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A Hosmalin

Publications and source records attributed to A Hosmalin.

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CTLs from lymphoid organs recognize an optimal HLA-A2-restricted and HLA-B52-restricted nonapeptide and several epitopes in the C-terminal region of HIV-1 Nef.

In a previous analysis of HIV-1-specific CTLs in lymphoid organs from HIV-seropositive patients, we reported high frequencies of in vivo differentiated CTLs directed against two immunodominant regions in the central and in the C-terminal part of the HIV-1 Nef protein. The present study analyzes the epitopes recognized by CTLs in the carboxyl terminus of Nef (amino acids 182-205). In addition to several epitopes that are recognized in association with different HLA molecules (A1, A2, A25(10), B35, B52), we defined an optimal nonapeptide (190-198). This nonapeptide was recognized by CTLs down to nanomolar concentrations in the context of at least two HLA molecules, HLA-B52 and HLA-A2, including three HLA-A2 subtypes: HLA-A2.1, -A2.2, and -A2.4. We also determined the relative frequencies of effector CTLs directed against peptide 190-198 to be as high as 10(-4), as opposed to lower frequencies ranging between 5 x 10(-5) and 5 x 10(-6) observed for the other peptides recognized in the same region, thus confirming the optimal presentation of this nonapeptide in vivo. Molecular modeling of the interactions between HLA-A2.1 and Nef peptide 190-198 suggests the formation of a stable complex and allowed us to study sequence motifs that are important for the binding of the HIV-1 peptide in the pockets of the HLA-A2.1 molecule.

Base Sequence

[Dendritic cells].

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Dendritic Cells

Infection frequency of dendritic cells and CD4+ T lymphocytes in spleens of human immunodeficiency virus-positive patients.

Dendritic cells (DC) are specialized antigen-presenting leukocytes that are responsible for the activation of naive as well as memory T lymphocytes. If infected by human immunodeficiency virus (HIV), DC may transfer virus to CD4+ lymphocytes. However, the question of whether DC are infected in vivo is controversial. As HIV infection is more active in secondary lymphoid organs than in blood, infection of splenic DC isolated from HIV-seropositive patients was investigated. Splenic DC were first enriched and characterized by flow cytometry from HIV- donors. After direct isolation, they were negative for monocyte and T- and B-lymphocyte markers, negative for CD1a, but positive for major histocompatibility complex class II and CD4. After in vitro maturation, major histocompatibility complex class II expression increased, while CD4 expression was lost. Extensive purification from the spleens of seven HIV+ patients was performed by fluorescence-activated cell sorting. The frequency of cells harboring HIV DNA in purified populations was quantified by limiting-dilution PCR. Directly isolated DC (average, 1/3,000; range, 1/720 to 1/18,000) were in each patient 10 to 100 times less infected than CD4+ T lymphocytes (average, 1/52; range, 1/17 to 1/190). On average, 1/1,450 (1/320 to 1/6,100) unseparated mononuclear splenocytes (containing 5% CD4+ lymphocytes) harbored HIV DNA. In conclusion, in these HIV+ patient spleens, DC seem to be infected, but HIV-DNA positive CD4+ T lymphocytes accounted for the vast majority of infected mononuclear splenocytes.

CD4-Positive T-Lymphocytes

Immunization with soluble protein-pulsed spleen cells induces class I-restricted cytotoxic T lymphocytes that recognize immunodominant epitopic peptides from Plasmodium falciparum and HIV-1.

CTL lines specific for two different proteins derived from the human pathogens, Plasmodium falciparum (malaria) circumsporozoite protein and HIV-1 reverse transcriptase, were obtained by immunizing mice with protein-pulsed syngeneic spleen cells. The lysis of the target cells was dependent on a class I MHC molecule and the accessory molecule CD8. Immunodominant epitopic peptides were identified previously in the two proteins using murine CTL derived after immunization with recombinant virus or sporozoites, or using CTL from HIV-1-infected patients. These peptides were also recognized by the CTL lines obtained after protein-pulsed spleen-cell immunization. A new CTL antigenic determinant was localized in HIV-1 reverse transcriptase to residues 514 to 528, a sequence that, if folded as an alpha-helix, would be strongly amphipathic. The determinant was tentatively narrowed, using overlapping peptides, to a core of at least nine residues, 515 to 523. This site was also recognized by CTL obtained by the two different methods of immunization. Therefore, extracellular proteins incubated with spleen cells can be processed and presented in vivo in the same way as intracellular proteins, resulting in recognition of the same epitopes in association with the same class I MHC molecules. The potential implications for vaccine development and for the understanding of class I-restricted Ag presentation are discussed.

Amino Acid Sequence

Priming with T helper cell epitope peptides enhances the antibody response to the envelope glycoprotein of HIV-1 in primates.

The induction of a memory immune response to HIV, mediated by any kind of effector mechanism, requires the induction of T cell help. In previous studies performed in different murine MHC haplotypes, three immunodominant T cell epitopes (T1, T2, and TH4.1) had been identified in the HIV envelope glycoprotein. Moreover, these peptides were proliferative T cell epitopes in humans. In this study, rhesus monkeys, Macaca mulatta, were primed with these three peptides either in combination or given separately. Half of the monkeys had a proliferative response to one or more of the priming peptide(s). Those monkeys who had a T cell proliferative response also had a high antibody response after one boost with a suboptimal dose of the native protein gp 160, whereas three of four control monkeys who had received only the native protein immunization gave no detectable antibody response, and one displayed a very weak response. For reasons that are unclear, antibodies only to the gp41 portion of gp 160 could be detected in the sera. Thus, the peptides can prime Th cells in primates for an enhanced antibody response on first exposure to the whole protein. The three peptides belong to highly conserved and nonglycosylated regions of the envelope protein. The fact that the peptides acted as immunogenic T cell proliferative and helper epitopes in nonhuman primates is very encouraging for including them in future vaccine studies in humans.

Amino Acid Sequence

Human immunodeficiency virus reverse transcriptase T helper epitopes identified in mice and humans: correlation with a cytotoxic T cell epitope.

T cell immunity may be critical to development of a vaccine for human immunodeficiency virus (HIV-1). T helper epitopes were identified in three predominantly conserved regions in the HIV-1 reverse transcriptase by using reverse transcriptase-immunized mice of five major histocompatibility complex haplotypes. One peptide (residues 38-52) that stimulated H-2k T cells also contained an epitope recognized by cytotoxic T cells from the same mice and from HIV-infected patients. Such concordance between helper and cytotoxic T lymphocyte epitopes, observed in four cases, may be important in vaccine development. Peptide 36-52 was recognized by interleukin-2-producing peripheral blood T cells from 9 of 17 HIV-seropositive humans studied, of multiple human leukocyte antigen-DR and -DQ types. The broad recognition of this peptide by both helper and cytotoxic T cells substantiates its potential importance in a vaccine.

Adult

An epitope in human immunodeficiency virus 1 reverse transcriptase recognized by both mouse and human cytotoxic T lymphocytes.

T-cell-mediated cytotoxicity may play an important role in control of infection by the human immunodeficiency virus (HIV). In this study, we have identified and characterized a relatively conserved epitope in the HIV-1 reverse transcriptase recognized by murine and human cytotoxic T cells. This epitope was identified using a murine antigen-specific CD8+ class I major histocompatibility complex-restricted cytotoxic T-cell (CTL) line, a transfected fibroblast cell line expressing the HIV-1 pol gene, recombinant vaccinia viruses containing different truncated versions of the pol gene, and overlapping synthetic peptides. The optimal antigenic site was identified as residues 203-219 by synthesizing extended or truncated peptide analogs of the antigenic fragment. The optimal peptide was then tested for sensitization of autologous Epstein-Barr virus-transformed B-cell targets for killing by fresh human peripheral blood mononuclear cells. It was recognized by CTLs from several HIV-seropositive patients but not from any seronegative donor. Therefore, this peptide is a good candidate for inclusion in an AIDS vaccine. This study demonstrates that the same CTL epitope can be seen by murine and human CD8+ CTLs, as previously demonstrated for epitopes recognized by CD4+ helper T cells, and suggests the utility of screening for immunodominant CTL epitopes in mice prior to carrying out studies in humans.

Acquired Immunodeficiency Syndrome

Decrease in pyrogenicity of muramyl dipeptide after coupling with luteinizing hormone-releasing hormone.

Muramyl dipeptide (MDP) and its adjuvant active derivative lysine-MDP (Lys-MDP) have been demonstrated to be pyrogenic and to induce endogenous pyrogen (EP) production in vivo and in vitro. It has recently been shown that immunologic castration can be achieved in mice by immunization with luteinizing hormone-releasing hormone (LHRH) directly conjugated by carbodiimide to Lys-MDP, termed LHRH-Lys-MDP (cdi), or with a linear monomeric MDP-linked molecule obtained by total synthesis, termed LHRH-Lys-MDP (s). These preparations were tested in the rabbit for their capacity to induce fever and were found to be devoid of pyrogenicity at dosage levels of Lys-MDP that induced fever. This decrease of pyrogenicity of Lys-MDP after coupling to LHRH seems to be related to the structure of the conjugate because the derivative LHRH-LysNH2-MDP exhibited the same pyrogenic activity as the free glycopeptide. Surprisingly, nonpyrogenic LHRH-Lys-MDP induced production of EP and interleukin-1 (IL-1) in vitro and increased in vivo modifications of metal levels attributed to the action of IL-1. Moreover, LHRH-Lys-MDP reduced the pyrogenic effect of an exogenous dose of EP.

Acetylmuramyl-Alanyl-Isoglutamine

An immunodominant epitope of the human immunodeficiency virus envelope glycoprotein gp160 recognized by class I major histocompatibility complex molecule-restricted murine cytotoxic T lymphocytes.

Because cytotoxic T lymphocytes (CTL) may be important for preventing direct cell-to-cell transmission of human immunodeficiency virus (HIV), the agent responsible for acquired immunodeficiency syndrome, we have begun to investigate the epitope specificity and immune response (Ir) gene control of anti-HIV CTL responses in experimental animals. Mice were infected with a recombinant vaccinia virus expressing the HIV gp160 envelope gene, and the primed lymphocytes were restimulated in vitro with a transfected histocompatible cell line expressing the same gene. Our results show that H-2d mice are CTL high responders and H-2k mice are low responders to the HIV gp160 envelope protein under these conditions. Moreover, the H-2d mice respond predominantly to a single immunodominant site represented by a 15-residue synthetic peptide conforming to the amphipathic alpha-helix model of T-cell epitopes and seen by CD4- CD8+ CTL in association with the Dd class I major histocompatibility complex (MHC) molecules. The facts that CTL responses were detected in the context of only one of four class I MHC molecules tested and that the response was limited predominantly to a single epitope indicate that the CTL repertoire elicited by the HIV envelope protein in association with murine class I MHC molecules may be very limited. In addition, this epitope occurs in a highly variable segment of the envelope protein. This puts constraints on the use of a single peptide sequence from this region in a vaccine, as such a vaccine would have to be polyvalent. Nevertheless, this same variability suggests that this region may be under selective pressure from human CTL, and therefore that this site may be immunodominant in humans as well as mice and so of clinical importance in vaccine development.

Acquired Immunodeficiency Syndrome

Structural requirements for the induction of "immunological castration" by linear monomeric LHRH-lys-MDP administered in saline.

It was previously shown that "castration" could be obtained in male mice by immunizing them in saline with a conjugate referred to as LHRH-Lys-MDP and containing the decapeptide hypothalamic hormone LHRH covalently linked to the adjuvant glycopeptide MDP-Lys. Since coupling was made using carbodiimide, it could have produced oligomers or isomers as well as monomers. In the present investigation male and female mice were immunized in saline with a linear monomeric MDP linked LHRH molecule obtained by total synthesis. Histological studies showed gonadal alterations in both male and female mice. The study of analogs provided a correlation between the "castrative" activity of LHRH-Lys-MDP and its chemical and antigenic structures. However, because LHRH antibody levels were not very high, mechanisms other than antibody response are discussed. Such totally synthesized molecules including a safe adjuvant could make a clinical use of LHRH immunization possible in endocrine-dependent cancers.

Acetylmuramyl-Alanyl-Isoglutamine

Synthesis of conjugates between luteinizing hormone releasing hormone (LH-RH) and N-acetyl-muramyl-L-alanyl-D-isoglutamine (MDP) models of totally synthetic vaccines.

Two glycopeptides associating the aminoacid sequence of LH-RH with MDP were prepared, using a Lys residue as a linker. These conjugates, N alpha MDP N epsilon (LH-RH)-Lys and N alpha MDP N epsilon (LH-RH)-Lys-NH2 obtained by condensation of fragments were synthesized by liquid as well as solid phase methods. Both compounds were able to induce anti LH-RH antibodies and immunological castration. They retained the immuno-adjuvant activity of MDP. Such antigen-adjuvant constructs, devoid of carrier and obtained by chemically defined and reproducible synthetic methods could offer suitable tools for structure-activity relationship studies aiming at defining synthetic vaccines.

Acetylmuramyl-Alanyl-Isoglutamine