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J Strominger

Publications and source records attributed to J Strominger.

At least 19 recordsLinked to original sources

IL-3 induces B7.2 (CD86) expression and costimulatory activity in human eosinophils.

Eosinophils in tissues are often present in intimate contact with T cells in allergic and parasitic diseases. Resting eosinophils do not express MHC class II proteins or costimulatory B7 molecules and fail to induce proliferation of T cells to Ags. IL-5 and GM-CSF induce MHC class II and B7 expression on eosinophils and have been reported in some studies to induce eosinophils to present Ag to T cells. The cytokine IL-3, like IL-5 and GM-CSF, is a survival and activating factor for eosinophils and the IL-3 receptor shares with the IL-5 and GM-CSF receptors a common signal transducing beta-chain. IL-3-treated eosinophils expressed HLA-DR and B7.2, but not B7.1 on their surface and supported T cell proliferation in response to the superantigen toxic shock syndrome toxin 1, as well as the proliferation of HLA-DR-restricted tetanus toxoid (TT) and influenza hemagglutinin-specific T cell clones to antigenic peptides. This was inhibited by anti-B7.2 mAb. In contrast, IL-3-treated eosinophils were unable to present native TT Ag to either resting or TT-specific cloned T cells. In parallel experiments, eosinophils treated with IL-5 or GM-CSF were also found to present superantigen and antigenic peptides, but not native Ag, to T cells. These results suggest that eosinophils are deficient in Ag processing and that this deficiency is not overcome by cytokines that signal via the beta-chain. Nevertheless, our findings suggest that eosinophils activated by IL-3 may contribute to T cell activation in allergic and parasitic diseases by presenting superantigens and peptides to T cells.

Antigen-Presenting Cells↗

Molecular analyses of the interactions between human NK receptors and their HLA ligands.

NK cell cytotoxicity is regulated by the action of multiple families of receptors. The interactions of these receptors with their ligands control different activating/inhibiting signal pathways and it is the balance of these signals which determines the behavior of the NK cell. The major described inhibitory pathways begin either with the recognition of a target cell classical class I HLA molecule by a killer cell immunologlobulin-like receptor (KIR) or the binding of the non-classical class I molecule HLA-E to the CD94/NKG2-A heterodimer. Activating counterparts to these inhibitory NK receptors have also been described and this review focuses on the molecular details of the binding of the inhibitory and activating receptors to their HLA ligands.

Antigens, CD↗

Interaction between the human NK receptors and their ligands.

NK cells are physiologically important in a number of contexts: mediating immunity against viruses, intracellular bacteria and parasites, and in anti-tumour immune responses. Moreover, in addition to these overtly immune protective functions, NK cells also mediate a variety of homeostatic functions, particularly in the regulation of haematopoesis and they may have an important role to play in the maintenance and development of placentation; certainly NK cells are a major component of the lymphocyte population of the decidua. The behaviour of the NK cell in these various situations is regulated by a large number of distinct receptors that transmit positive and negative signals. The balance of these signals determines whether the NK cell does nothing or is activated to proliferate, kill or secrete a wide range of cytokines and chemokines. In this review the structure and function of a number of molecules found on the NK cell surface are discussed, particular emphasis being placed on the molecular details of the recognition of target cell classical class I HLA molecules by Killer cell Immunoglobulin-like Receptors (KIR) and the binding of the non-classical class I molecule HLA-E to the heterodimer formed by the association of CD94 with various members of the NKG2 proteins.

Amino Acid Sequence↗

Differential binding to HLA-C of p50-activating and p58-inhibitory natural killer cell receptors.

Natural killer (NK) cell cytotoxicity is regulated in large part by the expression of NK cell receptors able to bind class I major histocompatibility complex glycoproteins. The receptors associated with recognition of HLA-C allospecificities are the two-domain Ig-like molecules, p50 and p58 proteins, with highly homologous extracellular domains but differing in that they have either an activating or inhibitory function, respectively, depending on the transmembrane domain and cytoplasmic tails that they possess. We have compared the binding to HLA-Cw7 of an inhibitory p58 molecule, NKAT2, the highly homologous activating p50 molecule, clone 49, and a second activating p50 molecule, clone 39, which has homologies to both NKAT1 and NKAT2. NKAT2 binds to HLA-Cw7 with very rapid association and dissociation rates. However, the p50 receptors bind only very weakly, if at all, to HLA-C. The molecular basis of this difference is analyzed, and the functional significance of these observations is discussed.

Amino Acid Sequence↗

A self-assembled monolayer for the binding and study of histidine-tagged proteins by surface plasmon resonance.

This paper reports the generation of a self-assembled monolayer (SAM) that selectively binds proteins whose primary sequence terminates with a His-tag: a stretch of six histidines commonly incorporated in recombinant proteins to simplify purification. The SAM was prepared by the adsorption onto a gold surface of a mixture of two alkanethiols: one thiol that terminated with a nitrilotriacetic acid (NTA) group, a group that forms a tetravalent chelate with Ni(II), and a second thiol that terminated with a tri(ethylene glycol) group, a group that resists protein adsorption. His-tagged proteins bound to the SAM by interaction of the histidines with the two vacant sites on Ni(II) ions chelated to the surface NTA groups. Studies with model proteins showed the binding was specific for His-tagged proteins and required the presence of Ni(II) on the surface. Immobilized His-tagged proteins were kinetically stable in buffered saline at pH 7.2 but could be desorbed by treatment with 200 mM imidazole. Surface plasmon resonance studies for two model systems showed that His-tagged proteins adsorbed on the NTA-SAM retained a greater ability to participate in binding interactions with proteins in solution than protein immobilized in a thin dextran gel layer by covalent coupling.

Histidine↗

NK-cell receptors and recognition of MHC class I molecules.

Two families of natural killer (NK)-cell receptors exist that interact with major histocompatibility complex (MHC) molecules, thereby preventing cytotoxic cells from killing target cells. The expanding knowledge of these receptors provided the focus for a recent meeting.

Animals↗

T cell subsets in normal human epidermis.

Freshly isolated human lymphocytes from normal epidermis were characterized with respect to distribution of subsets. The major T cell receptor-alpha beta + compartment was enriched for CD4+, for CD8 alpha alpha +, and for CD4-CD8-T lymphocytes compared with peripheral blood lymphocytes. Furthermore, the majority of epidermal T lymphocytes expressed a CD45RA- CD45ROhigh Fas+ memory/effector phenotype; many also expressed early-intermediate activation markers, suggesting antigenic exposure in vivo. The cutaneous lymphocyte-associated antigen was expressed by almost all epidermal T lymphocytes. A large portion also expressed the mucosal-associated alpha e beta 7-integrin, which may mediate retention to epithelium. These data show that T lymphocytes present in normal human epidermis constitute a distinct T cells compartment with characteristics similar to that of other epithelial-associated T cell compartments.

Adult↗

Association of polymorphisms in the HLA-B region with extended haplotypes.

Genomic probes from the HLA-B region of the major histocompatibility complex (MHC) were used to study the association of restriction fragment length polymorphisms (RFLPs) with various MHC alleles, complotypes, and extended haplotypes. The two DNA probes, M20A and R5A, were derived from previously cloned cosmids and are located 38 and 110 kilobases (kb) centromeric to HLA-B, respectively. Five different RFLP variants occurring in five different haplotypic combinations were detected within a panel of 40 homozygous-typing cells and cells from 21 families using Bst EII. In two informative families with HLA-B/DR recombinations the inheritance of the RFLP variants was consistent with their mapping between HLA-B and complotypes. The R5A/M20A haplotypic pattern 6.5 kb/3.0 kb (A) had a normal Caucasian frequency of approximately 0.43 and was found in all independent examples of the extended haplotypes [HLA-B8,SC01,DR3], [HLA-B18,F1C30,DR3], [HLA-Bw62,SC33,DR4], [HLA-B44,SC30,DR4], and [HLA-Bw47,FC91,0,DR7]. The patterns 6.9 kb/3.0 kb (B), 6.5 kb/4.7 kb (C), 1.45 kb/3.0 kb (D), and 6.9 kb/4.7 kb (E) had normal Caucasian frequencies of approximately 0.23, 0.15, 0.15, and 0.04 and were found on all independent examples of [HLA-B38,SC21,DR4], [HLA-Bw57,SC61,DR7], [HLA-B7,SC31,DR2], and [HLA-B44,FC31,DR7], respectively. Individual complotypes or HLA-B alleles which were markers of extended haplotypes showed variable associations. For example, HLA-B7 and the complotype SC31 were associated with all R5A/M20A RFLP haplotypes except haplotype E, although [HLA-B7,SC31,DR7] was associated exclusively with haplotype D. HLA-B27, not known to be part of an extended haplotype, was surprisingly exclusively associated with the 6.5 kb/4.7 kb or C haplotypic pattern in all five instances tested. These findings support the concept of regional conservation of DNA on independent examples of extended haplotypes. The results also further characterize these haplotypes.

Alleles↗

[Alpha genes of the T cell receptor: a possible implication in genetic susceptibility to multiple sclerosis].

Multiple sclerosis (MS) is a neurological disease in which 60% of patients are DR2 (versus 20% in controls). Restriction fragment length polymorphism (RFLP) associated with T cell receptor alpha-chain and beta-chain genes have been analysed in a sample of 46 MS patients and compared with those of 142 controls. The alpha-chain gene polymorphism is localized to the V-J region and consists of 3 Bgl II alleles (alpha a = 3.2 kb; alpha b = 2.9 kb; alpha c = 2.8 kb). A significant difference was found in the distribution of these three alleles since 97% of DR2 patients versus 60% in DR2 non-MS individuals were found to be homozygotes alpha a/alpha a. These results suggest the influence of T cell antigen receptor germ line repertoire on the etiopathology of this disease.

Alleles↗

Transfected human B lymphoblastoid cells express the mouse Ad beta-chain in association with DR alpha.

The human EBV-transformed cell line TOM was transfected with plasmid DNA containing a complete genomic copy of the murine class II Ad beta gene. Drug resistant transfectant clones showed cell surface expression of the Ad beta gene product, as detected by flow microfluorimetry when using a mouse monoclonal antibody (MKD6) specific for Ad beta. Immunoprecipitation and two-dimensional gel electrophoretic analysis of the Ad beta-containing molecules from the transfected cells revealed that the mouse beta-chain was expressed in noncovalent association with the human DR alpha-chain rather than with DQ alpha, the human A alpha homologue. The implications of this unexpected pairing for our understanding of the processes controlling the association of class II alpha and beta gene products and of the roles of Ia molecules in normal and pathologic immune function are discussed.

Animals↗

Exuberant restriction fragment length polymorphism associated with the DQ alpha-chain gene and the DX alpha-chain gene.

Cellular DNAs from individuals of 23 families were digested with five restriction endonucleases (Pvu II, EcoRI, HindIII, BamHI, and EcoRV) and then probed with a DX alpha-chain gene probe. Seventeen allogenotopes were observed, each of which could be assigned to a serologically defined haplotype by noting its segregation in families. Six sets of allogenotopes forming allelic series were noted. In comparison with restriction maps of the DQ alpha and the DX alpha regions, each of these series has been assigned to the DQ alpha or the DX alpha locus. Allogenotopes of the four DQ alpha series constitute three clusters correlating with the supertypic groups of class II histocompatibility antigens DQw1 (DR1, DR2, and DRw6), DRw53 (DR4, DR7, and DR9), and DR3 plus DR5 plus DR8. These 13 DQ alpha fragments constitute 22 different patterns. The two DX alpha series constitute two clusters, one of which is not found to be correlated strongly with DR specificities, whereas the other is correlated loosely (r = 0.45) with DR5 and DR7. This absence of strong linkage disequilibrium between the DX alpha series and the DR series contrasts with the DQ alpha series and suggests a recombination point between DQ alpha and DX alpha loci.

Alleles↗

Expression of complement proteins C2 and factor B in transfected L cells.

Factor B and C2 are structurally and functionally similar complement proteins encoded by genes that are closely linked within the class III region of the major histocompatibility complex (MHC). In this study, restriction endonuclease digestion of cosmid DNAs isolated from an H-2d murine genomic library indicated that the chromosomal organization of these two genes was similar in mouse to that in man. To further characterize their expression, cosmid DNAs encoding human and murine factor B and C2 were introduced into mouse L cells by DNA-mediated gene transfer. Factor B expression was demonstrated in cells transfected with either the human or the murine gene, but not in cells transfected with a control plasmid. Synthesis and secretion of factor B by L cells transfected with the human and murine cosmids was similar to that of human and murine cells in primary culture. An interspecies variation between human and murine factor B was identified and reproduced with extraordinary fidelity by the mouse fibroblast. In contrast, C2 RNA and protein were expressed by L cells alone and by L cells transfected with a control plasmid, as well as by L cells transfected with cosmids encoding human and murine complement genes. Expression of the transferred human C2 gene was demonstrated by the presence of a new distinct C2 RNA transcript and secretion of biologically active human C2. These results demonstrate the similarity of organization of the murine and human class III MHC regions. Expression of the two closely linked gene products, C2 and factor B, after DNA-mediated gene transfer provides a system for further analysis of regulation in both normal and deficient states.

Animals↗

Simultaneous flow cytometric analysis of human T cell activation antigen expression and DNA content.

Cell-surface antigens that are induced to appear on T cells activated by the lectin phytohemagglutinin-P (PHA) can be classified both on the basis of the kinetics of their appearance and on their growth-association properties. Seven distinct T cell activation antigens, defined by monoclonal antibodies, were classified as early, intermediate, or late antigens based on their temporal appearance relative to DNA synthesis. Four antigens, the transferrin receptor, the T cell activation antigen Tac, the 4F2 antigen, and the 49.9 antigen were early antigens, whereas the OKT10 antigen appeared at intermediate times and both HLA-DR and antigen 19.2 appeared late. The use of a dye, Hoechst 33342, which stains DNA stoichiometrically, allowed the simultaneous analysis of immunofluorescence and cell cycle position of individual cells. This analysis unexpectedly revealed that essentially all cells in the proliferative phase of the cell cycle expressed each of the four early-activation antigens. The correlation between expression of the four early-activation antigens and T cell proliferation suggests that these molecules are important for the growth of all T cells. The relationship of two of these activation antigens, known to be the receptors for transferrin and interleukin 2, a T cell growth factor, is discussed with special reference to the roles of their ligands in supporting the growth of T cells.

Antibodies, Monoclonal↗

Interaction of particle-bound [125I]C3b, the third component of complement, with specific receptors on human B-lymphoblastoid cells (Raji).

Taking advantage of the high density of the complex formed between the C3b receptor on cultured B-lymphoblastoid cells and particle-bound C3b, some properties of their interaction were studied. The process had an apparent dissociation constant equal to 10(-7) M. Thus particle-bound C3b has a higher affinity for C3b receptor than soluble C3b. Moreover, analysis of dissociation rate of particle-bound C3b-C3b receptor complexes suggested that a cooperative effect was induced at the cell surface by particle-bound C3b but not by soluble C3b. The most suitable explanations of these data are discussed.

B-Lymphocytes↗