Search PubMed⌕ Search

Biomedical subjects

T Honjo

Publications and source records attributed to T Honjo.

At least 163 records · Page 9Linked to original sources

IL-2 can support growth of CD8+ T cells but not CD4+ T cells of human IL-2 receptor beta-chain transgenic mice.

We have generated transgenic mice expressing the human (h) IL-2R beta-chain on lymphoid cells under the control of the mouse H-2Kd promoter. Spleen cells and thymocytes of the transgenic mice were cultured in the presence of 5 nM hIL-2. After a 10-day culture, the expanded populations were analyzed by flow cytometry and shown to be composed of CD8+ T cells and gamma delta T cells. Surprisingly, CD4+ T cells of the transgenic mice did not proliferate in response to hIL-2, although the CD4+ T cells expressed the transgenic hIL-2R beta-chain as well as the endogenous gamma-chain on their surface and bound 125I-labeled IL-2. When CD4+ T cells of the transgenic mice were stimulated with anti-CD3 mAb, the CD4+ T cells proliferated in response to hIL-2. These findings suggest that CD4+ T cells may require another triggering signal to respond to IL-2 even when IL-2Rs are expressed. By contrast, CD8+ T cells and gamma delta T cells respond to IL-2 as long as IL-2Rs are expressed.

Animals↗

Epstein-Barr virus nuclear antigen 2 exerts its transactivating function through interaction with recombination signal binding protein RBP-J kappa, the homologue of Drosophila Suppressor of Hairless.

Epstein-Barr virus nuclear antigen 2 (EBNA-2) plays a crucial role in B cell immortalization by Epstein-Barr virus (EBV), most probably by its ability to transactivate several cellular and viral genes. Recently, we showed that EBNA-2 interacts with the TP1 promoter of EBV through a cellular protein. In this report we provide evidence that this protein is recombination signal binding protein (RBP)-J kappa, highly conserved in evolution, and originally isolated by its ability to bind to the J kappa-type V(D)J recombination signal sequence. To identify the cellular protein interacting with the TP1 promoter, we performed electrophoretic mobility shift assays using binding sequences of known transcription factors, that carry partial homology to the crucial sequences of the EBNA-2 responsive element (EBNA-2RE), as competitor. Competition assays revealed the RBP-J kappa recognition site as a very efficient competitor of cellular TP1 promoter binding protein. In parallel, we purified the protein to homogeneity from Raji cells by two ion-exchange columns and affinity purification using the EBNA-2RE coupled to magnetic beads. Affinity purified fractions separated on SDS-PAGE revealed a single predominant band after silver staining which was recognized by anti-RBP-J kappa monoclonal antibody. These purified fractions exhibited binding specificity for EBNA-2RE and EBNA-2. In vitro-translated murine RBP-2 cDNA reacted with EBNA-2RE and EBNA-2 in the same fashion as the affinity purified protein. The interaction between RBP-J kappa and EBNA-2 is a prerequisite for EBNA-2-mediated transactivation of the TP1 promoter.

3T3 Cells↗

Heterogeneity and diversity of IgM and IgG lupus anticoagulants in an individual with systemic lupus erythematosus.

From one patient with systemic lupus erythematosus retaining lupus anticoagulant (LAC), we established 6 Epstein-Barr virus-transformed human B cell clones secreting antibodies that affect the coagulation assay. Two and 4 of the clones secreted IgM and IgG antibodies, respectively. Although all 6 antibodies displayed anticardiolipin activity in ELISA, the increased binding activity in the presence of beta 2-glycoprotein I was limited only to the IgG antibodies. Five antibodies (two IgM and three IgG) had LAC activity which prolonged the activated partial thromboplastin time (APTT), whereas one IgG antibody shortened the APTT. Two of the IgG producing clones had an identical Ig heavy chain gene rearrangement despite their opposite effects on the coagulation assay. These results demonstrated the heterogeneity of LACs and diversity among their physiological functions.

Adult↗

Molecular mechanisms for B lymphocyte selection: induction and regulation of antigen-receptor-mediated apoptosis of mature B cells in normal mice and their defect in autoimmunity-prone mice.

Apoptosis (programmed cell death) has been suggested to be involved in clonal elimination of self-reactive lymphocytes for the normal function of the immune system. By crosslinking the antigen receptor (surface immunoglobulin; sIg) on the peritoneal B cells of normal mice, we found that strong crosslinking of sIg induces apoptosis of mature B cells, suggesting that interaction with membrane-bound self-antigens may eliminate self-reactive mature B cells by apoptosis. Antigen-receptor-mediated B cell apoptosis is blocked when a signal is transduced via the CD40 molecule on the B cell surface. Because the ligand of CD40 (CD40L) is expressed on activated T helper cells, B cells may escape from apoptosis and are activated when the immune system interacts with foreign antigens, which are normally able to activate T helper cells. Moreover, sIg crosslinking fails to induce apoptosis of both bcl-2-transgenic mice and autoimmune-disease-prone New Zealand mice. In these mice, the defect in sIg-mediated apoptosis of mature B cells may allow generation of self-reactive B cells, resulting in pathogenic consequences.

Animals↗

Generation of lymphohematopoietic cells from embryonic stem cells in culture.

An efficient system was developed that induced the differentiation of embryonic stem (ES) cells into blood cells of erythroid, myeloid, and B cell lineages by coculture with the stromal cell line OP9. This cell line does not express functional macrophage colony-stimulating factor (M-CSF). The presence of M-CSF had inhibitory effects on the differentiation of ES cells to blood cells other than macrophages. Embryoid body formation or addition of exogenous growth factors was not required, and differentiation was highly reproducible even after the selection of ES cells with the antibiotic G418. Combined with the ability to genetically manipulate ES cells, this system will facilitate the study of molecular mechanisms involved in development and differentiation of hematopoietic cells.

Animals↗

Site-directed mutagenesis study on DNA binding regions of the mouse homologue of Suppressor of Hairless, RBP-J kappa.

To map regions important for DNA binding of the mouse homologue of Suppressor of Hairless or RBP-J kappa protein, mutated mouse RBP-J kappa cDNAs were made by insertion of oligonucleotide linkers or base replacement. DNA binding assays using the mutated proteins expressed in COS cells showed that various mutations between 218 Arg and 227 Arg decreased the DNA binding activity drastically. The DNA binding activity was not affected by amino acid replacements within the integrase motif of the RBP-J kappa protein (230His-269His). Replacements between 291Arg and 323Tyr affected the DNA binding activity slightly but reproducibly. These results indicate that the region encompassing 218Arg-227Arg is critical for the DNA binding activity of RBP-J kappa. This region did not show any significant homology to motifs or domains of the previously described DNA binding proteins. Using a truncation mutant protein RBP-J kappa was shown to associate with DNA as a monomer.

Alternative Splicing↗

Oral administration of lipopolysaccharides activates B-1 cells in the peritoneal cavity and lamina propria of the gut and induces autoimmune symptoms in an autoantibody transgenic mouse.

About a half of the antierythrocyte autoantibody transgenic (autoAb Tg) mice, in which almost all B cells are detected in the spleen, lymph nodes, and Peyer's patches, but not in the peritoneal cavity, suffer from autoimmune hemolytic anemia. The occurrence of this disease is strongly linked to production of autoAb by activated peritoneal B-1 cells in the Tg mice. In this study, we have shown that oral administration of lipopolysaccharides (LPS) activated B-1 cells in the lamina propria of the gut as well as the peritoneal cavity in the healthy Tg mice and induced the autoimmune symptoms in all the Tg mice. The activation of peritoneal and lamina propria B-1 cells by enteric LPS is found not only in the anti-RBC autoAb Tg mice and normal mice but also in the aly mice which congenitally lack lymph nodes and Peyer's patches. These results suggest that B-1 cells in the two locations may form a common pool independent of Peyer's patches and lymph nodes, and can be activated by enteric thymus-independent antigens or polyclonal activators such as LPS. The induction of autoimmune hemolytic anemia in the Tg mice by enteric LPS through the activation of B-1 cells in the lamina propria of gut and in the peritoneal cavity suggests that B-1 cells and bacterial infection may play a pathogenic role in the onset of autoimmune diseases.

Administration, Oral↗

Recognition sequence of a highly conserved DNA binding protein RBP-J kappa.

DNA binding specificity of the RBP-J kappa protein was extensively examined. The mouse RBP-J kappa protein was originally isolated as a nuclear protein binding to the J kappa type V(D)J recombination signal sequence which consisted of the conserved heptamer (CACTGTG) and nonamer (GGTTTTTGT) sequences separated by a 23-base pair spacer. Electrophoretic mobility shift assay using DNA probes with mutations in various parts of the J kappa recombination signal sequence showed that the RBP-J kappa protein recognized the sequence outside the recombination signal in addition to the heptamer but did not recognize the nonamer sequence and the spacer length at all. Database search identified the best naturally occurring binding motif (CACTGTGGGAACGG) for the RBP-J kappa protein in the promoter region of the m8 gene in the Enhancer of split gene cluster of Drosophila. The binding assay with a series of m8 motif mutants indicated that the protein recognized mostly the GTGGGAA sequence and also interacted weakly with ACT and CG sequences flanking this hepta-nucleotide. Oligonucleotides binding to the RBP-J kappa protein were enriched from a pool of synthetic oligonucleotides containing 20-base random sequences by the repeated electrophoretic mobility shift assay. The enriched oligomer shared a common sequence of CGTGGGAA. All these data indicate that the RBP-J kappa protein recognizes a unique core sequence of CGTGGGAA and does not bind to the V(D)J recombination signal without the flanking sequence.

Animals↗

Variable regions of Ig heavy chain genes encoding antithyrotropin receptor antibodies of patients with Graves' disease.

We have established EBV-transformed human B cell clones producing monoclonal antithyrotropin receptor antibodies from two patients with Graves' disease. We then isolated and characterized Ig H chain genes of 5 B cell clones with the thyrotropin-binding inhibitor Ig (TBII) activity and 4 B cell clones with the thyroid-stimulating antibody (TSAb) activity. We found that VH gene families used in the 5 TBII clones were all VH-III, although those of the four TSAb clones were diverse, including VH-II, -III, -IV, all -V. Most of VH segments used in TBII and TSAb are commonly used in other autoantibodies and fetal liver repertoire. The frequency of somatic mutations in TBII was higher than that in TSAb. Inasmuch as the same germline VH segment (V3-23) was used for both TBII and TSAb, the frequency and position of somatic mutations may be important for generation of TBII and TSAb.

Amino Acid Sequence↗

Structural analysis of the human VH locus using nonrepetitive intergenic probes and repetitive sequence probes. Evidence for recent reshuffling.

The organization and evolution of the 0.8-Mb JH-proximal region in the human Ig VH locus were studied by mapping DNA fragments hybridized to non-repetitive intergenic probes and by determination of the content and distribution of repetitive sequences. Southern blot analysis of cloned DNA covering the 0.8-Mb region with intergenic probes allowed us to map two to seven cross-hybridizing fragments by each probe. Clusters of fragments detected by an identical set of probes appeared repeatedly within the 0.8-Mb JH-proximal region. Distantly located VH segments flanked by a cluster of DNA fragments hybridized by the same set of probes were highly homologous to each other, providing evidence for recent frequent duplication and translocation throughout the locus. DNA fragments detected by the same set of probes were orientated with the same 5' to 3' order within the cluster, suggesting little involvement of inversion upon recombination in the locus. The content of interspersed Alu and L1 sequences in the VH locus were not significantly greater than the average in the genome.

Biological Evolution↗

Antigen-receptor cross-linking induces peritoneal B-cell apoptosis in normal but not autoimmunity-prone mice.

BACKGROUND: Programmed cell death (apoptosis) is an essential process in the development of various tissues and seems to be involved in the elimination of self-reactive immature T and B lymphocytes when they interact with self antigens. Indeed, signaling through the antigen receptor of immature T cells induces their apoptotic cell death. Immature B cells have also been shown to be eliminated when they interact with antigens, although the involvement of apoptosis has yet to be demonstrated. In contrast, little is known about the elimination of mature lymphocytes upon interaction with antigens. We have previously demonstrated that Ly1 B cells in the peritoneal cavity of transgenic mice undergo apoptotic cell death upon interaction with antigens. As Ly1 B cells constitute a B-cell lineage distinct from conventional B cells, it is important to know whether conventional B cells also undergo apoptosis upon antigen-receptor cross-linking. RESULTS: Our experiments show that, in vivo, strong cross-linking of cell-surface immunoglobulins induced apoptotic death of normal, mature B cells in the peritoneal cavity, regardless of whether they were conventional or Ly1 B cells. The same treatment did not kill, but rather activated, B cells in bcl-2-transgenic, apoptosis-resistant mice. Peritoneal B cells from autoimmune-disease-prone New Zealand mouse strains were also found to be resistant to cell death induced by surface immunoglobulin cross-linking. CONCLUSION: Self-reactive B cells are eliminated by the binding of antigen at both mature and immature stages. B-cell activation appears to require, in addition to antigen binding, a second signal that induces expression of rescue molecules such as the bcl-2 gene product. Resistance to B-cell apoptosis induced by antigen receptor cross-linking may play a crucial role in the production of autoantibodies and in the pathogenesis of the autoimmune diseases found in the strains of mice used here.

Animals↗

Structure and chromosomal localization of the human PD-1 gene (PDCD1).

A cDNA encoding mouse PD-1, a member of the immunoglobulin superfamily was previously isolated from apoptosis-induced cells by subtractive hybridization. To determine the structure and chromosomal location of the human PD-1 gene, we screened a human T cell cDNA library by mouse PD-1 probe and isolated a cDNA coding for the human PD-1 protein. The deduced amino acid sequence of human PD-1 was 60% identical to the mouse counterpart, and a putative tyrosine kinase-association motif was well conserved. The human PD-1 gene was mapped to 2q37.3 by chromosomal in situ hybridization.

Amino Acid Sequence↗

Transforming growth factor-beta induced class switch recombination may be modified during the cell proliferation restored by IL-2 stimulation.

Mouse spleen cells were stimulated, first by transforming growth factor beta (TGF-beta) and then by interleukin-2 (IL-2) in the presence of bacterial lipopolysaccharide (LPS). LPS plus IL-2 stimulation restored the cell proliferation suppressed by TGF-beta and increased the number of B cells. Both TGF-beta alone or TGF-beta plus IL-2 enhanced production of surface IgA-positive (sIgA+) cells in LPS-stimulated B-cell cultures. We characterized extrachromosomal circular DNAs generated in TGF-beta-primed and IL-2-stimulated B cells and identified the breakpoints of S mu/S gamma 3 recombinants which were the major intermediates of S mu and S alpha switch recombination. All switch recombination sites were dispersed evenly within both S mu and S gamma 3 regions. This even distribution of S mu/S gamma 3 breakpoints is in contrast to the site preference of class switch breakpoints induced by TGF-beta alone. These results suggest that IL-2-stimulated cell proliferation may modify class switch recombination primed by TGF-beta.

Amino Acid Sequence↗

Lineage marker-negative lymphocyte precursors derived from embryonic stem cells in vitro differentiate into mature lymphocytes in vivo.

We induced differentiation of mouse embryonic stem (ES) cells into lymphoid cells by culturing in methylcellulose, followed by the co-culture with a bone marrow stromal cell line ST2 in the presence of IL-7. These lymphoid cells expressed transcripts of the recombination activating genes, RAG-1 and RAG-2, as well as the C mu gene, although the lymphoid cells did not express surface antigens specific to T or B lymphocytes such as T200, CD4, CD8 and B220, or transcripts of B lymphocyte-specific genes such as lambda 5 and mb-1. D-J rearrangement was detectable in the lymphoid cells differentiated from ES cells in vitro and a sizeable number of both B and T lymphocytes were generated in vivo when the ES-derived lymphoid cells were transferred into RAG-2-deficient mice, which contain no B or T lymphocytes. The results indicate that in the in vitro co-culture system, ES cells give rise to immature lymphocyte precursors which have potentials to differentiate into both mature B and T lymphocytes in vivo. The ES-derived lineage marker-negative lymphocyte precursors would thus provide useful materials for studying early events of lymphopoiesis.

Animals↗

The recombination signal sequence-binding protein RBP-2N functions as a transcriptional repressor.

We have identified a cellular protein, RBP-2N, a presumed recombinase, as a repressor of transcription. Inhibition of transcription by RBP-2N was dependent on its DNA recognition site and was demonstrated in vitro and in vivo. This repression appears to be general, as transcription mediated by SP1 and Gal4/VP16 was inhibited by RBP-2N. The protein was purified to near homogeneity from human cells on the basis of its binding to a site present in the promoter of the adenovirus pIX gene. The DNA recognition sequence is 5'-TGGGAAAGAA, which is markedly different from the recombination signal sequence originally identified as the target site for this protein. The sequence of the purified protein is 97% identical with that published for the mouse RBP-2N protein. The reported homolog in Drosophila is Suppressor of Hairless. RBP-2N binding sites are present in a number of cellular and viral promoters, so RBP-2N may have a general role in transcriptional repression.

Amino Acid Sequence↗

Genetic characterization of Drosophila RBP-J kappa (suppressor of hairless) as a neurogenic gene in adult PNS development.

Drosophila RBP-J kappa is a novel sequence-specific DNA binding protein encompassing the integrase motif which is highly conserved in various organisms. Its gene has been shown to be identical to Suppressor of Hairless which regulates adult peripheral nervous system (PNS) development. To elucidate the precise function of the RBP-J kappa protein in adult PNS development, we analyzed transgenic files that misexpress the RBP-J kappa protein. Such studies have shown that RBP-J kappa regulates PNS cell fate in at least two steps: commitment to sensory mother cell by lateral inhibition and terminal differentiation into the socket and shaft cells. Taken together with analysis of phenotypes of Suppressor of Hairless mutants, RBP-J kappa shows the synergistic activity with neurogenic genes.

Animals↗

The bcl-2 gene product inhibits clonal deletion of self-reactive B lymphocytes in the periphery but not in the bone marrow.

To test whether the product of the bcl-2 proto-oncogene blocks clonal deletion of self-reactive B cells, we have generated transgenic mice carrying the bcl-2 gene and the immunoglobulin genes for the anti-erythrocyte 4C8 antibody. In these transgenic mice, clonal deletion of self-reactive immature B cells in the bone marrow was not inhibited in spite of expression of the bcl-2 gene. In contrast, self-antigen-induced clonal deletion of mature self-reactive Ly-1 B (B1) cells in the peritoneal cavity was inhibited in the transgenic mice. These results indicate that the mechanism for clonal deletion of immature self-reactive B cells in the bone marrow differs from that of mature self-reactive B cells in the periphery.

Animals↗

Diversification, not use, of the immunoglobulin VH gene repertoire is restricted in DiGeorge syndrome.

Immunoglobulin (Ig) genes were isolated from unamplified conventional as well as polymerase chain reaction-generated cDNA libraries constructed from the peripheral blood cells of a patient with complete DiGeorge syndrome. Comparison of the sequences of 36 heavy chain clones to the recently expanded database of human VH genes permitted identification of the germline VH genes that are expressed in this patient as well as placement of 19 of these genes in a partially resolved 0.8-mb region of the human VH locus. The pattern of VH gene use does not resemble the fetal (early) repertoire. However, as in the fetal repertoire, there are a number of cDNAs derived from germline genes that previously have been identified as autoantibodies. Two D mu sequences also were identified, as was another sequence resulting from a unique recombination event linking JH to an unidentified sequence containing a recombination signal sequence-like heptamer. All of the DiGeorge cDNAs are closely related to germline VH genes, showing little or no evidence of somatic mutation. In contrast, comparably selected IgM VH sequences derived from normal adult and age-matched human libraries, and from a second DiGeorge syndrome patient in whom the degree of thymic dysfunction is much less severe, exhibit considerable evidence of somatic mutation. The absence of somatic mutation is consistent with the atypical development of functional antibody responses associated with complete DiGeorge syndrome and implicates a role for T cells in the generation of diversity within the B cell repertoire.

Antibody Diversity↗