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Biomedical subjects

A Aruffo

Publications and source records attributed to A Aruffo.

At least 127 records · Page 7Linked to original sources

Signaling events during helper T cell-dependent B cell activation. I. Analysis of the signal transduction pathways triggered by activated helper T cell in resting B cells.

gp39 is expressed on anti-CD3-activated Th, and binds CD40 on the B cell, driving B cell cycle entry. In this study, the signal-transduction pathway initiated in B cells as a consequence of interacting with activated Th is examined. Unlike anti-membrane Ig (anti-mlg) or anti-MHC class II, plasma membranes (PM) isolated from anti-CD3-activated Th, PMAct did not trigger an increase in the B cell intracellular concentrations of cAMP or calcium. In addition, PMAct did not stimulate protein kinase C activation as measured by myristoylated alanine-rich C-kinase substrate (MARCKS) phosphorylation and protein kinase C translocation. The failure to detect these biochemical events may be caused by the asynchrony with which PMAct induce these normally transient biochemical changes. Alternatively, PMAct may not trigger these events. PMAct did induce the tyrosine phosphorylation of several B cell substrates. Neutralizing Abs directed against gp39 inhibited PMAct-induced protein tyrosine phosphorylation of B cell substrates. These results suggest that cognate interactions in B cells initiate a signal-transduction pathway that is different from the pathway initiated by cross-linking of mlg or MHC class II.

Animals↗

Costimulation of T lymphocytes with integrin ligands intercellular adhesion molecule-1 or vascular cell adhesion molecule-1 induces functional expression of CTLA-4, a second receptor for B7.

Costimulation by the CD28 ligand B7/BB1 plays an important role during T cell proliferation primarily by augmenting synthesis of IL-2 and other cytokines. Resting CD4+ T cells express CD28 but not CTLA-4 on their surface. Costimulation of T cells with ICAM-1 or VCAM-1 induced CTLA-4 expression and up-regulated CD28 expression. CD28 and CTLA-4 were independently distributed on the surface of activated T lymphoblasts. When co-immobilized with anti-TCR mAb both anti-CD28 and anti-CTLA-4 mAb augmented T cell proliferation. Although anti-CD28-mediated augmentation of T cell proliferation was stronger than that seen with anti-CTLA-4 mAb, together these two mAb caused supraadditive augmentation of T cell proliferation. The augmentation of the effects of anti-CD28 mAb by anti-CTLA-4 mAb was greater at low occupancy of CD28 by anti-CD28 mAb. Costimulation of CD28+ CTLA-4+ T cells with anti-CTLA-4 caused three- to fivefold increase in IL-2 production, whereas similar treatment with anti-CD28 caused > 40-fold increase. The costimulatory effect of B7 on primed T cells was partially inhibited by Fab anti-CD28 mAb. Anti-CTLA-4 mAb alone did not inhibit B7-induced response but caused modest increase in the inhibitory effect of anti-CD28 Fab. On integrin-mediated costimulation, Ag-specific CD4+ T cell lines also up-regulated their CTLA-4 expression, and proliferation of these cells was augmented by anti-CTLA-4 mAb. Unlike that of CD28, ligation of CTLA-4 alone failed to mobilize intracellular [Ca2+]. However, coligation of CTLA-4 and TCR induced stronger [Ca2+] response in Ag-specific T cell lines than that seen with TCR alone. These results suggest that integrin-costimulated T cells express CTLA-4 and can be costimulated via CTLA-4. Optimal development of various immune functions may involve combined costimulation via both CD28 and CTLA-4.

Abatacept↗

Membrane topology of the L6 antigen and identification of the protein epitope recognized by the L6 monoclonal antibody.

The murine monoclonal antibody (mAb) L6 recognizes an integral membrane glycoprotein that is highly expressed on lung, breast, colon, and ovarian carcinomas and is referred to as the L6 antigen. This antigen is an attractive target for therapeutic intervention due to its high level expression on malignant cells. We have previously reported the isolation of a cDNA encoding the human L6 antigen (H-L6). Here, we report the isolation of a cDNA clone encoding the murine L6 antigen (M-L6). This cDNA contains one long open reading frame, which encodes a 220-amino acid polypeptide that is 78% homologous to H-L6. This protein contains short NH2- and COOH-terminal hydrophilic domains and four hydrophobic regions, each long enough to span the plasma membrane. Each of these hydrophobic domains is separated by a hydrophilic domain, the longest of which contains one possible N-linked glycosylation site and is located between the third and fourth hydrophobic domains. We have previously demonstrated that the murine L6 mAb recognizes a protein epitope expressed on human tumor-derived cell lines. Now, using chimeric cDNA constructs encoding human-murine L6 antigen hybrids in conjunction with monoclonal antibody binding experiments, we show that the 42-residue hydrophilic domain of the L6 antigen, located between the third and fourth hydrophobic domains, is outside the cell and that residues in the NH2-terminal region of this domain are critical for the binding of the murine L6 mAb to H-L6.

Amino Acid Sequence↗

CD62/P-selectin binding sites for myeloid cells and sulfatides are overlapping.

P-Selectin (CD62/GMP140/PADGEM) is an inducible cell-surface glycoprotein expressed by endothelial cells and platelets following stimulation by inflammatory mediators such as thrombin, histamine, or peroxides. P-Selectin mediates the binding of leukocytes to activated vascular endothelium at sites of inflammation and plays a role in mediating the binding of activated platelets to leukocytes and the vascular cell wall. The adhesive function of P-selectin is mediated by its calcium-dependent (or C-type) lectin domain, which is known to bind to carbohydrate ligands including fucosyl-N-acetyllactosamine (Lex, CD15), sialyl-Lex, and 3-sulfated galactosylceramides (sulfatides). Sulfatides can efficiently block P-selectin/myeloid cell binding in vitro and are excreted at high levels by activated granulocytes. These observations led to the hypothesis that sulfatide may play a role in facilitating the disengagement of CD62, allowing the efficient exit of granulocytes from the blood stream at sites of inflammation. In this report, we extend our previous mutagenesis analysis of the P-selectin binding site [Hollenbaugh, D., Bajorath, J., Stenkamp, R., & Aruffo, A. (1993) Biochemistry 32, 2960] and show that replacement of Tyr48 with Ser or Lys113 with Arg results in P-selectin mutants that, although correctly folded, do not bind to HL60 cells. These results suggest that the conservation of charged and hydrogen-bonding site chains is not sufficient to maintain the P-selectin function and that the exact stereochemistry provided by the side chains of residues lining the P-selectin binding pocket is critical for P-selectin binding.(ABSTRACT TRUNCATED AT 250 WORDS)

Antibodies, Monoclonal↗

CD40 ligand expression is defective in a subset of patients with common variable immunodeficiency.

Common variable immunodeficiency (CVI) is characterized by hypogammaglobulinemia and recurrent bacterial infections due to failure of CVI B cells to differentiate in vivo into immunoglobulin-secreting plasma cells. We hypothesized that T-cell dysfunction resulting in abnormal contact-mediated B-cell activation may play a prominent role in the failure of CVI B cells to produce specific antibody. We have previously shown that B-cell proliferation and IgE production after stimulation with anti-CD40 and interleukin (IL) 4 were normal in 22 CVI patients evaluated, indicating that CVI B cells respond to signals delivered via CD40. Here we report that CD40 ligand (gp39) mRNA expression by activated lymphocytes from CVI patients (n = 31) as a group was significantly depressed (P < 0.0001) compared with normal controls (n = 32). gp39 mRNA expression by activated lymphocytes from 13 CVI patients fell below the normal control range. T-cell surface expression of functional gp39 protein was correspondingly low in those patients with gp39 mRNA levels below normal control range and normal in patients with gp39 mRNA levels within normal control range. In CVI patients as a group, gp39 mRNA levels correlated with IL-2 mRNA levels (P < 0.002, r = 0.6) and production (P < 0.001, r = 0.7) but not with gene expression or production of other lymphokines evaluated, suggesting an as-yet-undetermined association between gp39 and IL-2 gene regulation. Of the 13 patients whose activated T cells exhibited gp39 mRNA expression below the normal control range, 2 had normal T-cell-derived lymphokine production, whereas the remaining 11 exhibited broader T-cell dysfunction, resulting in IL-2 deficiency, and in some patients deficient production of other lymphokines as well, reflecting a heterogeneity in the underlying mechanisms leading to depressed gp39 expression in these patients. The observation that both gene and surface expression of gp39 by activated T cells is depressed in a subgroup of CVI patients suggests that inefficient signaling via CD40 may be responsible, in part, for failure of B-cell differentiation in these patients.

Adolescent↗

Coengagement of CD2 with LFA-1 or VLA-4 by bispecific ligand fusion proteins primes T cells to respond more effectively to T cell receptor-dependent signals.

To examine the effects of ligand engagement and accessory molecule juxtaposition on T cell receptor (TCR) signaling, we prepared LFA-3/ICAM-1 Rg and LFA-3/VCAM-1 Rg bispecific immunoglobulin fusion proteins (Rg, recombinant globulin). These novel fusion proteins allowed us to examine the effects of ligand driven co-engagement of T cell proteins CD2 and LFA-1 or CD2 and VLA-4 on TCR-dependent mobilization of intracellular Ca2+. We observed that preincubation of resting T cells with LFA-3/ICAM-1 Rg or LFA-3/VCAM-1 Rg fusion proteins resulted in significantly enhanced mobilization of intracellular Ca2+ following TCR-accessory molecule cross-linking relative to T cells preincubated with each of the monospecific Rgs alone or with combinations of the monospecific Rg fusion proteins. In addition, such coengagement stimulated TCR-dependent activation and tyrosine phosphorylation of phospholipase C gamma 1 (PLC gamma 1). These results suggest that when T cells interact with antigen presenting cells the engagement of multiple cell adhesion molecules such as CD2, LFA-1, and VLA-4 primes the T cell to respond more effectively to signals delivered through the TCR.

Antibodies, Bispecific↗

Disruption of T lymphocyte reappearance in anti-Thy-1-treated animals in vivo with soluble CD44 and L-selectin molecules.

We used polyclonal rabbit anti-Thy-1 antiserum to eliminate T lymphocytes in the peripheral blood, lymph nodes, and spleens but not in the thymus of normal mice. T lymphocytes began to reappear in the peripheral lymphoid compartments 2 weeks after termination of the treatment. By 4 weeks, the numbers of peripheral T lymphocytes had recovered to normal levels. We found that injection of recombinant soluble forms of human CD44 or L-selectin but not human CD8 molecules delayed the reappearance of peripheral T lymphocytes in anti-Thy-1-treated mice. This delay in recovery most likely reflects the ability of these soluble receptors to interfere with lymphocyte migration in vivo. Our results provide in vivo evidence that CD44 and L-selectin regulates lymphocyte trafficking and suggest that soluble forms of both molecules provide useful tools for the study of lymphocyte migration in vivo.

Animals↗

The role of CD40L (gp39)/CD40 in T/B cell interaction and primary immunodeficiency.

The interaction between the CD40 ligand (gp39), expressed by activated T cells, and CD40, constitutively expressed by B cells, is critical for an effective antibody response to T cell dependent antigens. Patients with X-linked hyper IgM (HIM) syndrome fail to express a functional CD40 ligand due to a mutation within the gene for gp39. As a direct consequence, HIM patients, when immunized with T dependent antigens, produce only small amounts of IgM antibody without the development of immunologic memory, amplification and switch from IgM to IgG. Mutations affecting the gene for the HIM syndrome are localized throughout the coding region of gp39 and consist predominantly of point mutations. The resulting amino acid substitutions interfere directly with the receptor binding site or lead to stop codons or deletions secondary to splice site mutations. Expression of gp39 by activated T cells from patients with common variable immunodeficiency (CVI) is low in approximately half of the patients and is associated with depressed expression of IL-2. These findings suggest that inefficient signaling via CD40 may be responsible in part for failure of B cell differentiation in CVI.

Antigens, CD↗

Chromosomal localization of three human genes coding for A15, L6, and S5.7 (TAPA1): all members of the transmembrane 4 superfamily of proteins.

The A15, L6, and S5.7(TAPA1) proteins are members of the transmembrane 4 superfamily (TM4SF). The A15 is expressed in immature human T cells and in the human brain. The MXS1(CCG-B7) gene which codes for A15 contains triplet nucleotide repeats which have been associated with neuropsychiatric diseases such as Huntington's chorea, fragile X syndrome, and myotonic dystrophy. The L6 antigen is mainly expressed in lung, breast, colon, ovarian carcinomas, and healthy epithelial tissue in humans. The S5.7(TAPA1) antigen is expressed in most human cell lines and is shown to be associated with B-cell surface molecules CD19 and Leu-13. In this study we have used interspecies specific somatic cell hybrids and human-specific cDNA probes to localize the A15 (MXS1), L6 (M3S1), and TAPA1 genes to Xq11, 3q21-25, and 11p15.5, respectively.

Animals↗

Interactions between oncostatin M and the IL-6 signal transducer, gp130.

Recently, gp130, the signal transducer for interleukin 6 (IL-6), leukemia inhibitory factor (LIF), and ciliary neurotrophice factor (CNTF), was identified as the low-affinity receptor for oncostatin M (OM). However, it is not yet clear if OM binding to gp130 requires accessory factor(s) and if gp130 alone can mediate OM signalling. Here we report that: (a) expressing murine gp130 in BAF-B03 cells (BAF-m130) resulted in the appearance of a single class of low-affinity OM binding sites; (b) chemical cross-linking studies with 125I-OM identified a 180 kDa labelled complex on BAF-m130 cells; (c) OM cross-linking to the H2981 cell line which expresses both low- and high-affinity OM receptor, identified a 180 kDa and an additional 280 kDa species; (d) 125I-OM was specifically cross-linked to soluble recombinant gp130 (sgp130-Rg) in solution; and (e) the cellular proliferation of BAF-m130 was unaffected by OM treatment. These data indicate that gp130 can act as the low-affinity receptor for OM, however, gp130-OM interactions alone are unable to elicit cellular proliferation. This suggests that an additional factor(s) are required to interact with the OM/gp130 complex to form the high-affinity functional receptor. We propose that the 280 kDa species detected on H2981 cells is likely a complex of OM, gp130, and the putative beta chain of the functional OM high-affinity receptor. Recently, OM has been shown to be the major growth factor for Kaposi's sarcoma derived cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Cloning and expression of the gene for the melanoma-associated ME20 antigen.

Human melanoma cells, but not tumor cells of other histological origin, express a unique membrane-associated glycoprotein, designated ME20-M, and secrete a soluble glycoprotein, designated ME20-S, defined by monoclonal antibody ME20. Here we report the isolation and characterization of a cDNA clone that when transfected into COS cells directs the expression of ME20-M and ME20-S. This cDNA contains an open reading frame which encodes a 661-amino-acid-long precursor that contains a 23-amino-acid signal peptide and a 26-amino-acid transmembrane domain, separated by a hydrophilic region containing 5 potential Asn-linked and 14 predicted Pro-associated, Thr-linked glycosylation sites. The transmembrane domain is followed by a carboxy-terminal 45-amino-acid putative intracellular domain rich in Ser residues. Analysis of ME20-M by amino acid sequencing identified the proteolytic processing site. Signal peptide cleavage occurs at the Thr-24-Lys-25 peptide bond of the precursor and results in the 637-amino-acid ME20-M with a calculated molecular weight of 67,782. ME20-M is derived from a single 3.3- to 3.4-kb mRNA transcript that is expressed at varying levels in melanoma cell lines, correlating with immunofluorescence determination of protein expression. The amino acid sequence of the ME20 antigen deduced from the cDNA differs from the human neonatal melanocyte-specific Pmel 17 gene product by a single amino acid substitution and deletion of 7 amino acid residues, and it is 80% homologous with the bovine retinal pigment RPE1 cDNA.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

The random inactivation of the X chromosome carrying the defective gene responsible for X-linked hyper IgM syndrome (X-HIM) in female carriers of HIGM1.

The molecular origin of X-linked hyper IgM syndrome has recently been identified as a defect in the ligand of CD40, gp39, a protein expressed on the surface of activated T cells. The availability of detailed pedigrees for three families with affected males allowed assessment of the random or nonrandom nature of the inactivation of the defective X chromosome as well as a determination of the origin of the mutation. X chromosome inactivation was studied because of the relevance to the ability to detect carriers of HIGM1 and the potential for phenotypic effect in the carriers. Using immunostaining, PCR, and DNA sequencing, we found that the defective gene for gp39 is not selectively inactivated. Even in the presence of extremely skewed inactivation, normal levels of serum Ig were found. In carriers in which the defective gene is predominantly expressed, staining alone revealed the carrier status reliably while cloning and sequencing of the cDNA was necessary when the normal gene was predominantly expressed. Unlike some other X-linked defects where extreme Lyonization may lead to disease, a small population of cells expressing the wild-type gp39 is sufficient to maintain normal humoral immunity and prevent the clinical symptoms of X-HIM.

Adolescent↗

Antibody to the ligand of CD40, gp39, blocks the occurrence of the acute and chronic forms of graft-vs-host disease.

Chronic and acute graft-versus-host disease (cGVHD and aGVHD) result from donor cells responding to host disparate MHC alleles. In cGVHD (H-2d-->H-2bd), heightened polyclonal immunoglobulin production is due to the interaction of donor allospecific helper T cells (Th) and the host B cells. In vivo administration of antibody to the ligand for CD40, gp39, blocked cGVHD-induced serum anti-DNA autoantibodies, IgE production, spontaneous immunoglobulin production in vitro, and associated splenomegaly. Antibody production remained inhibited for extended periods of time after termination of anti-gp39 administration. Antiallogeneic CTL responses induced in a GVHD were also prevented by the in vivo administration of anti-gp39 as was the associated splenomegaly. These data suggest that CD40-gp39 interactions are critical in GVHD and that CD40-gp39 may be a valuable ligand-receptor pair for targeting immunotherapeutic agents to control GVHD.

Acute Disease↗

Agonistic and antagonistic properties of CD40 mAb G28-5 are dependent on binding valency.

CD40 functional responses can be triggered by binding of mAb G28-5. Here we show that G28-5 induces partial CD40 responses and functions as a partial antagonist of natural CD40 ligand, gp39, by preventing gp39 binding. Fab fragments of G28-5 retain inhibitory activity but lose crosslinking-dependent stimulatory activity. The synergistic interaction of CD40 signals with PMA or CD20 show differential requirements for CD40 crosslinking and different sensitivity to cyclosporine A, suggesting that CD40 receptor may use different effector mechanisms for synergy with calcium-dependent CD20 signals or with calcium-independent signals from PMA. Activation of NF-kappa B occurred in RAJI cells by G28-5 or by gp39 treatment, and was CD40 crosslinking-dependent. These results suggest that activation of NF-kappa B is involved in some CD40 receptor signals and may be related to CD40 effects on stimulation or inhibition of apotosis.

Animals↗

The molecular basis of X-linked agammaglobulinemia, hyper-IgM syndrome, and severe combined immunodeficiency in humans.

The molecular basis for X-linked agammaglobulinemia, hyper-IgM syndrome, and severe combined immunodeficiency was recently identified. In X-linked agammaglobulinemia the molecular defect was found to reside in the gene encoding a novel cytoplasmic tyrosine kinase (bpk, atk, or btk) expressed by B and myeloid cells. This kinase belongs to a new subfamily of tyrosine kinases that contains SH1, SH2, and SH3 domains. A defect in the murine homologue of this kinase has been shown to be responsible for X-linked immunodeficiency in mice. Currently, the role of btk in B- and myeloid cell signaling is unknown. The molecular defect in X-linked hyper-IgM syndrome has been shown to reside in the gene encoding the T-cell activation protein gp39 (CD40L, TRAP). This protein binds to its counter receptor, CD40, on B cells and has been shown to participate in T-cell-dependent B-cell help leading to B-cell proliferation and isotype switching. X-linked severe combined immunodeficiency patients were found to have defects in the gene encoding the gamma-chain of the interleukin-2 receptor. This chain of the interleukin-2 receptor is constitutively expressed by T cells and is involved in the formation of high and intermediate affinity interleukin-2 receptor complexes. These two interleukin-2 receptor complexes are responsible for mediating interleukin-2-dependent signals.

Agammaglobulinemia↗

Heparin oligosaccharides bind L- and P-selectin and inhibit acute inflammation.

Initial attachment of leukocytes to the vessel wall at sites of inflammation is supported by a family of carbohydrate-binding adhesion molecules called the selectins. Selectin ligands include sialyl-Lewis x (sLex, Neu5Ac alpha 2-3Gal beta 1-4[Fuc alpha 1-3]GlcNAc--) and related structures. We report here that defined heparin oligosaccharides interact with the selectins. Heparin chains containing four or more monosaccharide residues inhibited the function of L- and P-selectin, but not E-selectin, in vitro. In a competition enzyme-linked immunosorbent assay measuring inhibition of solution-phase selectin-Ig fusion proteins (selectin-Ig) binding to immobilized bovine serum albumin-sLex neoglycoprotein, a heparin-derived tetrasaccharide mixture inhibited 50% of L- and P-selectin-Ig binding (IC50) at 200 +/- 40 mumol/L and 850 +/- 110 mumol/L, respectively. A single hexasulfated tetrasaccharide (delta UA2S alpha 1-4GlcNS6S alpha 1-4IdoA2S alpha 1-4GlcNS6S) was particularly active against L- and P-selectin-Ig (IC50 = 46 +/- 5 mumol/L and 341 +/- 24 mumol/L). By comparison, the tetrasaccharide sLex was not inhibitory at concentrations up to 1 mmol/L. In cell adhesion assays, heparin tetrasaccharides reduced binding of neutrophils to COS cells expressing P-selectin but not to COS cells expressing E-selectin. They also blocked colon cancer cell adhesion to L- and P-selectin but not E-selectin. In a model of acute inflammation, intravenously administered heparin tetrasaccharides diminished influx of neutrophils into the peritoneal cavities of thioglycollate-treated mice. We conclude that heparin oligosaccharides, including non-anticoagulant tetrasaccharides, are effective L- and P-selectin inhibitors in vitro and have anti-inflammatory activity in vivo.

Acute Disease↗