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S Fleury

Publications and source records attributed to S Fleury.

12 recordsLinked to original sources

Analysis of the contact sites on the CD4 molecule with class II MHC molecule: co-ligand versus co-receptor function.

The CD4 molecule interacts with the alpha2 and beta2 domains of the MHC class II molecules. However, the class II contact sites on CD4 are less clear. Involvement of different regions throughout D1, D2, and D3 domains have been suggested. To further delineate the class II MHC contact sites on CD4, a crystal structure-informed mutagenesis was performed. Alanine scan mutants were generated for exposed residues located throughout D1 and the FG loop of D2, and in the "hinge-like" region, a short and flexible region between D2 and D3. Mutants were tested in a co-ligand (Dd stimulation) and a co-receptor (staphylococcal enterotoxin B stimulation) assay. In the co-ligand assay, TCR and CD4 interact with two distinct ligands (Dd or HLA-DR), while in the co-receptor assay both molecules interact with the same ligand, namely HLA-DR. Results show that residues from both lateral faces of D1 and the FG loop of D2 are implicated in interaction with class II, although a bigger surface of CD4 was involved in co-receptor compared with co-ligand function. The potential involvement of residues on both the top and two side faces of CD4 is consistent with a bivalent model, which involves the interaction between a single CD4 and two class II molecules. Alternatively, our results can be interpreted with a model of a specifically organized CD4 and/or class II oligomerization event. Finally, results from the hinge region mutants revealed a very important role in maintaining the overall structural integrity of CD4, its topology, and function.

CD4 Antigens

Mutations in human CD4 impair the functional interaction with different human and mouse class II isotypes and alleles.

The structure-function of the CD4-class II MHC interaction was investigated. Two functional assays were used to assess the responses of the 3DT52.5.8 murine T cell hybridoma expressing human CD4 (h-CD4) or murine CD4 (m-CD4). First, we determined the responses of the CD4+ and CD4-effector cells toward DAP-3 cells co-expressing the cognate alloantigen H-2Dd together with several human (DRw52b, DR4-Dw4, DR2A, and DPw2) and murine (I-Ab, I-Ak, IA alpha b I-A beta k and I-Ek) class II alleles and isotypes. We found that h-CD4 and m-CD4 strongly enhance the T cell response to H-2Dd, demonstrating that interspecies CD4/class II interactions occur efficiently. Furthermore, mutations in h-CD4 at positions 19, 89, and 165 markedly reduced the interaction with both human class II and mouse class II, indicating that the structural features of this cross-species interaction are strongly conserved. This was further supported by the finding that a h-CD4 deletion mutant (deletion F43-S49) interacted with both human and murine class II. Moreover, as 3DT cells express the responsive V beta element for the bacterial superantigen staphylococcal enterotoxin B, a co-receptor assay was conducted. DAP-3 cells expressing only class II molecules were used as APCs to present staphylococcal enterotoxin B to h-CD4+ and m-CD4+ T cells. h-CD4 and m-CD4 were able to enhance the T cell response to staphylococcal enterotoxin B, further demonstrating the conservation of the CD4-class II MHC interaction.

Alleles

HLA-DR polymorphism affects the interaction with CD4.

Major histocompatibility complex (MHC) class II molecules are highly polymorphic and bind peptides for presentation to CD4+ T cells. Functional and adhesion assays have shown that CD4 interacts with MHC class II molecules, leading to enhanced responses of CD4+ T cells after the activation of the CD4-associated tyrosine kinase p56lck. We have addressed the possible contribution of allelic polymorphism in the interaction between CD4 and MHC class II molecules. Using mouse DAP-3-transfected cells expressing different isotypes and allelic forms of the HLA-DR molecule, we have shown in a functional assay that a hierarchy exists in the ability of class II molecules to interact with CD4. Also, the study of DR4 subtypes minimized the potential contribution of polymorphic residues of the peptide-binding groove in the interaction with CD4. Chimeras between the DR4 or DR1 molecules, which interact efficiently with CD4, and DRw53, which interacts poorly, allowed the mapping of polymorphic residues between positions beta 180 and 189 that can exert a dramatic influence on the interaction with CD4.

Alleles

[Inequities in health policies: the Latin American case].

Four points relating to the iniquities of the health services are brought out. In the first, the economic crisis the region has been going through during recent decades, is discussed and the contention that the tendency to an overall improvement of the living conditions has not been deeply affected by this crisis is questioned. In the second the characteristics of the Latin-American process of development, marked by the deepening of the iniquities is examined. In the third an analysis of the pattern of social protection in the region is presented and in the last two polar models for the reformation of this pattern are discussed.

Financing, Government

Mutational analysis of the interaction between CD4 and class II MHC: class II antigens contact CD4 on a surface opposite the gp120-binding site.

Using functional and adhesion assays, we have studied the ability of 30 human CD4 mutants to interact with class II major histocompatibility complex (MHC) molecules and also with gp120 from human immunodeficiency virus. The mutants cover the four domains (D1-D4) of CD4 and include several single-site substitutions. Analysis of the results, in the context of the CD4 crystal structure, shows that mutations that affect the interaction with class II MHC molecules are located on three exposed loops from CD4 domains 1 and 2. The specifically implicated residues, 19, 89, and 165, are separated from one another by 9 A, 24 A, and 24 A on one face of the CD4 molecule. Moreover, the class II binding site does not include residues 43 to 49 of the CD4 molecule, a region on an opposite face known to be involved in the binding of gp120.

Antibodies, Monoclonal

The MHC-binding and gp120-binding functions of CD4 are separable.

CD4 is a cell surface glycoprotein that is thought to interact with nonpolymorphic determinants of class II major histocompatibility (MHC) molecules. CD4 is also the receptor for the human immunodeficiency virus (HIV), binding with high affinity to the HIV-1 envelope glycoprotein, gp120. Homolog-scanning mutagenesis was used to identify CD4 regions that are important in class II MHC binding and to determine whether the gp120 and class II MHC binding sites of CD4 are related. Class II MHC binding was abolished by mutations in each of the first three immunoglobulin-like domains of CD4. The gp120 binding could be abolished without affecting class II MHC binding and vice versa, although at least one mutation examined reduced both functions significantly. These findings indicate that, while there may be overlap between the gp120 and class II MHC binding sites of CD4, these sites are distinct and can be separated. Thus it should be possible to design CD4 analogs that can block HIV infectivity but intrinsically lack the ability to affect the normal immune response by binding to class II MHC molecules.

Amino Acid Sequence

A positive signal is transduced via surface CD4 molecules.

We have previously reported on the identification of a monoclonal antibody (mAb) directed against the human CD4 antigen which is capable of activating CD4+ peripheral blood T cells in the absence of other stimuli. In the present study, we extended these findings by demonstrating that the mAb, termed B66, was able to induce the production of interleukin-2 in murine T-cell hybridoma transfectants expressing the human CD4 glycoprotein. Moreover, we found that incubation of Jurkat cells with mAb B66 resulted in the nearly complete disappearance of both CD4 and CD3 from the cell surface, whereas modulation of CD4, but not CD3, was observed after incubation with a non-stimulatory anti-CD4 mAb. Similar results were obtained in modulation experiments using human CD4-expressing murine transfectants. It is thus conceivable that the stimulatory activity of anti-CD4 mAb B66 may be associated with an effect on the CD3 molecular complex. While the biochemical basis for the unique stimulatory activity of mAb B66 has yet to be defined, these findings provide direct evidence that cross-linking of CD4 alone may cause T-cell activation, thus supporting the notion that this glycoprotein can transduce independent positive signals upon binding to class II major histocompatibility complex molecules.

Antibodies, Monoclonal

Analysis of some functions of maternal and cord blood lymphocytes.

Various immunological investigations were performed on lymphocytes from pregnant women at the time of delivery and on cord blood cells. The results thus obtained show that: -- An appreciable number of in vitro responses to various antigens is observed among the cord blood specimens. They correlate with a corresponding positive test with the maternal blood. -- The stimulability of maternal lymphocytes to PHA and Con-A is within normal limits, whereas cord blood lymphocytes respond poorly to these two mitogens. -- The percentage of rosette forming T cells is very low in the cord blood and normal in maternal blood. -- The MLC in maternal-cord blood co-cultured show a significant inhibitory effect due to cord blood cells distinct from maternal cells. -- Cord blood lymphocytes show a normal capacity to elaborate the two lymphocytes LIF and LMF. On the other hand, the capacity of maternal lymphocytes to synthetize LMF seems to be strongly impaired. -- An inhibitory factor for PHA-stimulated mitogenic response is present in maternal serum whereas it is absent in the cord serum. -- Maternal serum IgG is significantly decreased when compared to that of normal controls. The values for IgM, IgA and IgE are within normal ranges. The cord blood IgG is slightly higher than that of the mothers. The values for IgM, IgA and IgE are very low and irregularly present.

Female