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Biomedical subjects

C de Santis

Publications and source records attributed to C de Santis.

3 recordsLinked to original sources

[Graves' disease].

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Antithyroid Agents↗

Role of HLA class I in HIV type 1-induced syncytium formation.

Neutralization of HIV-1 in vitro by anti-HLA class I antibodies suggests that class I molecules are involved in HIV-1 infection. HIV-infected cells can fuse with uninfected cells in a process that leads to the formation of multinucleated syncytia, involving an interaction between host and viral antigens expressed at the cell surfaces. We used a syncytium assay between the 8E5 cell line chronically infected with a pol-defective variant of LAV IIIb, and the CD4-positive cell line MOLT3, to study the role of HLA class I in HIV-1-induced cell fusion. By probing cells with a panel of anti-HLA monoclonal antibodies (MABs) we demonstrated that the fusion process is modulated specifically by C alleles of HLA class I expressed on uninfected cells but not by that on already infected cells. Addition of beta 2-microglobulin to the cocultures resulted in a dose-dependent enhancement in both the number and size of syncytia, whereas exogenous HLA-C-restricted peptides inhibited syncytium formation, implying that only certain conformational states of HLA class I are permissive for syncytium formation. Treatment of cocultures with HLA-Cw4-restricted peptides containing amino acid substitutions in the anchor residues showed that syncytium inhibition was dependent on conventional binding of the peptide inside the groove. The data indicate that HLA class I, in a conformation free of peptide but associated with beta 2-microglobulin, can directly influence virus-induced cell fusion.

Antibodies, Monoclonal↗

Human antibodies to immunodominant C5 region of HIV-1 gp120 cross-react with HLA class I on activated cells.

Cross-reactive antibodies to HLA class I and HIV-1 gp120 were detected in the sera of HIV-1-positive individuals, and were found to share the same epitope specificity as a gp120-HLA class I cross-reactive monoclonal antibody (M38). The amino acid residues of HLA recognized by both M38 and the patient antibodies occur as a clustered pair in the HLA-C alpha 1 domain. These sequences (KYKR and RKLR) are shared by almost all HLA-C alleles and are available to antibody binding only on beta 2-microglobulin-dissociated HLA heavy chains expressed on activated cells. Similar to M38, the antibody-binding sites on HIV-1 gp120 were mapped to two noncontiguous stretches of amino acids (KYK and KAKR), which flank a hydrophobic area of the immunodominant C5 region involved in gp41 binding. Serum antibodies immunoaffinity purified on synthetic HLA and gp120 peptides representing the M38-reactive regions were shown to bind to both HLA and gp120 in Western blot, as well as to membrane-bound HLA heavy chains, and to exhibit selective complement-mediated lysis of activated T cells. No serum antibodies could be detected that bind to the gp120 C5 region (peptide IEPLGVAPT) flanked by the two HLA-like sequences.

Amino Acid Sequence↗