drugs except penicillins. Carumonam (CRMN) had the strongest activity with the MICs for all strains equal to or lower than 0.125 microgram/ml. FMOX, CPR, CZOP, CPFX and TFLX were also active with the MIC90s of 0.125 microgram/ml or below. The MIC90s of quinolones had changed into a better state in 1997, compared with those in 1996. 6. Proteus mirabilis Almost all the drugs except ABPC and MINO showed high activities against P. mirabilis. CMX, ceftazidime (CAZ), latamoxef (LMOX), CPR, cefixime (CFIX), cefpodoxime (CPDX) and CRMN showed the highest activities against P. mirabilis. The MICs of them for all strains were equal to or lower than 0.125 microgram/ml. CPFX and TFLX were also active with the MIC90s of 0.125 microgram/ml or below. 7. Pseudomonas aeruginosa The MIC90 of GM was 8 micrograms/ml, the MIC90s of AMK, IPM and meropenem (MEPM) were 16 micrograms/ml. The others were not so active against P. aeruginosa with the MIC90s of 32 micrograms/ml or above. The MIC90s of quinolones had changed into a lower state in 1997, compared with those in 1996. 8. Serratia marcescens IPM showed the highest activity against S. marcescens. Its MIC90 was 2 micrograms/ml. GM was also active with the MIC90 of 4 micrograms/ml. The MIC90s of the others were 16 micrograms/ml or above. The MIC50s of CRMN was 0.125 microgram/ml or below, the MIC50s of CPR and CZOP were 0.25 microgram/ml.

Anti-Bacterial Agents↗

[Comparative studies on activities of antimicrobial agents against causative organisms isolated from patients with urinary tract infections (1997). II. Background of patients].

Clinical background was investigated on patients with urinary tract infections (UTIs) from whom 603 bacterial strains were isolated in 9 hospitals during the period from June, 1997 through May, 1998. 1. Distribution of age and sex of patients and type of infections Among males, those with ages less than 50 years were only 12.5%, and those in the 70's were most frequent (33.3%). Among females, those with ages less than 20 years were only 3.4%, and those in the 60's were the most frequent (22.9%). With regard to type of infections, more than a half of infections among males with ages 50 years or older were of complicated types, but most of infections among females were of uncomplicated types, especially those of ages less than 50 years. 2. Ages of patients and types of pathogens Escherichia coli was the most frequently isolated in uncomplicated and complicated UTIs without indwelling catheters. In complicated UTIs with indwelling catheters, Pseudomonas aeruginosa and Enterococcus faecalis had mainly detected, they had no relationship with ages. 3. Effect of antibiotic use on isolation frequencies of pathogens Use of antibiotics decreased pathogens isolated from patients with uncomplicated UTIs drastically (183 isolates before antibiotics compared to 13 after). Even isolated pathogens from patients with complicated UTIs decreased drastically with the use of antibiotics when indwelling catheters were not in use (175 isolates before antibiotics compared to 53 after), but when indwelling catheters were in use, antibiotics slightly decreased (109 isolates before antibiotics compared to 70 after). 4. Surgical procedures and types of causative organisms for UTIs E. faecalis were more isolated when a surgical procedures were used, and E. coli were more isolated when, they were not used in uncomplicated and complicated UTIs without indwelling catheters. In complicated UTIs with indwelling catheters, E. coli and E. faecalis were more isolated when a surgical procedures were used, and P. aeruginosa and Staphylococcus aureus were more isolated when they were not used.

Adult↗

[The proliferative response and immunoglobulin production in peripheral blood lymphocytes stimulated with Japanese cedar pollen antigens].

Peripheral blood mononuclear cells taken from 38 normal subjects and 50 Japanese cedar pollinosis patients were cultured with or without mitogens or Japanese cedar pollen antigens to study the proliferative response and immunoglobulin production in periphral blood lymphocytes. When stimulated with Con A or anti-CD 40 mAb, the proliferative responses in the patient group were significantly higher than those in the normal group, and when stimulated with anti-CD 40 mAb, the IgG 2 production was markedly dominant among the IgE and IgG subclass productions in both groups. When stimulated with Japanese cedar pollen antigens, the proliferative responses in the patient group were markedly augmented in comparison with the normal group, and showed a correlation with the serum anti-cedar IgE antibody titers in the patient group. In regard to the immunoglobulin production in peripheral blood lymphocytes stimulated with Japanese cedar pollen antigens, the IgE productions in the patient group were significantly higher than those in the normal group, and showed a weak correlation with the serum anti-cedar IgE antibody titers in the patient group. The IgG productions were, however, slightly enhanced by the stimulation with Japanese cedar pollen antigens in both of the normal and patient groups. While it could not be clearly demonstrated which subclass of IgG was responsible for the enhancement of IgG production, there were some cases of relatively higher responses of IgG 2 or IgG 4 production. Though the IgG 4 productions in the patient group were significantly higher than those in normal group, there was no clear correlation with the serum anti-cedar IgE antibody titers in the patient group. On the other hand, it seems to be noteworthy that a weak negative correlation was recognized between the IgG 2 productions and the IgG 4 productions, and between the IgG 4 productions and the IgE productions. Considering these results in the present study, it was concluded to be difficult to identify a IgG 4 high responder in a course of clinical immunotherapy through the in vitro IgG 4 production or other related reactions as attempted in this study.

Adult↗

HLA-DQB1 locus and the development of atrophic gastritis with Helicobacter pylori infection.

Helicobacter pylori is known to be involved in digestive diseases such as peptic ulcer, atrophic gastritis, and gastric cancer. It is supposed that the incidence of these digestive diseases associated with H. pylori is influenced by the strain diversity of H. pylori, factors involving the host or environment, and the duration of infection. In this study, we directed our attention to HLA, a host factor, and investigated the relation between HLA-DQB1 genotype of H. pylori-infected patients and the development of atrophic gastritis. HLA-DQB1 genotyping was performed by the polymerase chain reaction-restriction fragment length polymorphism method on 122 H. pylori-infected patients with atrophic gastritis and 28 uninfected Japanese controls. Infected patients with developed atrophic gastritis were classified as the open type and those with undeveloped atrophic gastritis as the closed type. To estimate the grade of atrophic gastritis reliably, histological and serological evaluations were also undertaken. The allele frequency of DQB1*0401 was significantly higher in the open-type group compared to either the closed-type or the uninfected group. These results suggest that immunogenic factors play an important role in the development of atrophic gastritis in H. pylori-infected patients, and that DQB1*0401 is a useful marker for determining susceptibility to this disease.

Adolescent↗

Reverse transcriptase (RT)-independent as well as RT-dependent HIV-1 replication exists in syncytia following cell fusion.

We studied the role of reverse transcriptase (RT) in human immunodeficiency virus (HIV)-1 replication in syncytia following cell fusion. A chronically HIV-1-infected MOLT-4 (MOLT-4/IIIB) cells allow HIV-1 replication and induce syncytium formation between uninfected MOLT-4 cells. AZT (3'-azido-3'-deoxythymidine, 1 microM) inhibited neither HIV-1 replication in MOLT-4/IIIB cells nor the syncytium formation induced by concultivation of MOLT-4/IIIB cells with uninfected MOLT-4 cells. In the supernatant of the syncytium containing culture a remarkably higher titer of p24 antigen was produced than in that of MOLT/IIIB cell culture. AZT inhibited p24 antigen production by HIV-1 in the syncytia to levels to comparable to that in MOLT-4/IIIB cells which were treated with AZT. In addition, p24 production by HIV-1 in the syncytia formed by cocultivation of CL-2 cells, which are chronically infected with HIV-1 but lack functional RT, with uninfected MOLT-4 cells was not different from that in CL-2 cells alone. The results suggest that HIV-1 RT plays an important role in HIV-1 replication within the syncytia but an RT-independent replication process which is essential for syncytium formation also exists in the syncytia. These results indicate that not only RT inhibitors but also inhibitors of syncytium formation are essential for anti-HIV therapy.

Cell Line↗

Novel anti-respiratory syncytial(RS) viral compounds: benzodithiin derivatives.

Benzodithiin derivatives are highly potent and specific inhibitors of respiratory syncytial virus (RSV) replication in vitro. The most potent and selective congener of a benzodithiin derivative is 1,4-dihydro-2,3-benzodithiin(RD3-0028). According to the modified 3-(4,5-dimethylthiazole-2-yl) 2,5-diphenyl tetrazolium bromide (MTT) assay developed in our laboratories, this compound has a 50% effective concentration of 4.5 microM and a 50% cytotoxic concentration of 271.0 microM, which is superior to that of ribavirin. This compound also inhibits RSV strain subgroups A and B and clinical isolates. RD3-0028, however, does not inhibit the replication of influenza A virus, measles virus, herpes simplex virus types 1 and 2, or human cytomegalovirus. Two other benzodithiin derivatives [1,4-dihydro-6-methyl-2,3-benzodithiin (RD3-0270) and 1,4-dihydro-5-methyl-1-2,3-benzodithiin (RD3-0284)] also inhibit RSV replication at a selectivity index greater a factor of 20. These results suggest that the benzodithiin skeleton is an important structure for inhibitory activity against RSV replication.

Antiviral Agents↗

Expression of a hepatitis C virus NS3 protease-NS4A fusion protein in Escherichia coli.

Both the NS3 protease and the NS4A protein are required for efficient cleavage of the nonstructural protein region of the hepatitis C virus polyprotein. The NS3 protease domain was fused at its C-terminal end with full length NS4A and expressed in Escherichia coli. This protein (NS3 delta-NS4A) was purified to apparent homogeneity after refolding from extracts recovered from inclusion bodies. During the expression and purification process, NS3 delta-NS4A was not auto-processed in either a cis or trans manner at NS3/NS4A junction site. When the kcat/K(m) values and thermostability of NS3 delta-NS4A were compared with those for maltose binding protein-NS3 fusion protein (MBP-NS3), which contains only NS3 region, the single-chain NS3 delta-NS4A showed enhanced proteolytic activities and thermostability.

ATP-Binding Cassette Transporters↗