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Biomedical subjects

Y Hitoshi

Publications and source records attributed to Y Hitoshi.

At least 37 records · Page 2Linked to original sources

Delayed progression of a murine retrovirus-induced acquired immunodeficiency syndrome in X-linked immunodeficient mice.

The murine acquired immunodeficiency syndrome (MAIDS) caused by defective LP-BM5 murine leukemia virus (MuLV) is a disease that shows severe immunodeficiency with abnormal lymphoproliferation, and hypergammaglobulinemia in susceptible C57BL/6 (B6) mice. To examine the cellular mechanisms of development of MAIDS, we injected LP-BM5 MuLV intraperitoneally into B6 mice bearing the X chromosome-linked immunodeficiency (xid). xid mice lack functionally mature B cells including Ly-1 B cells (also known as B-1 cells). All B6 mice died by 20 wk after LP-BM5 MuLV inoculation. In marked contrast, xid mice have continued to survive without any sign of MAIDS-related symptoms till at least 20 wk after the inoculation. The delayed progression of MAIDS in xid mice appears to depend on xid mutation, according to our experiments using both sexes of (B6.xid x B6)F1 and (B6 x B6.xid)F1 mice. Furthermore, Ly-1 B cells, enriched by a FACS, were shown to integrate the defective genome and appeared to be a major virus-infected B cell population. Our data corroborate that Ly-1 B cells play an important role in the induction and progression of MAIDS.

Animals↗

Effect of anti-IL-5 monoclonal antibody on allergic bronchial eosinophilia and airway hyperresponsiveness in mice.

The effect of pretreatment with rat anti-murine interleukin-5 (IL-5) antibody on antigen-induced bronchial eosinophilia and bronchial reactivity to acetylcholine in mice were studied. Three inhalations of an antigen by actively sensitized animals resulted in an increase in airway reactivity to acetylcholine. Twenty-four hours after the final inhalation, the number of leukocytes (mononuclear cells and eosinophils) and the amount of IL-5 in BALF increased significantly. Anti-IL-5 monoclonal antibody inhibited the antigen-induced increase of eosinophils with little effect on bronchial hyperreactivity.

Animals↗

IL-5 receptor positive B cells, but not eosinophils, are functionally and numerically influenced in mice carrying the X-linked immune defect.

Mouse IL-5 (mIL-5) acts on B cells and eosinophils to induce growth and differentiation through the mIL-5 specific receptor (mIL-5R). The functional high-affinity mIL-5R is a heterodimer composed of alpha and beta chains. We investigated the expression of mIL-5R and the responsiveness of B cells and eosinophils to mIL-5 in X-linked immunodeficient (xid) mice. mIL-5R expression analyzed by using mAbs specific for alpha and beta chains revealed that xid B cells had fewer mIL-5R alpha +mIL-5R beta + than BALB/c B cells. In particular, a decrease in the number of peritoneal mIL-5R+ B cells among Ly-1 B cells (known as B-1 cells) was remarkable. Furthermore, the frequency of precursors of mIL-5 responsive B cells in xid mice was approximately 100-fold lower than that of BALB/c mice. Interestingly, sorted mIL-5R+ peritoneal B cells from xid mice displayed a low response to mIL-5. Intraperitoneal injection of mIL-5 into BALB/c mice induced polyclonal IgM production and an increase in the number of eosinophils. The same regimen failed to induce an increase in the same parameters in xid mice. However, xid mice showed mIL-5-induced eosinophilia in peripheral blood to a similar extent as BALB/c mice. Eosinophils from mIL-5-injected xid mice expressed both alpha and beta chains of mIL-5, and responded to mIL-5 with prolonged in vitro survival.

Animals↗

Novel monoclonal antibodies specific for human cardiac myosin light-chain 1: useful tools for analysis of normal and pathological hearts.

To investigate the developmental, physiological and pathophysiological roles of human cardiac myosin light-chain 1 (LC1s), we developed two novel monoclonal antibodies (KA1 and KB1) against human cardiac LC1s and examined LC1s in normal and pathological hearts immunohistochemically. KA1 and KB1 were specific only for atrial LC1 (ALC1) and for both ALC1 and ventricular LC1 (VLC1), respectively, in human hearts. Among human tissues tested, including skeletal muscle, vascular smooth muscle, and liver, KA1 did not crossreact with proteins in any other tissues than atria, whereas KB1 crossreacted with the slow-type LC1 of skeletal muscle. Among adult mammalian hearts of several other species including pig, dog, hamster, and rat, KA1 and KB1 crossreacted only with ALC1 and with both ALC1 and VLC1, respectively. ALC1 was strongly and uniformly observed in human fetal atria and ventricles and in normal adult human atria, but sporadically in normal adult human ventricles. In the overloaded ventricle (dilated cardiomyopathy), ALC1 was highly augmented but not uniform. These results suggest that the fetal VLC1 is immunohistochemically identical to the adult type of ALC1 and that ALC1 is expressed homogeneously in human fetal ventricles and sporadically in normal adult ventricles, and is re-expressed heterogeneously and in an increased amount in the overloaded ventricle.

Antibodies, Monoclonal↗

Role of the interleukin 5 receptor system in hematopoiesis: molecular basis for overlapping function of cytokines.

Interleukin 5 (IL-5) is a kind of peptide hormone released from T lymphocytes of mammals infected with microorganisms or parasites. It is an acidic glycoprotein with a molecular mass of 40 to 50 kDa that consists of a homodimer of polypeptides. It controls hematopoiesis so that it increases natural immunity. In the mouse, IL-5 acts on committed B cells to induce differentiation into Ig-producing cells and on common progenitors for CD5+ pre-B cells and CD5+ macrophages to support their survival. The antibodies secreted by CD5+ B cells seem to be responsible for the primary protection against the infection with microorganisms or parasites. It also supports the growth and/or differentiation of eosinophil precursor and mature eosinophils, which can be effective for the removal of parasites in combination with the antibodies against them. Murine IL-5 receptor (IL-5R) consists of two different polypeptide chains; alpha chain and beta chain. The IL-5R alpha chain is 60 kDa protein that binds IL-5 with low affinity. The IL-5R beta chain is a 130 kDa protein which does not bind IL-5 by itself but is necessary to form the high affinity IL-5R. The beta chain was identified by using one of the anti-IL-5R mAb and anti-IL-3R mAb as the IL-3R homologue. This beta chain is also used as the beta chain of GM-CSF receptor. This fact suggests that there is a common signaling mechanism among these cytokines and efficient cooperation among them. At the same time, these findings may explain the overlapping role of these cytokines in the development of granulocytes.

Animals↗

Differential regulation of IgA production by TGF-beta and IL-5: TGF-beta induces surface IgA-positive cells bearing IL-5 receptor, whereas IL-5 promotes their survival and maturation into IgA-secreting cells.

Transforming growth factor beta (TGF-beta) and IL-5 have been shown to augment IgA production by LPS-stimulated murine B cells. We investigated the effect of TGF-beta on the expression of surface Ig-isotype and IL-5 receptor on LPS-stimulated B cells. TGF-beta increased the proportion of both surface IgA-positive (sIgA+) B cells and sIgG2b+ B cells and enhanced IgA and IgG2b production by LPS-stimulated B cells. TGF-beta synergized with IL-5 only for IgA production of the seven Ig-isotypes and in combination with IL-5 caused a significant increase in the proportion of sIgA+ B cells up to 17.4%. In contrast, IL-5 decreased the proportion of sIgG2b+ B cells and sIgG3+ B cells and inhibited the production of IgG2b and IgG3 by LPS-stimulated B cells. About 50% of sIgA+ cells induced by TGF-beta expressed IL-5 receptor. They secreted peak levels of IgA and seemed to maintain long viability in the presence of IL-5; whereas TGF-beta had the opposite effects on sIgA+ B cells and down-regulated the IL-5 receptor expression. These results indicate that TGF-beta increases the number of sIgA(+)- and IL-5 receptor-positive B cells which respond to IL-5 giving rise to IgA-secreting cells and also support the notions that TGF-beta preferentially induces switching to sIgA+ B cells and IL-5 induces the maturation of postswitch sIgA+ B cells into IgA-secreting cells in a stepwise fashion.

Animals↗

Increased expression of atrial myosin light chain 1 in the overloaded human left ventricle: possible expression of fetal type myocytes.

We examined the isoforms of myosin light chain 1 in the human left ventricles using pyrophosphate and sodium dodecyl sulfate polyacrylamide gel electrophoresis, peptide mapping, and immunoblotting with monoclonal antibodies against human atrial light chain 1. The relationship between hemodynamic parameters and light chain 1 isoform composition was compared among groups of patients with hypertrophic cardiomyopathy (n = 8), dilated cardiomyopathy (n = 9) and aortic stenosis (n = 5), and controls (n = 6). (1) The light chain 1, which differed from ventricular light chain 1 found in the normal adult ventricle, was highly expressed in the overload left ventricle, and was identical to atrial and fetal ventricular light chain 1 with respect to the physiochemical and immunological properties. (2) The expression of atrial/fetal light chain 1 was augmented in the subendocardial area in comparison with the mid- or subepicardial areas in the hypertrophied left ventricles. (3) The values (%) of the relative expression of atrial/fetal light chain 1 to total light chains 1 determined by densitometric analysis were significantly higher in patients with dilated cardiomyopathy (40.2 +/- 5.8) and those with aortic stenosis (43.1 +/- 6.2) than in the controls (16.9 +/- 2.5) (p less than 0.01), but there was no significant difference between the patients with hypertrophic cardiomyopathy (28.0 +/- 3.7) and the controls. (4) The values of the ratio significantly correlated with those of peak circumferential wall stress (r = 0.53, p less than 0.005). These results suggest that atrial/fetal light chain 1 is expressed in the left ventricles in response to the increased hemodynamic load.

Adult↗

Increased expression and regional differences of atrial myosin light chain 1 in human ventricles with old myocardial infarction. Analyses using two monoclonal antibodies.

BACKGROUND: This study was designed to examine the expression of atrial/fetal-type myosin light chain 1 (ALC1) in human ventricles with old myocardial infarction and in control hearts. METHODS AND RESULTS: The expression of immunoreactive (ir) ALC1 was examined in the subendocardial and subepicardial myocardium of the infarcted and the noninfarcted regions in the left ventricles with old myocardial infarction (n = 12) and of the control left ventricles (n = 8). For the analysis, we prepared two monoclonal antibodies, KA1 and KB1, that were specific for only ALC1 and for both ALC1 and ventricular myosin light chain 1 (VLC1), respectively. The ir-ALC1 expression ratio [ALC1/(ALC1 + VLC1), %] of the subendocardial myocardium, determined densitometrically by Western blotting with KB1, was significantly higher in the infarcted region (11.4 +/- 7.3%) than in the noninfarcted region (4.7 +/- 2.3%, p < 0.001) and the control ventricle (1.0 +/- 1.5%, p < 0.0001). In the infarcted region, the subendocardial myocardium contained a significantly greater percentage of ir-ALC1 than the subepicardial myocardium (5.8 +/- 6.7%, p < 0.005). The ir-ALC1 expression ratio had a significant negative correlation with the value of tissue protein concentration (milligrams protein per gram wet weight). The immunohistochemical study with KA1 revealed that the surviving myocytes included in the infarcted region, especially in the ventricular aneurysm, expressed ir-ALC1 strongly in comparison with those in the noninfarcted or the control ventricles. CONCLUSIONS: These results demonstrate increased expression of ALC1 and the regional differences in the failing left ventricles with old myocardial infarction. We conclude that the reexpression of ALC1 in infarcted ventricles occurs as one of the regional responses to increased load and may be a useful biochemical marker for the appearance of fetal-type myocytes.

Aged↗

Characterization of the human IL-5 receptors on eosinophils.

Interleukin 5 (IL-5) receptors on the cell surface of human eosinophils and other hematopoietic cells were characterized using radiolabeled recombinant IL-5. The binding of 35S-labeled murine IL-5 to eosinophils from normal human peripheral blood was rapid and saturable within a 30-min incubation at both 4 and 37 degrees C. The binding of 35S-labeled murine IL-5 to eosinophils was inhibited by an excess of unlabeled murine and human IL-5 or by an anti-murine IL-5 monoclonal antibody (NC17) but not by other human cytokines. Scatchard plot analysis revealed that human eosinophils have a single class of high affinity receptor (Kd 170-330 pM; number of binding sites: 260-380/cell). IL-5 receptors on eosinophils from four patients with eosinophilia displayed similar characteristics. Affinity cross-linking experiments resulted in the identification of human IL-5 receptor on eosinophils with a molecular mass of 55-60 kDa. Among the various cells besides eosinophils and cell lines that we could test, a subline of HL-60 (YY-1 cells) was found to display a significant number of IL-5 receptor. These results suggest that IL-5 may act on limited types of cells in the human system.

Aged↗

Transgenic mice expressing a B cell growth and differentiation factor gene (interleukin 5) develop eosinophilia and autoantibody production.

Interleukin 5 (IL-5) has been suggested to be involved in the growth and differentiation of B cells and eosinophils. Especially, Ly-1+ B cells, which have been considered to produce autoantibodies, are selectively developed by this lymphokine in long-term bone marrow culture. To envisage the possible engagement of IL-5 in the development of these cells in vivo, transgenic mice carrying the mouse IL-5 gene ligated with a metallothionein promoter were generated. Transgenic mice carrying the IL-5 gene exhibited elevated levels of IL-5 in the serum and an increase in the levels of serum IgM and IgA. A massive eosinophilia in peripheral blood, bone marrow, and spleen, and an infiltration of muscle and liver with eosinophils, were observed. When cadmium-containing saline was injected intraperitoneally into transgenic mice, IL-5 production was augmented about five times within 24 h, and a distinctive Ly-1+ B cell population became apparent in the spleen after 5 d. IL-5 receptors were detected on those cells by monoclonal antibodies against IL-5 receptors. Another interesting finding in these transgenic mice was an increase in polyreactive anti-DNA antibodies of IgM class. It is suggested, therefore, that aberrant expression of the IL-5 gene may induce accumulation of Ly-1+ B cells and eosinophils. Furthermore, this IL-5 transgenic mouse can be a model mouse for eosinophilia, and we can determine the role of IL-5 in the differentiation of Ly-1+ B cells and eosinophils by using this mouse.

Animals↗

In vivo administration of antibody to murine IL-5 receptor inhibits eosinophilia of IL-5 transgenic mice.

We investigated the in vivo role of interleukin 5 (IL-5) and its receptor (IL-5R) in eosinophil growth and differentiation. When mice were administered IL-5 i.p., an increase in the number of eosinophils was observed within 5 days in peripheral blood and the peritoneal cavity. Hypereosinophilia was observed in IL-5 transgenic mice who displayed constitutive production of IL-5. A binding assay with 35S-labeled IL-5 revealed the presence of two classes of IL-5 binding sites (low and high affinity) on the surface of eosinophils. IL-5Rs on eosinophils were recognized using mAbs against murine IL-5R. When the IL-5 transgenic mice were passively administered with anti-murine IL-5R mAbs, the number of recognizable eosinophils in peripheral blood dropped within 5 days to normal levels. The antibody treatment also prevented the increase in the number of eosinophils in IL-5-injected mice. The inhibition of the above experimental eosinophilia was also observed by the passive administration of anti-IL-5 mAb. The results of the in vivo experiments clearly demonstrate that IL-5 plays an essential role in in vivo eosinophilopoiesis and may be acting on eosinophils or their precursors directly through IL-5Rs, resulting in preferential growth of this lineage of hematopoietic cells. It can also be stressed that IL-5 regulates a specific lineage of hematopoietic cells (eosinophils).

Animals↗

Molecular characterization of the beta chain of the murine interleukin 5 receptor.

Interleukin 5 (IL-5) is a multifunctional cytokine that regulates the proliferation and differentiation of hematopoietic cells including B cells and eosinophils. The murine IL-5 acts on target cells via an IL-5 specific high-affinity receptor (Kd approximately 150 pM) that has been proposed to be composed of at least two membrane polypeptide chains. The p60 component recognized by anti-murine IL-5 receptor mAbs H7 and T21 binds IL-5 with low affinity (Kd approximately 10 nM). The other component is p130, detectable by following cross-linking experiments with IL-5. Using H7, T21, and R52.120 mAbs specific to murine IL-5 receptor, we characterized the molecular nature of the p130 of the high affinity receptor for murine IL-5. R52.120 mAb did not recognize the IL-5 binding recombinant p60 expressed on COS7 cells, but reacted with p130/140 on IL-5-dependent cell lines. R52.120 mAb showed partial inhibition of the IL-5-induced proliferation of the IL-5-dependent early B cell line Y16 at high IL-5 concentrations. Addition of R52.120 mAb together with H7 or T21 mAb caused more striking inhibition of the IL-5-dependent proliferation than that caused by either of them alone. R52.120 mAb down-regulated the number and dissociation constant of IL-5 binding sites with high affinity without affecting the levels of these with low-affinity. It also preferentially inhibited the formation of the cross-linked complex of p130 with radiolabeled IL-5. These results indicate that p130/p140, recognized by R52.120 mAb, is indispensable, together with p60, for the formation of high affinity IL-5 receptor. We propose to designate p60 and p130/p140 as the alpha and beta chain of IL-5 receptor, respectively.

Animals↗

Murine interleukin 5 receptor isolated by immunoaffinity chromatography: comparison of determined N-terminal sequence and deduced primary sequence from cDNA and implication of a role of the intracytoplasmic domain.

The murine interleukin 5 receptor (IL-5R) was identified by utilizing an immobilized IL-5 and an immobilized monoclonal antibody against the murein IL-5R (designated H7 mAb). The H7 mAb immunoaffinity-purified materials from the extract of cell-surface radioiodinated T88-M cells (an IL-5-dependent early B cell line) using 3-[(3-cholamidopropyl)dimethylammonio]-1-propanesulfonate (CHAPS) were reacted with an immobilized IL-5 matrix. SDS-PAGE of the adsorbed fraction revealed a single band at approximately 60 kDa. The binding of the 60 kDa protein to the immobilized IL-5 matrix was inhibited by the excess IL-5. The CHAPS-extract depleted of the 60 kDa protein by the absorption with H7 mAb did not contain any IL-5 binding proteins. Immunoaffinity procedure provided a final 7400-fold purification, based on an estimation of the content of the 60 kDa protein (approximate purity: 20%) from the silver-stained pattern of SDS-PAGE. Actin was copurified with the 60 kDa protein at an approximate ratio of 1:1, suggesting that the intracytoplasmic domain of the IL-5R may interact with actin. Furthermore, soluble IL-5R (molecular mass: 50 kDa) was purified by the H7 mAb-immunoaffinity chromatography. The purified soluble IL-5R was capable of inhibiting the binding of IL-5 to T88-M cells. Preparative SDS-PAGE followed by electroblotting onto a membrane permitted the determination of the N-terminal sequence of the IL-5R. The determined N-terminal sequence of the IL-5R and the deduced primary sequence from recently isolated cDNA were compared.

Actins↗

Role of interleukin-5 in local accumulation of eosinophils in mouse allergic peritonitis.

The injection of ragweed pollen extracts into the peritoneal cavity of actively immunized mice caused an accumulation of eosinophils in the cavity. We investigated the role of interleukin-5 (IL-5), one of the T-cell-derived factors, in this in vivo local accumulation. Ciclosporin, an immunosuppressant that mainly suppresses T cell functions, dose-dependently inhibited the in vivo local accumulation. Injections of the neutralizing antibody to IL-5 into the cavity decreased the number of the accumulating eosinophils. When the peritoneal cells of the immunized mice were cultured in the presence of the antigen in vitro, IL-5 activity was detected in the culture supernatant. The results indicate that IL-5 plays an important role in the in vivo local accumulation of eosinophils after an antigen challenge.

Allergens↗

The role of interleukin-5 in protective immunity to Strongyloides venezuelensis infection in mice.

We depleted or neutralized interleukin-5 (IL-5) and IL-5 receptor of C57BL/6 mice, using rat anti-murine IL-5 monoclonal antibody (NC17) and anti-murine IL-5 receptor monoclonal antibody (H7). Mice treated with these monoclonal antibodies were infected with Strongyloides venezuelensis larvae. The time-course of faecal egg output and peripheral eosinophilia were monitored. In a primary infection, anti-IL-5 treatment did not affect faecal egg output, although the eosinophil count in peripheral blood was markedly reduced. There was no difference in intestinal worm burden or faecal egg output between anti-IL-5 treated and non-treated mice. In a secondary infection, worms were expelled from the small intestine of anti-IL-5-treated mice as well as from non-treated mice. Worm recovery from the lungs of mice treated with either anti-IL-5 or anti-IL-5 receptor monoclonal antibody was the same as that of normal controls. However, a marked reduction in worm recovery was observed in re-infected mice that had not been treated with monoclonal antibodies. Treatment with anti-IL-5 or anti-IL-5 receptor monoclonal antibody suppressed blood and tissue eosinophilia. Thus the results suggested that the host's protective immunity against tissue-migrating larvae was IL-5-dependent but intestinal immunity was not.

Animals↗

Interleukin 5 and interleukin 3 induce serine and tyrosine phosphorylations of several cellular proteins in an interleukin 5-dependent cell line.

Murine interleukin 5 (IL-5), a lymphokine produced by helper T cells, is involved in the regulation of growth and differentiation of B cells and eosinophils. To elucidate the intracellular events via the IL-5 receptor, we have investigated IL-5-induced protein phosphorylation in an IL-5-dependent murine early B-lineage cell line (T88-M). The rapid phosphorylation of a 60-kDa protein at serine residues and of 140-, 92-, 53-, 48-, and 45-kDa proteins at tyrosine residues were induced by the stimulation of T88-M cells with IL-5. T88-M cells were found to proliferate in response to IL-3 as well as IL-5, and the phosphoproteins in T88-M cells could be induced by IL-3 stimulation in a similar manner of those induced by IL-5. Thus, these results suggest that the protein phosphorylation events in T88-M cells may be shared by both pathways via the IL-5 receptor and the IL-3 receptor.

Animals↗