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J Takagi

Publications and source records attributed to J Takagi.

At least 37 records · Page 2Linked to original sources

Structural and functional studies with antibodies to the integrin beta 2 subunit. A model for the I-like domain.

To establish a structure and function map of the beta2 integrin subunit, we mapped the epitopes of a panel of beta2 monoclonal antibodies including function-blocking, nonblocking, and activating antibodies using human/mouse beta2 subunit chimeras. Activating antibodies recognize the C-terminal half of the cysteine-rich region, residues 522-612. Antibodies that do not affect ligand binding map to residues 1-98 and residues 344-521. Monoclonal antibodies to epitopes within a predicted I-like domain (residues 104-341) strongly inhibit LFA-1-dependent adhesion. These function-blocking monoclonal antibodies were mapped to specific residues with human --> mouse knock-out or mouse --> human knock-in mutations. Combinatorial epitopes involving residues distant in the sequence provide support for a specific alignment between the beta-subunit and I domains that was used to construct a three-dimensional model. Antigenic residues 133, 332, and 339 are on the first and last predicted alpha-helices of the I-like domain, which are adjacent on its "front." Other antigenic residues in beta2 and in other integrin beta subunits are present on the front. No antigenic residues are present on the "back" of the domain, which is predicted to be in an interface with other domains, such as the alpha subunit beta-propeller domain. Most mutations in the beta2 subunit in leukocyte adhesion deficiency are predicted to be buried in the beta2 subunit I-like domain. Two long insertions are present relative to alpha-subunit I-domains. One is tied down to the back of the I-like domain by a disulfide bond. The other corresponds to the "specificity-determining loop" defined in beta1 and beta3 integrins and contains the antigenic residue Glu(175) in a disulfide-bonded loop located near the "top" of the domain.

Amino Acid Sequence↗

Computational design of an integrin I domain stabilized in the open high affinity conformation.

We have taken a computational approach to design mutations that stabilize a large protein domain of approximately 200 residues in two alternative conformations. Mutations in the hydrophobic core of the alphaMbeta2 integrin I domain were designed to stabilize the crystallographically defined open or closed conformers. When expressed on the cell surface as part of the intact heterodimeric receptor, binding of the designed open and closed I domains to the ligand iC3b, a form of the complement component C3, was either increased or decreased, respectively, compared to wild type. Moreover, when expressed in isolation from other integrin domains using an artificial transmembrane domain, designed open I domains were active in ligand binding, whereas designed closed and wild type I domains were inactive. Comparison to a human expert designed open mutant showed that the computationally designed mutants are far more active. Thus, computational design can be used to stabilize a molecule in a desired conformation, and conformational change in the I domain is physiologically relevant to regulation of ligand binding.

Amino Acid Substitution↗

Three-dimensional helical computed tomographic angiography in neonates and infants with complex congenital heart disease.

BACKGROUND: For the clinical management of patients with complex congenital heart disease (CHD), accurate evaluation of their morphologic conditions is critical. Three-dimensional (3D) helical computed tomography (CT) angiography has been used to assess the vascular system in adult patients; the indication for complex CHD, especially in the neonatal period, has not yet been defined. Therefore the purposes of our study were to determine the quality and limitations of current 3D helical CT angiography for neonates and infants with complex CHD and to assess the clinical utility of this technique. METHODS AND RESULTS: 3D helical CT angiography was performed in 17 patients with various types of complex CHD. Their median age was 41 days (range 3 days to 9 months), and mean body weight was 3.6 kg (range 2.2 to 8.5 kg). All 3D images were produced with the 3D reconstruction algorithm of shaded-surface display. Oral sedation was required in only 4 infants during the procedure. 3D helical CT angiography clearly demonstrated the shape and spatial relation of great arteries, proximal branch pulmonary arteries, anomalous pulmonary venous connections, the patent ductus arteriosus, and a shunt. The 3D information of extracardiac morphologic characteristics and 3D anatomic relation of each extracardiac structure were easily recognized by this imaging process. However, intracardiac structure could not be visualized because of blurred and/or unclear edges of the ventricular wall caused by respiratory movement. CONCLUSIONS: 3D helical CT angiography represents an important additional diagnostic tool and may become an alternative method to angiography or other noninvasive techniques used in the evaluation of extracardiac anomalies in neonates and infants with complex CHD.

Adult↗

12-hydroxy-5Z, 8Z, 10E, 14Z, eicosatetraenoic acid (12-HETE) stimulates cAMP production in normal human fibroblasts.

We report here that the 12-lipoxygenase metabolite of arachidonic acid, 12-hydroxy-5Z, 8Z, 10E, 14Z, eicosatetraenoic acid (12-HETE), stimulates cAMP production in human fibroblasts among various cultured cell lines tested. Although 12-HETE seemed to stimulate the phospholipase C (PLC)-protein kinase C (PKC) system, inhibitors against PLC and PKC did not reduce the cAMP production induced by 12-HETE, indicating that the activation of PLC-PKC system is not positively coupled with the stimulation of cAMP production. On the other hand, the cAMP production induced by 12-HETE was dependent on the Ca2+/calmodulin system in the cells. The results suggest that 12-HETE specifically stimulates Ca2+/calmodulin-dependent adenylyl cyclase to increase cAMP level in the fibroblasts.

1-Methyl-3-isobutylxanthine↗

Activity-independent cell adhesion to tissue-type transglutaminase is mediated by alpha4beta1 integrin.

Transglutaminases (TGases) are enzymes which catalyze cross-link formation between glutamine residues and lysine residues in substrate proteins. We have previously reported that one of the TGases, blood coagulation factor XIIIa (FXIIIa), is capable of mediating adhesion of various cells. In this paper, we report for the first time that tissue-type transglutaminase (TGc) also has cell adhesion activity. TGc-coated plastic surface promoted adhesion and spreading of cells in a TGc concentration-dependent manner. However, there are some obvious differences between cell adhesion mediated by TGc and FXIIIa. As was reported previously, the adhesion to FXIIIa is dependent on its TGase activity. In contrast, the TGc-mediated cell adhesion is independent of its TGase activity: 1) The modification of the active center cysteine with iodoacetamide blocked the enzyme activity without any effect on cell adhesion; 2) the addition of Mg2+ did not induce the enzyme activity, but it was as effective as Ca2+ for cell adhesion; 3) the addition of NH4+ inhibited the enzyme activity but did not affect the cell adhesion significantly. The integrins involved in these cell adhesions are quite different. In the case of FXIIIa, alpha vbeta3 and alpha5beta1 integrins are involved and consequently the RGD peptide substantially inhibited the adhesion. On the other hand, the cell adhesion to TGc is mediated by alpha4beta1 integrin but not alpha5beta1; a CS-1 peptide, which represents the binding site of fibronectin to alpha4beta1 integrin, completely inhibited the cell adhesion to TGc. It is possible that TGc and FXIIIa may mediate cell adhesion under different physiological and pathological situations.

Animals↗

Expression of the molecule detectable by anti-propolypeptide of von Willebrand factor antibody in rat mesangial cells in anti-Thy 1.1 mAb 1-22-3 induced glomerulonephritis: A marker of injured mesangial cells.

We have previously reported that propolypeptide of von Willebrand factor (pp-vWF) binds to collagen with an affinity comparable to that of mature vWF, inhibits collagen-induced platelet aggregation, is cross-linked with laminin, and also serves as a ligand for very-late antigen 4 integrin. These observations from in vitro experiments suggest that pp-vWF is incorporated in the extracellular matrix and affects the cell-matrix interaction and that pp-vWF functions in leukocyte recruitment to inflammatory and vascular injury sites. We, therefore, hypothesize that pp-vWF might be involved in the induction and/or progression of mesangial proliferative glomerulonephritis. To test this hypothesis, we examined the kinetics of the immunostaining of the molecule detectable by an affinity-purified anti-pp-vWF antibody in rat glomeruli in monoclonal antibody 1-22-3 induced glomerulonephritis. Immunostaining by pp-vWF antibody was observed in the nuclear rim of mesangial cells in monoclonal antibody 1-22-3 induced glomerulonephritis. Positive staining first appeared on day 10 after monoclonal antibody injection, when mesangial cell proliferation and mesangial matrix expansion had already begun. Staining was still detected on day 56, when morphologic alterations observed by light microscopy had been normalized. The pp-vWF antibody recognized molecule appeared later than alpha-smooth muscle actin or collagen type I. Positive staining was not detected in cultured mesangial cells. It should be noted that the positive staining by pp-vWF antibody in mesangial cells was still detected in previously injured glomeruli that have almost recovered normal morphology. These observations indicate that positive staining by pp-vWF antibody could be a very useful marker for identifying a past episode of injury in mesangial cells.

Animals↗

Two-stage activation for alpha5beta1 integrin binding to surface-adsorbed fibronectin.

By analyzing the functional binding of alpha5beta1 integrin to adsorbed fibronectin in intact cells, we demonstrate that integrin activation results in linear increases in adhesion strength as a function of ligand density, suggesting that modulation of the receptor-ligand interaction is the dominant mechanism for adhesion during the initial stages of adhesion and that cooperative binding contributes little to initial adhesion strength. Using this experimental framework, we show the existence of three distinct activation states for alpha5beta1 integrin binding to adsorbed fibronectin for both passive, antibody-induced and active, cell-controlled activation. During the initial phase of adhesion, alpha5beta1 integrin is activated in an energy-dependent process from the nonbinding ground state to an intermediate state in which the receptor binds fibronectin and provides significant mechanical coupling. In later stages of adhesion maturation, alpha5beta1 integrin is activated to a higher binding state, which provides significant increases in adhesion strength compared with the intermediate state. These multiple binding states most likely result from different integrin conformations and reflect distinct interactions between alpha5beta1 and sites on adsorbed fibronectin. Multiple activation states for alpha5beta1 suggest the existence of distinct stages in adhesion signaling and strengthening and can provide a versatile mechanism for the regulation of adhesive interactions.

Adsorption↗

Thyrotropin-releasing hormone and somatostatin inhibit each others release in vitro in the rat retina.

The effect of thyrotropin-releasing hormone (TRH), somatostatin (SS) or octreotide, an analogue of SS, on release of TRH or SS from the rat retina was studied in vitro. The retina was incubated in medium 199 (pH 7.4) with 1.0 mg/ml of bacitracin (medium) for 20 min. The amount of TRH or SS release into the medium was measured by individual radioimmunoassays. The TRH release from the rat retina was inhibited significantly in a dose-related manner by the addition of SS or octreotide. The SS release from the retina was inhibited by TRH, and the inhibitory effect of TRH on SS release from the rat retina was blocked by the addition of anti-TRH receptor antiserum immunoglobulin fraction. The findings suggest an interaction between TRH and SS in the rat retina by which the addition of one inhibits the release of the other.

Animals↗

Screening of hybridoma clones producing antibodies against plasma membrane-associated materials.

We have developed a novel method for screening hybridoma clones producing antibodies against plasma membrane-associated materials. The method is based on the binding of cells by antigen-antibody complex formation to immobilized antibodies. The monoclonal antibodies (MAbs) were trapped by goat anti-mouse immunoglobulin antibodies, which were coated on the surface of 96-well plastic plates. Cells to be tested were then added to these plates and the number of bound cells was quantified by the activity of phosphatase of bound cells. This method allows quick and reliable screening of hybridoma clones without resorting to the use of expensive instruments such as a flow cytometer. We immunized mice with two different kinds of cells and obtained two interesting but contrasting MAbs reacting to cell-surface antigens: one interacts quite specifically with neuroblastoma cells and the other reacts equally with various cells with the exception of GOTO, a neuroblastoma cell.

Animals↗

The 'ligand-induced conformational change' of alpha 5 beta 1 integrin. Relocation of alpha 5 subunit to uncover the beta 1 stalk region.

Integrin heterodimers undergo a conformational change upon the binding of ligand to their extracellular domains. An anti-beta1 integrin monoclonal antibody AG89 can detect such a conformational change since it recognizes a ligand-inducible epitope in the stalk-like region of beta1 subunits. The binding of a 125I-labeled AG89 Fab fragment to alpha5 beta1 integrins on K562 cells was assessed and analyzed by the Scatchard method. High affinity binding sites for AG89 are present on cells treated with ligand peptide. In addition, results revealed that cells treated with EDTA also express AG89 binding sites with the same affinity although the number of binding sites is 4-fold lower. AG89 immunoprecipitated alpha5 beta1 complexes from surface-labeled K562 cells treated with ligand peptide. By contrast, it immunoprecipitated only beta1 chains when the ligand peptide was absent, suggesting that high affinity binding sites on EDTA-treated cells are associated with non-functional beta1 monomer. Additional studies show that the epitope for AG89 is constitutively exposed on mutant beta1 that cannot complex with alpha5. These data suggest that the AG89 epitope is masked by the alpha5 subunit. Ligand binding and integrin activation may uncover the beta1 stalk region by triggering a conformational shift of alpha5 relative to beta1.

Animals↗

Serotonin receptor subtypes involved in modulation of electrical acupuncture.

We examined the effects of intravenous injection of several serotonin (5-HT) antagonists on the inhibitory action of electro-acupuncture (EAP) against the nociceptive responses in the trigeminal nucleus caudalis in rabbits. The inhibitory effect of EAP was suppressed by pindolol, methysergide and ICS 205-930, whereas NAN-190 and ketanserin amplified the EAP effect. These results suggest that 5-HT1, except 5-HT1A; 5-HT2, except 5-HT2A; and 5-HT3 receptors are positively involved in EAP-induced analgesia, whereas the activation of 5-HT1A and 5-HT2A receptors suppressively act on EAP-induced analgesia.

Animals↗

Radioimmunoassay for Aquaporin-2.

OBJECTIVE: To develop radioimmunoassay for aquaporin-2 (AQP-2). METHODS: Anti-AQP-2 antiserum has been raised in New Zealand white rabbits immunized with a conjugate of synthetic AQP-2 peptide (257-271) with bovine serum albumin. Radioiodination of synthetic peptide (tyrosine-AQP2 (257-271) was performed by chloramine T method, followed by purification of radioiodinated material on Sephadex G-25 column. RESULTS: The obtained antibody did not crossreact with vasopressin, pituitary hormones, hypothalamic hormones and neuropeptides. The assay was performed with a double antibody system. The values are expressed as an equivalent of synthetic AQP-2 peptide (257-271). The dilution curve of high AQP-2 urine in radioimmunoassay system was parallel to the standard curve. The recovery percentage of AQP-2 added to urine was about 100 % in this assay system. Intra-assay and inter-assay variation was 4.5 % and 7.2 %, respectively. Mean urinary excretion of AQP-2 was 1.16 ng equivalent of AQP-2 (257-271)/mg creatine and was lower in patients with diabetes insipidus. CONCLUSION: These data suggest that his assay system is a suitable to measure AQP-2 in urine.

Journal Article↗

Distribution of Dopamine Transporter in the Rat: an Immunohistochemical Study.

OBJECTIVE: To investigate the organ distribution of dopamine transporter (DAT) in rats by immunohistochemical method. METHODS: Dopamine transporter (DAT) was identified immunohistochemically in the tissues using specific antipeptide antiserum raised in New Zealand white rabbits immunized with a conjugate of synthetic DAT peptide (29-45) with bovine serum albumin. Immunohistochemical analysis was performed by avidin-biotin complex method. RESULTS: DAT immunoreactivity was visualized in the neural perikarya, axons and dendrites of the central nervous system, retina, adrenal medulla, Auerbach's nervous branch and Meissner's nervous branch of the stomach, small intestine and colon, anterior pituitary, and lung. When using antiserum preincubated with synthetic DAT peptide (DAT, 29-45) or hypothalamus homogenate which contains DAT, no significant stain of neurons in the hypothalamus was detected. CONCLUSION: These findings suggest that DAT is widely distributed and that the method used is valuable in studying the distribution of DAT in rats.

Journal Article↗

Classification of 'activation' antibodies against integrin beta1 chain.

We compared the effects of two anti-beta1 integrin activating antibodies, TS2/16 and AG89, on K562 cell adhesion to fibronectin. Though both antibodies effectively induced cell adhesion, the EC50 for AG89 was more than 200-fold higher than that for TS2/16. Scatchard analysis of the data from [125I]Fab fragment binding to the cells revealed that the TS2/16 epitope is exposed constitutively on all the beta1 integrin molecules, while only 3% of the beta1 integrins on resting K562 cells bear the AG89 epitope. Calculation of the actual number of each antibody bound to the cell during the cell adhesion assay revealed that induction of cell adhesion can be accomplished by binding much fewer AG89 molecules compared to TS2/16. Thus, AG89 and TS2/16 represent distinct classes of anti-integrin activating antibodies that show completely different binding characteristics as well as different activation effects on the integrin molecule upon binding.

Antibodies, Monoclonal↗

Changing ligand specificities of alphavbeta1 and alphavbeta3 integrins by swapping a short diverse sequence of the beta subunit.

Integrins mediate signal transduction through interaction with multiple cellular or extracellular matrix ligands. Integrin alphavbeta3 recognizes fibrinogen, von Willebrand factor, and vitronectin, while alphavbeta1 does not. We studied the mechanisms for defining ligand specificity of these integrins by swapping the highly diverse sequences in the I domain-like structure of the beta1 and beta3 subunits. When the sequence CTSEQNC (residues 187-193) of beta1 is replaced with the corresponding CYDMKTTC sequence of beta3, the ligand specificity of alphavbeta1 is altered. The mutant (alphavbeta1-3-1), like alphavbeta3, recognizes fibrinogen, von Willebrand factor, and vitronectin (a gain-of-function effect). The alphavbeta1-3-1 mutant is recruited to focal contacts on fibrinogen and vitronectin, suggesting that the mutant transduces intracellular signals on adhesion. The reciprocal beta3-1-3 mutation blocks binding of alphavbeta3 to these multiple ligands and to LM609, a function-blocking anti-alphavbeta3 antibody. These results suggest that the highly divergent sequence is a key determinant of integrin ligand specificity. Also, the data support a recent hypothetical model of the I domain of beta, in which the sequence is located in the ligand binding site.

Amino Acid Sequence↗

Propolypeptide of von Willebrand factor is a novel ligand for very late antigen-4 integrin.

We have previously reported that propolypeptide of von Willebrand factor (pp-vWF) promotes melanoma cell adhesion in a beta1 integrin-dependent manner. In this report, we identified the alpha subunit of the cell adhesion receptor for pp-vWF as alpha4. Human leukemia cell lines that express alpha4beta1 integrin (very late antigen-4, VLA-4), but not cell lines which lack VLA-4, attached well to pp-vWF substrate and these adhesions were completely inhibited by anti-alpha4 integrin monoclonal antibody HP2/1. Adhesion of mouse melanoma expressing alpha4 integrin was also inhibited by anti-mouse alpha4 mAb PS/2. Furthermore, transfection of human alpha4 cDNA into alpha4(-) Chinese hamster ovary cells resulted in an acquisition of adhesive activity to pp-vWF, indicating that pp-vWF is a ligand for VLA-4 integrin. Using a recombinant fragment of pp-vWF, the cell attachment site was shown to be located within amino acid residues 376-455 of pp-vWF. A series of synthetic peptides covering this region were tested for the ability to promote cell attachment and a 15-residue peptide designated T2-15 (DCQDHSFSIVIETVQ, residues numbered 395-409) promoted VLA-4 dependent cell adhesion. The peptide was also capable of inhibiting cell adhesion to pp-vWF, suggesting that this sequence represents the cell attachment site. By affinity chromatography using peptide T2-15-Sepharose, it was found that alpha4beta1 integrin complex from extracts of surface iodinated B16 cells specifically bound to the peptide. These results strongly suggest that pp-vWF is a novel physiological ligand for VLA-4.

Animals↗

Factor X-dependent, thrombin-generating activities on a neuroblastoma cell and their disappearance upon differentiation.

Some tumor cells induce platelet aggregation in the bloodstream, which has been implicated in tumor metastasis. In this study, we investigated the mechanism of platelet aggregation induced by a human neuroblastoma cell line, GOTO. It was revealed that GOTO cells had tissue factor on their surface and converted factor X (FX) to FXa with the aid of factor VIIa. The produced FXa formed prothrombinase complex on the cells and activated prothrombin. From experiments on activity inhibition by specific monoclonal as well as polyclonal antibodies, it was concluded that factor V did not constitute this prothrombinase complex. Another cofactor known to constitute prothrombinase complex on some cells, effector cell protease receptor-1 (EPR-1), was not expressed on GOTO cells, suggesting that the cofactor composing FXa-dependent prothrombinase activity on GOTO cells is not factor V or EPR-1 but, rather, is an unknown molecule. Upon the culturing in the presence of 5-bromo-2'-deoxyuridine for 4 days, GOTO cells differentiated into Schwann-like cells, and both FXase and prothrombinase activities were greatly diminished. Flow cytometric analyses revealed that the decrease of FXase activity should be attributed to the decrease of tissue factor expression on GOTO cells. Because these activities greatly diminished upon cellular differentiation, the expression of both cofactor molecules may be related to the malignant and metastatic nature of the tumor cells.

Cell Differentiation↗