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J K Inman

Publications and source records attributed to J K Inman.

At least 19 recordsLinked to original sources

Human B cell activation. Effect of T cell cytokines on the physicochemical binding requirements for achieving cell cycle progression via the membrane IgM signaling pathway.

Given the range of mIg-binding affinities expressed by Ag-specific B cells, the ligand:receptor affinity threshold for achieving full B cell activation via the mIgM-mediated signaling pathway is quite high. Several recombinant, or semi-purified, cytokines were found to reduce the very high mIgM:ligand affinity threshold for induction of human B cell S phase entry by bivalent, affinity-diverse anti-IgM mAbs without notably affecting the lower affinity threshold for G1-related RNA synthesis. Two-stage culture experiments suggested that one major means by which IL-4, IL-2, and low m.w. B cell growth factor lower the affinity threshold for S phase entry is an indirect one, i.e., rescue of B cells whose mIg engagements with Ag are of sufficient affinity for achieving G1 entry, but of insufficient affinity for initiating the late-phase mIgM-mediated signals needed for the G1-->S phase transition. IL-4 had additional effects in early G1. In contrast to the above cytokines, IFN-gamma, did not function as an independent cell cycle progression factor, but rather required the concomitant presence of mIgM-cross-linking ligand for enhancement. A greater potential of multivalent anti-IgM-dextran conjugates to trigger S phase entry in the absence of cytokines was found to reflect a greater potential for initiating mIgM signals during the late phase in B cell activation. The results indicate that progression of mIgM receptor-activated B cells past a G1-->S phase restriction point is dependent upon continued signal transduction via either the mIgM receptor and/or a cytokine receptor signaling pathway. When mIgM-engaging ligands are ineffective at initiating late-phase signals, due to limited size and binding site valency and/or affinity, ancillary signal transduction through cytokine receptors becomes most relevant.

Antibody Affinity

Enhanced immunogenicity of protein-dextran conjugates: I. Rapid stimulation of enhanced antibody responses to poorly immunogenic molecules.

In view of our observation that anti-immunoglobulin antibody conjugated to high-molecular-weight dextran stimulates high levels of B-cell activation (Brunswick et al. J. Immunol. 1989, 143, 1239), we coupled T cell-dependent antigens to dextran. When mice were immunized, in the absence of adjuvant, with a BSA-dextran conjugate (BSA-dex), a persistent, high-titre anti-BSA IgG1 response was induced. Titres were dose-dependent and seen with as little as 10 micrograms of conjugated protein. Anti-BSA titres were detected as early as day 7, usually peaked at about day 14 and persisted for at least 4 weeks. Anti-hapten antibodies were also elicited in mice that were immunized with haptenated BSA covalently bound to dextran, and secondary responses could be induced even after inoculation of the unconjugated protein. Covalent attachment of the protein to the polymer was necessary, and the response was specific, as coinjection of BSA-dex and an unrelated antigen, goat IgG, did not elicit detectable anti-goat antibodies. The immunogenic potential of these conjugates did not depend on the ability of the dextran carrier to induce antibody, inasmuch as they stimulated high levels of anti-protein antibody in mice unresponsive to dextran. A minimum size dextran polymer was required for enhanced immunogenicity as conjugates of BSA with dextran of molecular mass 500 or 2000 kDa but not of 70 kDa gave detectable anti-BSA titres.

Adjuvants, Immunologic

Differences among various lineages of antigen-presenting cells in processing exogenous antigen internalized through transferrin receptors.

The Ag, pigeon cytochrome c, was coupled to human ferric transferrin by a heteroligation technique to target Ag into the endosomal transport pathway via transferrin receptors. The ability of various types of APC that do or do not express transferrin receptors to process exogenous Ag in their endosomes was investigated by the stimulation of Ag-specific CD4+ T cells with the transferrin-Ag conjugate in a serum-free assay. When two B lymphoma cells were the source of APC, the conjugate was significantly more potent than native Ag in activating the T cells, agreeing with our previous finding using a third B lymphoma cell. The conjugate and Ag were similarly presented by splenic B cells that lack transferrin receptors to the T cells. However, both a macrophage hybridoma and a MHC class II-L cell transfectant hardly elicited a T cell response to the conjugate, although a response to native Ag was readily observed. These findings could not be attributed to an absence of transferrin receptors or receptor-mediated internalization of the conjugate, nor to differential expression of MHC class II molecules or li chain by the APC. The poor presentation of the conjugate by the L cell transfectants was associated with diminished catabolism of the conjugate, however, the macrophage hybridoma rapidly degraded the conjugate, similar to the B lymphoma cell. Peritoneal macrophages, which lack transferrin receptors, and the macrophage hybridoma induced a response to the conjugate only at concentrations that allowed internalization by fluid phase pinocytosis. The lower potency of the conjugate compared with native Ag with non-B-presenting cells suggest that these cell types process the conjugate by a different mechanism than used by B cells. Differences in the mechanism of Ag processing used by APC of distinct cell lineages may possibly influence immune responsiveness.

Animals

Antigen presentation by B lymphoma cells. Requirements for processing of exogenous antigen internalized through transferrin receptors.

The Ag, pigeon cytochrome c, was delivered to the early endosomes in a form coupled to human ferric transferrin that entered APC through transferrin receptors. The processing of the transferrin-Ag conjugate by B lymphoma cells was compared with that of unconjugated native Ag that entered APC by a nonreceptor-mediated mechanism. Within 5 min after internalization, catabolized conjugate was detected in isolated early endosomes and did not accumulate in these organelles. Analysis of the rapid catabolism of the conjugate demonstrated that the Ag, not the transferrin, portion of the molecule was degraded by the APC, suggesting that similar proteases may mediate the processing of the conjugate and native Ag. The processing mechanisms of these molecules shared similarities. Treatment of APC with chloroquine or paraformaldehyde interfered with the stimulation of Ag-specific CD4+ T cells by both transferrin-Ag conjugate and native Ag. However, the T cell responses to the conjugate and native Ag were different in two important respects. First, T cell activation by the conjugate began at an earlier time point and occurred at a faster rate than T cell stimulation by the same concentration of native Ag during a 3-h time course. Second, the T cell response to the conjugate, but not to native Ag, was diminished by treating APC with cycloheximide, a reversible protein synthesis inhibitor. This partial inhibition of the conjugate response by cycloheximide could not be attributed to significant effects on transferrin receptor expression, or on internalization, recycling, or degradation of the conjugate. The differential cycloheximide-sensitivity of the T cell responses indicates that the processing pathways of the two molecules are different. Our findings suggest that the early endosomes may function as an Ag-processing compartment, and that more than one pathway may lead to productive processing in B lymphoma cells.

Antigen Presentation

Direct detection of major histocompatibility complex class I binding to antigenic peptides using surface plasmon resonance. Peptide immobilization and characterization of binding specificity.

We have developed model systems in which the binding of purified, genetically engineered, soluble analogues of major histocompatibility complex (MHC) class I molecules to immobilized antigenic peptides can be monitored in real time using surface plasmon resonance (SPR). Synthetic analogues of several peptides known to bind different mouse and human MHC class I molecules were prepared with cysteine residues substituted at appropriate positions. The analogue peptides were immobilized via the bifunctional reagent N-gamma-maleimidobutyryloxy-succinimide to amino groups generated on the dextran-modified gold surface of a biosensor flow cell. Using this approach, each position in the sequence of an H-2Ld-specific viral peptide, pMCMV (YPHFMPTNL), was used for coupling, and the resulting surfaces were tested for binding of the soluble analogue of H-2Ld, H-2Lds. In accord with our previously described H-2Ld/pMCMV three-dimensional structural model, only those residues of the peptide that remain exposed following binding (positions 4-8) can be replaced by cysteine and used for coupling. Stable binding of soluble MHC class I molecules, H-2Lds, H-2Dds, H-2Kbs, and HLA-A2s to their respective immobilized cognate peptides was detected by SPR. Specificity of the peptide/MHC interaction was characterized both by direct binding using immobilized peptides and by competition with peptides in solution, and in general was consistent with known immunological reactivity. Some peptides bound not only their cognate MHC molecule, but others at lower apparent affinity. Measurement of real time binding of MHC class I molecules to peptides immobilized through specific side chains suggests the application of a similar approach to the study of the interaction of peptides with a wide variety of peptide-binding macromolecules.

Alleles

Exogenous antigens internalized through transferrin receptors activate CD4+ T cells.

The role of endosomes in exogenous Ag processing was investigated by targeting Ag into the endosomal transport pathway via transferrin receptors. The Ag, pigeon cytochrome c and chicken OVA, were coupled to human ferric transferrin by a heteroligation technique. The conjugates were significantly more efficient than native Ag in stimulating Ag-specific CD4+ T cells, when the APC expressed transferrin receptors. The addition of ferric transferrin eliminated the enhanced response. Paraformaldehyde-fixed APC did not present the conjugates, indicating that the conjugates still required processing to activate T cells. An augmented level of T cell activation was not observed when the APC lacked transferrin receptors or when the conjugate contained the apoenzyme form of transferrin, which does not bind the receptor. The conjugate followed an intracellular pathway similar to that for transferrin, remaining in low density vesicles. Degraded conjugate appeared rapidly in culture supernatants, within 5 min, and peaked by 20 min; under these conditions a T cell response to the conjugate was elicited that was consistent with an early processing compartment. Our results suggest that antigenic peptide fragments can be generated in the early endosomes, without delivery of these Ag to the lysosomes. Thus, various Ag may have differential processing requirements, dictated by their molecular nature, that determine the site of Ag processing.

Animals

N-isopropyliodoacetamide in the reduction and alkylation of proteins: use in microsequence analysis.

A new reagent, N-isopropyliodoacetamide (NIPIA), for alkylation of sulfhydryl groups on proteins for microdigestion and microsequencing is described. The utility of this reagent in both of these procedures has been demonstrated. NIPIA was shown to be especially useful in microsequence analysis, where it yields high sensitivity in detection of Cys residues. This is because the phenylthiohydantoin (PTH) derivative of NIPIA-alkylated cysteine [PTH-Cys(NIPCAM)] appears as a sharp peak in a standard reverse-phase HPLC analysis of PTH amino acids, and elutes between PTH-Tyr and PTH-Pro where no other peaks are present. Thus the use of NIPIA circumvents various problems associated with HPLC analysis of PTH-Cys when other commonly used agents are employed for sulfhydryl alkylation, such as coeluting peaks or low signal levels. Procedures for the synthesis of NIPIA and other analogs, as well as PTH-Cys(NIPCAM), are also presented, and HPLC retention times for their corresponding PTH-Cys derivatives are compared.

Alkylation

Membrane IgM-mediated signaling of human B cells. Effect of increased ligand binding site valency on the affinity and concentration requirements for inducing diverse stages of activation.

The potential for ligand-initiated signal transduction through B cell membrane IgM is assessed in terms of ligand concentration, binding site valency, and binding site affinity for membrane Ig. Estimates of the physicochemical requirements for achieving G0* enhancement of class II MHC expression, G1 entry, and S phase entry in human B cells were made by comparing the stimulatory effects of three affinity-diverse anti-Cmu2 mAb when in bivalent (unconjugated) form, or as mAb-dextran conjugates with low binding site valency (oligovalent ligands) or high binding site valency (multivalent ligands). An increase in binding site number (and concomitant molecular mass) caused a profound reduction in both the minimal concentration and affinity requisites for B cell activation. The enhancing effect of increased binding site valency was most evident for the signaling of those most distal stages in B cell activation, i.e., G1 and S phase, which were difficult to induce with bivalent ligands. The results suggest that highly multimeric TI-2 Ag may be good immunogens because they are able to elicit a full activation response not only from infrequent high affinity B cells, but also from a substantial proportion of the many lower affinity Ag-specific B cells in virgin B cell populations. Interestingly, the activation of B cells by ligands with binding sites of high intrinsic affinity (Ka = 5 x 10(8) M-1) was less influenced by increases in binding site valency than was B cell activation by ligands with intermediate binding site affinity (Ka = 2 x 10(7) M-1). This suggests that the minimal epitope valency requirement for T cell-independent B cell activation by mIg cross-linking Ag may be dependent on the intrinsic affinity with which membrane Ig molecules on a given B cell interact with the redundantly expressed epitopes.

B-Lymphocytes

Rapid stimulation of large specific antibody responses with conjugates of antigen and anti-IgD antibody.

Injection of mice with goat anti-mouse IgD antibody stimulates a large IgG1 anti-goat IgG antibody response, as well as polyclonal IgG1 production. To determine if this phenomenon could be used to induce large antibody responses to other Ag, covalent conjugates were produced between BSA or other Ag and H delta a/1, a mAb specific for IgD of the a allotype, and between BSA and AF3.33, a mAb specific for IgD of the b allotype. Injection of H delta a/1-BSA into BALB/c mice, which express Ig of the a allotype, or into (BALB/c x CB20)F1 mice (a x b allotype heterozygotes) induced IgG1 anti-BSA antibody responses that peaked 8 to 9 days after injection, and were more than 1000 times larger than those induced by injection of BSA alone, and 100 times larger than those induced by injecting unconjugated BSA plus H delta a/1. H delta a/1-BSA was no more immunogenic than unconjugated BSA when injected into CB20 mice, which express Ig of the b allotype, while AF3.33-BSA greatly enhanced anti-BSA antibody production in CB20, but not in BALB/c mice. Mice serially immunized with three different Ag conjugated to H delta a/1 made large antibody responses to all three Ag, provided that the mouse strain used did not recognize allotypic determinants on H delta a/1 as foreign and produce a neutralizing antibody response. Intravenous and s.c. routes of inoculation produced responses of similar magnitude and relatively low variability; responses to footpad or intramuscular inoculation were more variable, and i.p. inoculation induced smaller responses. Injection of BALB/c mice i.v. with 100 micrograms of H delta a/1-BSA induced an IgG1 anti-BSA response of 5.6 mg/ml, which was approximately 70% of the total IgG1 response. Anti-BSA responses to 30 micrograms of conjugate or less were much smaller, but could be considerably enhanced by adding unconjugated H delta a/1 to the inoculum. This system will be useful for the rapid stimulation of large antibody responses to biologically important Ag, and for investigating mechanisms of Ag processing and B and T cell activation.

Animals

A deeply recessed active site in angiotensin-converting enzyme is indicated from the binding characteristics of biotin-spacer-inhibitor reagents.

Two biotinylated derivatives of the angiotensin-converting enzyme (ACE) inhibitor, lisinopril, were synthesized. Compounds BL11 (epsilon-biotinamidocaproyl-lisinopril) and BL19 (epsilon-biotinamidocaproyl-beta-alanyl-beta-alanyl-lisinopril) have, respectively, 11 and 19 atoms of spacing structure between the biotin and the inhibitor moieties. Both compounds were found to be potent inhibitors of mouse kidney ACE, but they lost this ability in the presence of streptavidin in free solution. However, BL19 (but not BL11), when complexed to ACE, retained enough residual binding strength for streptavidin to allow the complex to be specifically removed from solution by streptavidin-agarose beads. It was thus possible to employ BL19 for the affinity isolation of ACE from crude mixtures. These results indicate that the bound determinant of lisinopril must lie at least 11 A below the outer surface of the ACE molecule.

Angiotensin-Converting Enzyme Inhibitors

Surface immunoglobulin-mediated B-cell activation in the absence of detectable elevations in intracellular ionized calcium: a model for T-cell-independent B-cell activation.

We recently showed that anti-immunoglobulin conjugated to high molecular weight dextran is 1000-fold more mitogenic for B cells than unconjugated anti-immunoglobulin. This system serves as a model for T-cell-independent type 2 antigens such as haptenated Ficoll, dextran, and bacterial polysaccharides, which can also stimulate B-cell proliferation and antibody production at low concentrations. We show here that conjugated anti-immunoglobulin, at concentrations that stimulate significant increases in expression of major histocompatibility complex class II molecules and incorporation of thymidine into DNA, does not induce detectable modulation of surface immunoglobulin. These results indicate that the facilitated T-cell-independent B-cell activation by polysaccharide antigens may result from inability to modulate surface immunoglobulin, possibly resulting in persistent and/or repetitive signaling. Early large increases in Ca2+ and breakdown of inositol phospholipids presently thought to be involved in transduction of the mitogenic signal are not detectable at low concentrations of conjugated anti-immunoglobulin, raising the possibility that these biochemical events may not in fact be central to this signaling pathway.

Animals

Picogram quantities of anti-Ig antibodies coupled to dextran induce B cell proliferation.

To investigate the properties which enable type 2 Ag, as exemplified by dextran and Ficoll, to stimulate high levels of antibody responses in the relative absence of T cells, we conjugated anti-IgD and anti-IgM mAb to both dextran and Ficoll and examined their B cell-activating properties. Such conjugated anti-Ig antibodies stimulated both early and later stages of B cell activation at picogram concentrations, which are at least 1000-fold lower than that required for B cell stimulation by unconjugated anti-Ig antibodies, and the level of proliferation they stimulated was on average 10-fold greater. Furthermore, concentrations of anti-Ig dextran (100 pg/ml) which modulated little sIgD from the B cell surface were strong inducers of enhanced B cell expression of MHC class II molecules. Conjugation of Fab fragments of anti-IgD or nonmitogenic anti-IgM mAb to dextran rendered them as mitogenic as dextran conjugated to strongly stimulatory anti-IgD or anti-IgM antibodies. The ability of dextran and Ficoll to serve as effective carrier molecules for anti-IgD was not related solely to their large m.w., because anti-IgD coupled to polymerized BSA (m.w. 1.5 X 10(6), was only 10- to 50-fold more potent than unconjugated anti-IgD antibodies at stimulating B cell DNA synthesis. These results suggest, therefore, that the unique ability of picogram concentrations of haptenated type 2 Ag to stimulate Ig secretion in the absence of T cells may be a function of their ability to promote effective cross-linking without resulting in the modulation of sIg. This would enable such Ag to mediate repetitive B cell signaling, a situation that cannot be achieved by unconjugated anti-Ig antibodies which result in modulation of sIg at their mitogenic concentrations. These compounds therefore may be employed to study B cell activation stimulated by sIg cross-linking at concentrations that may more closely reflect those which are achieved under physiologic conditions by type 2 Ag.

Animals

Controlled primary functionalization of agarose affinity supports by carboxymethylation and subsequent addition of spacer units.

Experimental details are given for the O-carboxymethylation of cross-linked agarose beads with chloroacetate in aqueous sodium hydroxide, formation of a tandem 2-amino-ethylamide derivative, and coupling of beta-alanine residues to the aminoethyl groups using a new reagent, N-phthalimidyl N'-ethylsulfonylethoxycarbonyl-beta-alaninate. An ideal support for attaching affinity ligands results. Extent of derivatization was controlled by the time and temperature of the first reaction. Functional group densities were estimated by using hydrogen ion binding measurements for carboxyls and a new reagent, N-succinimidyl 3-[2-(4-nitrophenylamino)ethyldithio]propionate, for assaying reactive amino groups on solid supports. Synthesis and use of the new reagents are described.

Chemical Phenomena

Hapten-specific B cell blockade of the immune response to a thymus-independent-1 antigen produced by concomitant administration of a thymus-independent-2 antigen.

CBA/N mice harbour an X-linked B cell defect which is transmitted by CBA/N female mice to their hybrid male progeny. These mice mount normal responses to thymus-dependent (TD) and some thymus-independent (TI-1) antigens, while the response to TI-2 antigens is absent. Hapten-specific plaque-forming cell (PFC) responses to TD antigens can be blockaded by concomitant exposure of these mice to TI-2 antigens bearing the same hapten. This paper investigates in defective mice the blockade of their response to TNP3-LPS (trinitrophenylated lipopolysaccharide, a TI-1 antigen), imposed by DNP59-Ficoll (dinitrophenylated Ficoll, a TI-2 antigen). The effectiveness of the blocking agent, DNP59-Ficoll, differed in various inbred mouse strains: CBA/N X C3H/HeN F1 male greater than CBA/N female greater than CBA/N X C3H/HeN F1 female. The role of T cells in the observed hapten-specific blockade phenomenon was investigated using athymic CBA/N nude mice and a B cell tolerogen. Our findings indicate that T cell participation is not essential for the blockade of CBA/N PFC responses and they suggest that direct blockade of TI- and TD-responsive B cell populations is likely to occur.

Animals

Amidination.

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Amidines