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Biomedical subjects

A Adachi

Publications and source records attributed to A Adachi.

At least 73 records · Page 4Linked to original sources

The cellular kinase binding motifs (PxxP and RR) in human immunodeficiency virus type 1 Nef protein are dispensable for producer-cell-dependent enhancement of viral entry.

We have recently demonstrated that human immunodeficiency virus type 1 (HIV-1) Nef is required for enhancing viral infectivity by increasing the efficiency of viral entry in a producer-cell-dependent manner, suggesting the possible involvement of a cellular factor(s) in the enhancement of viral entry. Moreover, it has been reported that a proline-rich (PxxP) motif and an Arg-Arg (RR) motif in HIV-1 Nef bind to the SH3 domain of the Src-family tyrosine kinase Hck and to a serine/threonine kinase, respectively. To address whether these cellular kinase binding motifs, PxxP and RR, could be involved in virus producer-cell-dependent enhancement of viral entry, we constructed two nef mutant proviral clones in which these motifs were mutated. The results show that the HIV-1 Nef PxxP motif, which significantly influenced viral infectivity, and the RR motif, which modestly affected viral infectivity, were both dispensable for enhanced viral entry, thus suggesting that another interaction of Nef with a cellular factor(s) is involved in the efficiency of viral entry.

Alanine↗

The relationship between ocular melatonin and dopamine rhythms in the pigeon: effects of melatonin inhibition on dopamine release.

Our previous study has shown that the phases of circadian rhythms of ocular melatonin and dopamine are always opposite and intraocular melatonin injection suppresses dopamine release. Therefore, it is possible that dopamine rhythms result from inhibitory action of melatonin. We have examined this possibility in the following experiments. In the first experiment effects of continuous light on melatonin and dopamine release were examined. The data indicated that continuous light exposure resulted in loss of circadian rhythmicity of melatonin and dopamine by suppressing melatonin and enhancing dopamine levels throughout the day. To further examine the effects of light in the second experiment, 2 h light pulse was applied during the night, then temporal changes of melatonin and dopamine release were studied. The light pulse rapidly suppressed melatonin release, whereas it rapidly increased dopamine release. These changes occurred within 30 min in both melatonin and dopamine. However, the recovery after the cessation of the light stimulus was slower in melatonin than dopamine. In the third experiment it was tested if dopamine release was increased by lowering melatonin release with an intraocular injection of the D2 agonist, quinpirol. Although quinpirol strongly inhibited melatonin release independently of the time of injection, dopamine did not always increase by the inhibition of melatonin. These results indicate that ocular dopamine rhythms are not simply produced by melatonin inhibitory action.

Animals↗

Effects of SIVmac infection on peripheral blood CD4+CD8+ T lymphocytes in cynomolgus macaques.

We have previously reported that CD4+CD8+ double-positive (DP) T cells with a resting memory phenotype exist in a substantial proportion of peripheral blood lymphocytes of adult cynomolgus macaques. In this study, we examined the effects of simian immunodeficiency virus of macaque (SIVmac) infection on DP T cells. In vitro, SIVmac239 nef-open (239) and its nef-deletion mutant replicated well in both CD4+CD8- and DP T cells. However, when the macaques were infected with 239, DP, but not CD4+CD8-, T cells were transiently increased in parallel with cell activation and viral replication, followed by depletion within 1 month postinfection. Interestingly, the nef gene was required for depletion but not for the increase and activation of DP T cells. These data suggest that the pathogenic SIV infection may downmodulate production and/or blood circulation of DP T cells by a Nef function-related mechanism(s) different from that for the depletion of CD4+CD8- T cells.

Animals↗

The role of polymorphonuclear leukocyte infiltration in herpes simplex virus infection of murine skin.

We undertook the present study to investigate the role of polymorphonuclear leukocytes (PMN) in defending skin against herpes simplex virus (HSV) infection. For this purpose, we established a mouse model of cutaneous HSV infection. The hind limb footpad skin of 4-week-old ICR mice was abraded linearly once with a feather edge file and infected with various strains of HSV with different virulence. In uninfected control mice, PMN appeared at the abraded skin lesion within 24 h, and were eliminated from the epidermis after 3 days. Mice inducted with a highly virulent strain of HSV demonstrated wide and severe erythematous lesions of the footpad skin and histologically, virus antigen-positive ballooning degenerated keratinocytes were observed. However, in infections with attenuated strains of HSV, the epidermis was regenerated and a viral antigen was discharged within 5 days, together with any infiltrated PMN. Macrophages and NK cells numbered less than PMN. In mice treated with anti-PMN antiserum before HSV infection, PMN infiltration was significantly suppressed 1 day after infection, and these animals developed a severe cutaneous disease even if infected with an attenuated virus. These results indicate the importance of PMN in the control of HSV cutaneous infections, especially in the primary infectious phase.

Animals↗

Comparison of an antiviral activity of recombinant consensus interferon with recombinant interferon-alpha-2b.

To avoid possible uncertainty in comparing biological activities of interferon samples from different sources where interferon concentrations were determined independently, we prepared chromatographically pure preparations of consensus interferon and interferon-alpha-2b (one of the two commercially available recombinant alpha interferons). We revealed that consensus interferon has a stronger antiviral activity than interferon-alpha-2b, although the effects of these two recombinant interferons on the cellular macromolecule synthesis are at similar levels.

Animals↗

Antiapoptotic activity of herpes simplex virus type 2: the role of US3 protein kinase gene.

In order to determine the ability of herpes simplex virus type 2 (HSV-2) to suppress apoptosis, we examined the effect of HSV-2 infection on apoptosis induced in HEp-2 cells by treatment with 1 M sorbitol. Although a wild-type strain of HSV-2 induced apoptosis in a significant fraction of the infected cells, HSV-2 could suppress sorbitol-induced apoptosis in a manner similar to that of herpes simplex virus type 1 (HSV-1), indicating that HSV-2, like HSV-1, has an antiapoptosis gene. Characterization of the cells infected with a US3-deletion mutant of HSV-2 revealed the necessity of a US3 gene in the antiapoptotic activity of this virus.

Apoptosis↗

Cell-dependent replication potentials of HIV-1 gag mutants.

An infectious molecular clone of human immunodeficiency virus type 1 (HIV-1), designated pNLaiKH, which is tropic for both lymphocytic and monocytic cells, was constructed. To study the early function of HIV-1 Gag proteins in two types of cells, the mutations known to give host cell-dependent early defects were introduced into pNLaiKH, and the replication potentials and defective replication sites in the cells of the resultant mutants were monitored. All mutants grew in some lymphocytic cells, but not at all in monocytic cells. A nucleocapsid mutant was found to be defective at an early replication phase in all the cell lines to various extent, as expected. In contrast, a matrix mutant and a capsid mutant displayed a replication defect in a producer-cell-dependent manner. These results demonstrated that complex interactions of cell factors and Gag proteins are involved in an early process of HIV-1 replication.

Cell Line↗

Compatibility of Vpu-like activity in the four groups of primate immunodeficiency viruses.

Env-minus mutants of the viruses of major four human and simian immunodeficiency viruses (HIVs and SIVs) were monitored for their progeny virion production upon transfection into the cells, which are dependent on the HIV-1 Vpu for efficient particle release. Of the env mutants of HIV-1 (one mutant), HIV-2/SIVmac (three mutants), SIVagm (one mutant), and SIVmnd (one mutant) examined, the mutant of SIVmnd generated a very low level of progeny virions similar to that by the HIV-1 Vpu-minus mutant. This effect of the mutation was not observed in the cells which are independent on the Vpu for virion release. The Env of SIVmnd efficiently enhanced virion release of heterologous viruses like the HIV-1 Vpu.

Animals↗

Inhibition of HIV/SIV replication by dominant negative Gag mutants.

There are several major strategies against HIV/AIDS. Of these, the gene therapy is a novel, challenging, and promising one. The target genes, which have been extensively studied for the potential gene therapy of HIV/AIDS, include those of cellular and viral origins. Especially, trans-dominant negative Tat, Rev, Env, Pol, and Gag mutants of HIV have currently attracted considerable attention. In this brief review, we summarize the nature of the HIV/SIV mutants of this category and discuss their future use for gene therapy with special reference to the dominant negative Gag mutants of HIV-1.

Genes, Dominant↗

Mutational analysis of human immunodeficiency virus type 1 vif gene.

Mutations were introduced into scattered regions of the HIV-1 vif gene. The twelve in-frame mutants generated were evaluated for the replication potentials in cells by transfection and infection experiments. All the mutants produced a normal level of progeny virions upon transfection, indicating the absence of the late function of HIV-1 Vif protein. The infectivity of virions obtained was monitored in H9 cells, which are non-permissive for HIV-1 without the Vif function. Most of the mutations in various parts of the vif gene, including those in the three conserved regions among HIV/SIV, abrogated the infectivity of the virus. In contrast, the cysteine residue at position 133, which was reported to be critical for viral infectivity, was found not to be essential. In addition, the C-terminal eight amino acid residues (185-192) in the Vif protein could be deleted with no effects on viral growth potential.

Gene Products, vif↗

Host cell-dependent replication of HIV-1 gag MA, CA, and NC mutants are independent of the functions of Vif and Vpu.

We have previously shown that some gag gene mutants of human immunodeficiency virus type 1 (HIV-1) display a replication-defect in a cell-dependent manner. We and others have also demonstrated that the requirement of vif and vpu genes for HIV-1 replication is cell-dependent. To determine whether the cell-dependent growth of the HIV-1 gag mutants is related to the functions of Vif and Vpu, double mutants of gag-vif and gag-vpu were constructed, and monitored for their replication in various cell lines. The results obtained showed that the mutations in gag do not affect the cell-dependent functions of Vif and Vpu.

Capsid↗

Exchangeability of accessory Vif and Vpu proteins between various HIV/SIVs (review).

Representative human and simian immunodeficiency viruses (HIV/SIVs) have been monitored for their Vif and Vpu activities in a wide variety of cells. In contrast to the prototype HIV-1, viruses of the other groups do not necessarily have these activities. Only HIV-2 and SIVmnd were clearly demonstrated to show the Vif and Vpu activities, respectively. The exchangeability of these accessory activities between viruses was then assessed to determine the relatedness of the viruses. Quite different from the results for Tat and Rev trans-activators, the activities are almost fully compatible between viruses. These results may facilitate the functional grouping of various HIV/SIVs.

Gene Products, vif↗

Rev-dependent expression of three species of HIV-1 mRNAs (review).

The expression of structural and accessory genes of human immunodeficiency virus type 1 (HIV-1) except for nef requires a viral regulatory protein Rev. Rev-dependency of the expression of structural (gag, pol and env), regulatory (tat and rev), and accessory genes (vif, vpr, vpu and nef) has been investigated by various systems, and it has been demonstrated that unspliced (encodes gag and pol) and singly-spliced (env-vpu, vif and vpr) viral mRNAs are differentially dependent on the function of Rev. In this review, the function of HIV-1 Rev in relation to these findings is discussed.

Gene Expression Regulation, Viral↗

Activation of HIV-1 enhancer sequence by vaccinia virus.

To investigate whether vaccinia virus (VV) can augment gene expression of human immunodeficiency virus type 1 (HIV-1), co-transfection experiments were carried out in which recombinant plasmids containing various portions of the HIV-1 long terminal repeat (LTR) linked to the chloramphenicol acetyltransferase (CAT) gene were transfected into cultured cells. A high level of enhancement in CAT activity directed by the HIV-1 LTRs containing the enhancer sequence was observed in cells infected with VV, as in the cells infected with type 1 herpes simplex virus (HSV-1). The sequence responsible for this augmentation of CAT activity was different from that recognized by HIV-1 Tat. These data clearly demonstrated that VV transactivates HIV-1 LTR through a mechanism distinct from that of activation by HIV-1 Tat.

Animals↗

Cell-dependent functional roles of HIV-1 Nef for virus replication (review).

The stage in the human immunodeficiency virus type 1 (HIV-1) replication cycle that is affected by Nef has been investigated. Nef is dispensable during the transcription to virion production step. In contrast, Nef is critical in the early phase of the virus replication cycle, from virion adsorption to integration. Furthermore, virions produced in the absence of Nef have been demonstrated to be inefficient to complete the virus DNA synthesis. When virions are produced in particular cells without Nef, they exhibit a severe defect in the virus entry process into cells. Taken together, it is concluded that HIV-1 Nef acts via modulation of viral particles to enhance virus infectivity in a cell-dependent manner.

Animals↗

Cell-dependent function of HIV-1 Vif for virus replication (Review).

It has been well established that the Vif protein of human immunodeficiency virus type 1 (HIV-1) acts late in the viral life cycle and increases the infectivity of the progeny virions in a producer cell-dependent manner. The virions produced in the absence of Vif in non-permissive cells (Delta Vif) are defective for a step(s) before and/or during reverse transcription. In this review, the functional and structural analyses of these virions including our new data are summarized.

Gene Products, vif↗

Influenza virus overcomes apoptosis by rapid multiplication.

The kinetics of apoptotic fragmentation of the chromosomal DNA was determined in the influenza virus-infected MDCK, HeLa and KB cells, respectively. Comparison of these kinetics with the kinetics of virus multiplication revealed that the multiplication of influenza virus was observed only when apoptosis was induced after the production of progeny virus in the infected cells. The extent of apoptotic response was reversely correlated with the permissiveness of the cells.

Animals↗

Prominent hyperkeratotic plantar and palmar warts.

We report the case of a 28-year-old man who had prominent hyperkeratotic plantar and palmar warts, and flat warts on his face and chest. By DNA hybridization, human papillomavirus 1 and/or 2, and 3 DNA were detected from the tissues of these skin lesions. Results of laboratory investigations revealed leukopenia, eosinophilia, anti-HBs antigen and anti-hepatitis C virus antibody, and decrease in the OKT4/OKT8 ratio. He had no abnormality in cellular immunity. He was treated with multiple modalities, but was successfully treated with electrocautery to the plantar and palmar warts, and cryotherapy with liquid nitrogen to the flat warts. Nine years after the initial treatment, almost no recurrence was recognized.

Adult↗