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Biomedical subjects

J Reimann

Publications and source records attributed to J Reimann.

At least 145 records · Page 8Linked to original sources

CD3+ T cells in severe combined immunodeficiency (scid) mice. IV. Graft-vs.-host resistance of H-2d scid mice to intravenous injection of allogeneic H-2b (C57BL/6) spleen cells.

Intraperitoneal injection of 2 x 10(7) nonfractionated spleen cells (SC) from C57BL/6 (B6, H-2b) mice into completely allogeneic immunodeficient H-2d scid mice induced clinical and histological signs of acute graft-vs.-host disease (GVHD), with all transplanted severe combined immunodeficiency (scid) mice dying in the 3rd week post-transfer. In contrast four out of five scid mice survived for greater than 7 weeks after intravenous (i.v.) injections of equal numbers of B6 SC. Intravenously allotransplanted scid mice analyzed in the 8th week post-transfer had engrafted donor-type CD4+ and CD8+ T cells in the spleens but showed no clinical or histological evidence of GVHD. i.v. injection of 10(7) or 10(6)O B6 SC engrafted allogeneic T cells in spleens of scid recipients; in contrast, i.v. injection of 10(5) nonfractionated B6 SC or 3 x 10(5) cell sorter-purified, naive or anti-H-2d-primed splenic CD4+ or CD8+ B6 T cells led to rejection by young scid recipient mice. B6 T cells engrafted into spleens of scid mice after i.v. injection showed proliferative anti-host alloreactivity in vitro. No cytotoxic reactivity against host-type alloantigens was found in standard 4-h 51Cr-release assays. These data demonstrate that allogeneic T cells injected i.v. into immunodeficient scid mice are partially tolerized against host-type alloantigens.

Animals↗

CD3+ T-cells in severe combined immunodeficiency (scid) mice. III. Transferred congenic, selfreactive CD4+ T cell clones rescue IgM-producing, scid-derived B cells.

Young severe combined immunodeficiency (scid) mice completely lack immunocompetent lymphocytes. Limiting numbers of purified CD4+ T cells from allotype-congenic BALB/c (Igha) donor mice were transplanted into 3-week-old scid (Ighb) recipient mice. Splenic CD4+ T cells were recovered from transplanted scid mice 10-12 weeks post-transfer and established as T cell lines in culture. These T cell populations proliferated in vitro in response to syngeneic stimulator cells. T cell clones derived in vitro from these T cell lines displayed selfreactive recognition specificity: these CD4+ T cells proliferated in vitro in response to syngeneic/congeneic but not allogeneic stimulator cells. Cloned selfreactive T cells retransplanted into young scid recipients were engrafted into spleens of secondary recipients, did not induce autoimmune disease but stimulated development of scid-derived (Ighb), IgM-producing B cells (B cell leakiness).

Animals↗

CD3+ T cells in severe combined immunodeficiency (SCID) mice. V. Allogeneic T cells engrafted into SCID mice do not induce graft-versus-host disease in spite of the absence of host veto and natural suppressor cell activity.

Intravenous injection of 10(6) to 10(7) non-fractionated spleen cells (SC) from C57BL/6 (B6, H-2b) mice into completely allogeneic, immunodeficient H-2d severe combined immuno deficiency (scid) mice leads to engraftment of allogeneic donor T cells. Mice analysed in the tenth week posttransfer had engrafted donor-type CD4+ and CD8+ T cells in the spleens but showed no clinical evidence of graft-versus-host disease (GVHD). Transfer of allogeneic T cells engrafted in scid recipients did not induce GVHD upon i.v. injection into secondary scid recipients and lead in most recipients to engraftment of a pure CD4+ T-cell population. Experiments were carried out to investigate the reason(s) for the lack of GVHD in recipient scid mice, i.e. the presence of allotolerance in the engrafted donor T cells. Scid spleen cells (SC) efficiently stimulated alloreactive responses of B6 T cells: scid SC stimulated H-2d-specific cytotoxic responses in a B6 anti-scid mixed lymphocyte culture in vitro, and scid SC injected i.v. into B6 mice efficiently primed splenic cytotoxic lymphocyte precursors against H-2d alloantigens. Moreover when assayed in vitro, no veto activity or natural suppressor activity was detectable in scid SC. These data demonstrate that tolerizing mechanisms currently believed to operate in vivo can not explain the fact that allogeneic T cells injected i.v. into immunodeficient scid mice become tolerized against host-type alloantigens. Our results are discussed in the light of clinical experience of allogeneic T-cell transfer in scid infants.

Animals↗

Selective reconstitution of T lymphocyte subsets in scid mice.

The 'empty' splenic T-cell compartment of young scid mice was partially and selectively reconstituted by low numbers of adoptively transferred congenic (C.B-17, BALB/c) or semi-allogeneic (dm2), but not completely allogeneic (C57BL/6) CD4+ T cells from adult donor mice. Under the same experimental conditions, the CD8+ T-cell compartment of young scid mice could only be reconstituted in scid mice continuously substituted with IL-2. CD4+ T cells engrafted in the spleen of H-2d scid recipients displayed specific, anti-Ad-associated proliferative reactivity. (Semi)allogeneic CD8+ T cells engrafted in spleens of scid recipients showed no anti-host H-2 class I-associated cytotoxic reactivity, i.e., this T-cell compartment was specifically tolerized against host (allo)antigens. Reconstitution of lymph nodes was not observed following transplantation of purified CD4+ or CD8+ T cells. Antigen-specific, cellular immune responses could not be induced in scid mice selectively reconstituted with either CD4+ T cells or CD8+ T cells. Partial reconstitution of the CD4+ T-cell compartment was always associated with the appearance of scid-derived, 'endogenous' IgM-producing B cells. Serum antibodies of scid mice with this T cell-induced B-cell leakiness stained an immature subset of congenic thymocytes.

Animals↗

Characterization of cells with T cell markers in athymic nude bone marrow and of their in vitro-derived clonal progeny. Comparison with euthymic bone marrow.

Evidence is presented that early steps in T cell differentiation, to the point of TCR expression, can occur in athymic nude bone marrow (BM) and perhaps also in normal BM. Low density nylon wool nonadherent BM from 5- to 8-wk-old nude and normal mice was found to contain dim CD3+ CD4- CD8- cells. This subpopulation was not found in scid/scid low density nylon wool nonadherent BM but was present at similar frequency in both nude and normal BM and expressed comparable fluorescence intensity. With the use of additional markers, a difference between nude and normal dim CD3+ CD4- CD8- cells was found: the ratio of J11d+/J11d- cells was at least threefold higher in nude than in normal BM. Whereas 60% of nude J11d+ CD3+ cells expressed a TCR-alpha/beta and 40% expressed a gamma/delta TCR, almost no TCR-gamma/delta expressing cells were detected in dim CD3+ cells from normal mice in either the J11d+ or J11d- subpopulation. The majority of those cells express a TCR-alpha/beta. We established that nude dim CD3+ CD4- CD8- cells were distinguishable from mature recirculating T cells and developed an in vitro clonal culture system that supported the growth of these cells. When these cells were cocultured in vitro in a limiting dilution system with inactivated anti-CD3 mAb-secreting cells, in the presence of rIL-2 and rIL-4, one in 5 x 10(2) to 1 x 10(3) cells were growth inducible. Most progeny cells expressed a CD3+ CD8+ CD4- surface phenotype. Cultures displayed nonspecific cytolytic reactivity. With the use of a sensitive dot-blot technique, transcripts coding for C alpha, C beta, VC gamma, and C delta TCR genes were detected in these cultures. Rehybridization experiments demonstrated mutually exclusive expression of either C alpha or C delta mRNA transcripts in the majority of clones selected for a high probability of clonality. Most (greater than 95%) of T cell clones derived from normal BM expressed the C alpha transcript with approximately 5% expressing the C delta transcript. In contrast, about 40% of T cell clones derived from nude BM expressed the C delta transcript whereas the remaining 60% expressed 10-fold lower C alpha message than normal BM-derived clones.

Animals↗

Diversity and structure of human T cell receptor delta chain genes in peripheral blood gamma/delta-bearing T lymphocytes.

We have investigated the diversity and repertoire of human TCR delta chain variable gene segments in the human peripheral blood CD4- CD8- (double-negative) population, using rearrangement and expression studies and sequence analyses. 20 TCR delta DNA clones were derived from the RNA of bulk-cultured double-negative T cells and their nucleotide sequences determined. These clones can be classified into six different V delta subfamilies. The distribution, however, was uneven in these cells, with 16 of 20 being derived from the V delta 1 (9) and V delta 2 (7) subfamilies. The remaining subfamilies, V delta 3, V delta 4, V delta 5, and V delta 6, were only represented by one clone each. The majority of these subfamilies seem to consist of a single member, in contrast with the closely linked V alpha subfamilies, which, in most cases, consist of multiple members. Our findings suggest that only a limited number of V delta genes are used in human peripheral blood double-negative T cells and that two major V delta subfamilies (V delta 1 and V delta 2) are used more frequently. Sequence comparison of our cDNA clones to V alpha clones indicates that there is no overlap in usage of V alpha and V delta gene segments, except for the V delta 4 (V alpha 6) subfamily. Comparison of the different V delta sequences suggests that the majority of the sequence diversity is concentrated in the junctions between V, D, and J segments and results from extensive N region diversity.

Antigens, Differentiation, T-Lymphocyte↗

Sequence and organization of the human T cell delta chain gene.

A novel human T cell receptor (TcR) gene, located 85 kbp upstream to the C alpha coding regions, was isolated using human genomic clones to identify cDNA homologous to messages encoded by this region. The deduced protein sequence of this gene is highly homologous to that of the newly identified constant region found in the murine TcR alpha chain locus. This gene undergoes rearrangements and is expressed at the RNA level in human thymocytes, peripheral T cells and several leukemic T cell lines which have been shown to express the surface gamma-delta heterodimer, suggesting that this gene encodes the human T cell delta chain.

Amino Acid Sequence↗

Development of autoreactive L3T4+ T cells from double-negative (L3T4-/Ly-2-) Thy-1+ spleen cells of normal mice.

Thy-1+/L3T4-/Ly-2- spleen cells were purified from normal C57BL/6 (B6) and C,B-17 mice. Cells within this subset expressed the T cell receptor (TcR) for antigen: the majority of cells in this subset were CD3+; a fraction of the cells was stained with the monoclonal antibody (mAb) F23.1; and the TcR molecule was immunoprecipitable with mAb F23.1 from cells within this subset. In limiting dilution analyses, about 1/30 cells within this subset were growth inducible in vitro by stimulation with phorbol myristate acetate (PMA) plus ionomycin; conditioned media containing interleukin (IL) 1, IL2, IL3 or IL4 activity neither triggered nor promoted in vitro growth of these cells. The in vitro generated T cells displayed the Thy-1+/L3T4+/Ly-2- surface phenotype and were self-reactive, i.e., proliferated preferentially in response to syngeneic stimulator cells, and secreted IL2 and IL3 only in response to syngeneic but not allogeneic stimulator cells. The proliferative response of these cells to syngeneic stimulator cells was blocked by anti-self Ia mAb. This autoreactive helper T cell subset was not inducible in purified Thy-1+ spleen cell subsets from athymic nude mice or scid mice. Autoreactive helper T cells did not express detectable levels of the IL2 receptor (IL2R), and their proliferative response was not blocked by anti-IL2R mAb. From PMA plus ionomycin-stimulated double-negative Thy-1+ spleen cells, 14 T cell clones were established in long-term culture which displayed the CD3+CD4+CD8- surface phenotype and were self-reactive.

Animals↗

Sequence and organization of the diversity, joining, and constant region genes of the human T-cell delta-chain locus.

In this paper we describe the genomic organization and sequence of the human T-cell receptor delta-chain diversity, joining, and constant genes. There is one delta-chain constant region gene (C delta) located approximately equal to 85 kilobases (kb) upstream of the alpha-chain constant region. The delta-chain constant region consists of four exons, whose organization is very similar to that of the C alpha exons, suggesting that C alpha and C delta may have arisen from a gene duplication event. The first exon encodes most of the extracellular constant domain, the second encodes a hinge-like region, and the third encodes the entire transmembrane segment and intracytoplasmic portion, whereas the last exon contains exclusively 3' untranslated sequences. Three joining segments, J delta 1, J delta 2, and J delta 3, are found approximately equal to 12, approximately equal to 5.7, and approximately equal to 3.4 kb upstream of the first exon of C delta. Two functional diversity gene segments, D delta 1 and D delta 2, which can be productively translated in all three reading frames, are found 1 and 9.6 kb upstream of J delta 1. The presence of two D delta with such potential for diversity may offset the limited repertoire of the J delta and V delta genes. The spacer distribution in the recombinational signals flanking D delta and J delta segments allows recombination with V alpha gene segments; however, examination of delta-chain messages does not indicate that this is the case, suggesting that the delta chain uses unique variable gene segments and raising the question as to the reasons for this phenomenon.

Base Sequence↗

Limiting dilution analysis of the response of murine L3T4+ spleen cells to alloantigen.

Cell sorter-purified small splenic L3T4+ cells from B6 mice were clonally expanded under limiting dilution (LD) conditions by coculture for 4-6 days with irradiated allogeneic stimulator cells in culture medium supplemented with various growth factor preparations. Proliferating L3T4+ cell clones were detected by [3H]thymidine uptake; interleukin 2 (IL-2) production of restimulated L3T4+ cell clones was measured in a sensitive colorimetric assay. IL-3 (but not IL-1 or IL-4) supported clonal expansion in vitro of many L3T4+ cell clones produced IL-2. The data were consistent with the hypothesis that only a single titrated precursor cell was limiting in the system. In the response to class II (bm12) H-2 alloantigen, 1 in 40-200 L3T4+ cells was induced to clonal growth; in the response to class I (bm1) H-2 alloantigen, a tenfold lower frequency (1 in 600-800) of inducible L3T4+ B6 cells was measured. A fraction of the generated L3T4+ cell clones showed IL-2-independent growth: anti-IL-2 receptor monoclonal antibodies (MoAb) (7D4 and PC61.5) blocked the proliferation of about 80% of the IL-2-producing L3T4+ cell clones, while about 20% of these clones seemed resistant to inhibition of proliferation by these MoAb. We have thus defined an LD system with high cloning efficiency for L3T4+ cells that does not depend on exogenous IL-2 supplements.

Animals↗

Specificity repertoire of splenic Lyt-2+/F23+ cytotoxic lymphocyte precursors from B6 mice.

As revealed by flow cytometric analysis, about 30% of nylon wool nonadherent Lyt-2+ B6 spleen cells were F23+, i.e., were stained with the monoclonal antibody F23.1 directed against an allotypic T-cell receptor determinant. The specificity repertoire of splenic Lyt-2+/F23+ cytotoxic lymphocyte precursors (CLP) from B6 mice was investigated in a limiting dilution (LD) system designed to support clonal expansion in vitro of a representative fraction of this T-cell subset: in highly purified Lyt-2+ responder cells cocultured with mitomycin-treated F23 hybridoma cells in the presence of (recombinant) interleukin 2 under LD conditions, one out of three Lyt-2+/F23+ CLP gave rise to a functional cytotoxic T lymphocyte (CTL) clone. The split-well analysis of individual CTL populations demonstrated a clear-cut segregation of the lytic reactivities toward different allogeneic Con A blast targets. A large fraction of B6-derived CTL clones (3-10%) specifically lysed fully H-2 allogeneic (H-2k, H-2d), or H-2K mutant (bm1) targets. Self-reactive and allorestricted lytic patterns were not found.

Animals↗

Antigen-presenting T cells. I. Class I alloantigen (bm1)-bearing T lymphoblasts efficiently stimulate a primary clonal response of Lyt-2+ cytotoxic lymphocyte precursors of B6 origin.

The cytotoxic response of splenic Lyt-2+ T cells to class I H-2 alloantigen-bearing stimulator cells was analyzed under limiting dilution conditions. One of 50 to one of 200 nylon wool-nonadherent (FACS-purified), small Lyt-2+ spleen cells of B6 origin gave rise in vitro to a cytotoxic T lymphocyte clone that specifically lysed targets bearing bm1 alloantigen. This population of alloantigen-specific cytotoxic lymphocyte precursors (CLP) was activated by different types of bm1 stimulator cells with different efficiency: 2 X 10(5) nonfractionated spleen cells, 5000 normal peritoneal cells, 400 to 10(4) L3T4+ helper T blasts, or 2000 to 10(4) Lyt-2+ T blasts induced clonal growth of this CLP pool. Irradiated or mitomycin-treated small (L3T4+ or Lyt-2+) bm1-derived T cells were inefficient stimulator cells for this response. Supplementation of culture medium with (recombinant) interleukin 2 was necessary and sufficient to support clonal development of alloantigen-triggered CLP in the presence of allogeneic T blasts. Under these limiting dilution conditions, we observed comparable cloning efficiencies for (wild-type) Kb-allospecific splenic Lyt-2+ CLP from bm1 mice generated in response to either irradiated B6 spleen cells or inactivated B6-derived T cell lines (EL4 and RBL-5 lymphoma cells). The data indicate that normal T lymphoblasts as well as tumor T cell lines stimulate clonal development in vitro of class I H-2-allospecific cytotoxic T lymphocytes in the presence of interleukin 2.

Animals↗

Antigen-presenting T cells. II. Clonal responses of alloreactive and virus-specific self-restricted human cytotoxic T cell responses stimulated by T lymphoblasts.

The capacity of various stimulator cell types to present alloantigens or viral antigens to resting human CD8+ cytotoxic lymphocyte precursors (CLP) was analyzed in a limiting dilution culture system. Cell sorter-separated T lymphoblasts of both CD4+ and CD8+ phenotypes but not resting T cells were found to efficiently stimulate the clonal development of allogeneic CD8+ CLP. Thus, 5000 CD4+ T lymphoblasts activated as many (one out of 200 to one out of 300) allogeneic CLP as 50,000 peripheral blood mononuclear stimulator cells. This potent stimulator activity was found in CD4+ and CD8+ T lymphoblasts activated by mitogen, anti-T3 monoclonal antibody, or mixed leukocyte reactions. Cytotoxic T cells generated in this system were highly specific for HLA class I antigens. Furthermore, T lymphoblasts infected with mumps virus efficiently induced development of autologous CLP into CTL clones that were virus specific and self-HLA restricted, as shown by split-well analysis. The possible in vivo significance of antigen-presenting T lymphoblasts is discussed.

Antigen-Presenting Cells↗

Clonal activation of cytotoxic lymphocyte precursors by monoclonal anti-CD3 antibody: analysis of feeder cell requirements.

Activation of cytotoxic lymphocyte precursors (CLP) by the mitogenic monoclonal anti-CD3 antibody OKT3 was studied under limiting dilution (LD) culture conditions. One out of 2-6 E-rosette-purified T cells gave rise to a cytotoxic T cell (CTL) clone when cultured in the presence of OKT3 (0.2-2 ng/ml), recombinant IL-2 (100 U/ml), and irradiated feeder cells. Clonal CLP activation was optimally supported by a combination of E-rosette-depleted non-T feeder cells with small numbers of T cells added back. Among the cell lines tested, Fc-receptor-bearing monocytic cell lines U937 and HL-60 were efficient feeder cells whereas T cell lines (Jurkat, Molt-4, Ke37) did not support clonal CLP activation. These data indicate that clonal activation of CLP and differentiation into cytotoxic effector cells under LD culture conditions are critically influenced by the type and number of feeder cells used.

Antibodies, Monoclonal↗

Clonal specificity analysis of mitogen-activated murine T lymphoblasts.

We have determined the frequencies and specificities of MHC-reactive and MHC-restricted cytotoxic T lymphocyte precursors (CTL-p) in mitogen (ConA)-activated splenocytes of normal unprimed mice. The limiting dilution (LD) system supported the growth of one out of three Lyt2+ T cell blasts. The generated CTL-populations lysed blast cell targets specifically as determined by split well analyses. MHC-gene product expression was necessary for lysis to occur, since MHC-negative F9 teratocarcinoma cells were not lysed. The frequency determinations and split well analyses revealed: 1) equally high numbers (approximately 1/100) of CTL-p that generated specific allo-MHC or self-MHC reactive CTL populations, 2) high frequencies of CTL-p which recognized hapten (TNP) or minor H (MH)-antigens in the context of self MHC or allo-MHC determinants. The results are discussed with respect to antigen, restriction and receptor specificities of mitogen-activated unprimed T cell blasts.

Animals↗