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Biomedical subjects

S Kosugi

Publications and source records attributed to S Kosugi.

At least 19 recordsLinked to original sources

Establishment and characterization of a Chinese hamster ovary cell line, CHO-4J, stably expressing a number of Na+/I- symporters.

The cDNA of the Na+/I- symporter playing a key role in thyroid iodide transport was cloned very recently. To characterize its function, we transfected the Na+/I- symporter gene into Chinese hamster ovary (CHO) cells and established a cell line stably expressing a number of rat Na+/I- symporters, named CHO-4J. Iodide uptake was dependent on [Na+] and reached a plateau within 30 min. Kinetic studies revealed that the K(m) for iodide was 35 microM, similar to that of FRTL-5 thyroid cells. The maximal velocity (Vmax) at cell protein level was 6-10-fold higher than in FRTL-5 cells and that at single cell level was approximately 1000-fold higher. CIO4- and SCN- dose-dependently inhibited iodide uptake in a competitive manner. The Ki was 1.5 and 16 microM, respectively. Iodide efflux from CHO-4J cells was apparently slower (t1/2 = 15 min) than FRTL-5 cells (t/2 = 2 min). Electrophysiological characteristics were examined using the whole cell patch clamp technique. Rapid inward current was observed when CHO-4J cells were perfused with 50-1000 microM Nal, suggesting a transport stoichiometry of at least 2 Na+ per I-. The current-voltage relation revealed that this current was membrane potential-dependent. The reversal potential was very close to that of Na+ in agreement with dependency on the Na+ electrochemical gradient. CHO-4J cells with a slow iodide efflux, expressing a number of Na+/I-symporters whose characteristics are identical to those of FRTL-5 cells will function as a new tool for sensitive of iodide uptake.

Animals

Affinity modulation of the platelet integrin alpha IIb beta 3 by alpha-chymotrypsin: a possible role for Na+/Ca2+ exchanger.

In the present study, we have investigated the mechanism of affinity modulation of alpha IIb beta 3 by chymotrypsin. We first confirmed that alpha-chymotrypsin could activate alpha IIb beta 3 (approximately 7,000 molecules per platelet) without major intracellular signaling. However, we unexpectedly found that high concentrations of amiloride dose-dependently inhibited 125I-fibrinogen binding to the chymotrypsin-treated platelets, as well as the platelet aggregation (IC50 [50% inhibitory concentration] for fibrinogen binding, 530 mumol/L). In contrast, amiloride did not inhibit alpha IIb beta 3 activation induced by anti-alpha IIb beta 3 monoclonal antibody PT25-2 or AP5. To identify the pathway involved, the effects of alteration of Na+ gradient in platelets were examined. Lowering Na+ gradient by replacing extracellular Na+ with tetramethylammonium (TMA) increased the number of activated alpha IIb beta 3 by twofold, as assessed by fibrinogen-binding assay. The incubation of platelets with ouabain, a Na+/K(+)-adenosine triphosphatase (ATPase) inhibitor, further augmented alpha IIb beta 3 activation. These data suggested that a likely candidate for the pathway was Na+/Ca2+ exchanger. At 140 mmol/L [Na+]o, 45Ca2+ influx to the chymotrypsin-treated platelets was twofold greater than that to non-treated platelets. Replacement of Na+ with TMA further increased the Ca2+ influx, and the increase was inhibited by amiloride dose-dependently. 3',4'-Dichlorobenzamil (DCB) and bepridil, relatively specific inhibitors of Na+/Ca2+ exchanger, also inhibited the chymotrypsin-induced alpha IIb beta 3 activation, and the IC50 values of these inhibitors for fibrinogen binding were 25 mumol/L and 52 mumol/L, respectively. Moreover, platelet aggregation induced by various physiologic agonists was inhibited by DCB or bepridil, while platelet agglutination by ristocetin was not. Our data newly suggest that Na+/Ca2+ exchanger operating in reverse mode may be directly involved in inside-out signaling that activates alpha IIb beta 3.

Amiloride

Constitutive activation of the thyrotropin receptor by mutating CYS-636 in the sixth transmembrane segment.

The rat thyrotropin receptor (TSHR) has 7 Cys residues in its transmembrane (TM) segments. We investigated the roles of these Cys residues by individually mutating each to Ser, transfecting the mutant DNA into Cos-7 cells and measuring TSH binding and cAMP/phosphoinositide (PIP2) responses to TSH and Graves' IgGs. Mutation of Cys-636 in the 6th TM helix to Ser markedly increased cAMP level without stimulation. Constitutive activation by this mutation contributes to a more complete map for activating TSHR mutation. Mutation of other Cys residues partially impaired responses but no mutants showed complete loss of receptor function, indicating that these residues have no major contribution to the overall 3-D structure of the TSHR.

Animals

Cysteine-699, a possible palmitoylation site of the thyrotropin receptor, is not crucial for cAMP or phosphoinositide signaling but is necessary for full surface expression.

We investigated the role of the cysteine residues in the cytoplasmic tail of the thyrotropin receptor (TSHR) in TSH binding and signal transduction by individually mutating two cysteine residues to serine. Neither mutant exhibited changes in basal, TSH- or Graves' IgG-stimulated cAMP or inositol phosphate responses. However, mutation of Cys-699 significantly decreased TSH binding Bmax without significantly changing binding affinity, amount or sizes of TSHR forms on Western blots. These findings suggest that Cys-699, which is a potential site for lipid modification and whose equivalent in other receptors was shown to be palmitoylated, is important for efficiency of proper membrane insertion and/or stability of the receptor.

Amino Acid Sequence

Circulating thrombopoietin level in chronic immune thrombocytopenic purpura.

The circulating thrombopoietin (TPO) level in 43 patients with chronic immune thrombocytopenic purpura (ITP) was examined by an ELISA system. The TPO level (mean +/- SD) in ITP patients was mildly elevated (1.86 +/- 1.17 fmol/ml) compared to that in normal subjects (0.76 +/- 0.21), and was within the normal range in 30% of ITP patients. In contrast, the TPO level in patients with aplastic anaemia was very high, 12.35 +/- 6.42 fmol/ml. There was no correlation between TPO level and platelet count in ITP patients. Splenectomy was performed in two ITP patients, after which platelet counts increased to normal levels and TPO levels showed a transient increase. These data suggest that reactive TPO production against thrombocytopenia in ITP is small when compared to that in aplastic anaemia. Relative endogenous TPO deficiency may play some role in the pathophysiology of thrombocytopenia in ITP patients.

Adult

A single nucleotide insertion in codon 317 of the CD36 gene leads to CD36 deficiency.

CD36 is a multifunctional integral-membrane glycoprotein that acts as a receptor for thrombospondin, collagen, long-chain fatty acids, and oxidized LDL. Platelet CD36 deficiency can be divided into two groups. In type I, neither platelets nor monocytes/macrophages express CD36; in type II, monocytes/macrophages express CD36 but platelets do not. Two known mutations cause CD36 deficiency, ie, a 478C-->T substitution in codon 90 (proline90-->serine) and a dinucleotide deletion at nucleotide 539 in codon 110. In this study we investigated a type I Japanese subject (A.T.) and identified a new mutation, a single nucleotide insertion at nucleotide 1159 in codon 317. This mutation leads to a frameshift and the appearance of a premature stop codon. CD36 gene analysis indicated that A.T. was a compound heterozygote for a dinucleotide deletion at nucleotide 539 and the single nucleotide insertion at nucleotide 1159. RNase protection studies suggested that the new mutation as well as the dinucleotide deletion led to a marked reduction in the level of CD36 mRNA in her macrophages. However, the new mutation could be detected in macrophage but not platelet CD36 mRNA. These data suggest that the allele having the single nucleotide insertion in this subject has an additional abnormality that results in the absence of the mutated CD36 mRNA in platelets.

Base Sequence

Laboratory tests necessary at the first examination of patients with suspected thyroid disorders.

In order to determine what and how many test items are necessary for the initial tests when examining patients with thyroid disorders, a questionnaire was sent to the council members of the Japan Thyroid Association. Thyroid disorders were divided into 4 categories; hyperthyroidism, hypothyroidism, diffuse goiter, and nodular goiter. The questionnaire was designed to assess: 1) tests routinely ordered at the initial examination; 2) minimum test battery necessary; 3) the 5 most important tests in order; and 4) selection of only 2 tests at most. The data on 112 completed questionnaires were collected and analyzed. When the choice was limited to only 2 tests, TSH and fT4 were commonly selected for hyperthyroidism hypothyroidism and diffuse goiter, but these 2 tests would be insufficient for the differentiation of disorders. In the case of nodular goiter, ultrasonogram and fine needle aspiration biopsy (FNA) were selected. The mean number of routinely ordered tests was 6.62 +/- 2.00 (S.D.) for hypothyroidism and 8.06 +/- 2.48 for nodular goiter, but many fewer tests were cited as absolutely necessary. In hyperthyroidism, 4.56 +/- 1.92 tests were required, in hypothyroidism 4.39 +/- 1.92, in diffuse goiter 4.93 +/- 1.75, and in nodular goiter 5.15 +/- 2.13. Most of the function-related tests, ultrasonogram and autoantibodies were commonly selected, while TBII and thyroid 123I or 99mTcO4 uptake in hyperthyroidism, and FNA, Tg and scintigram in nodular goiter were considered to be for specific purposes. Summarizing all these, the authors propose 5 or 6 tests to be necessary as the initial tests when examining patients with 4 individual thyroid disorders.

Autoantibodies

Platelet-associated anti-glycoprotein (GP) IIb-IIIa autoantibodies in chronic immune thrombocytopenic purpura mainly recognize cation-dependent conformations: comparison with the epitopes of serum autoantibodies.

Platelet-associated and serum anti-glycoprotein (GP) IIb-IIIa autoantibodies were investigated in 57 patients with chronic immune thrombocytopenic purpura (ITP). In modified antigen capture ELISA (MACE) using GPIIb-IIIa-specific-, GPIIb-specific-, and GPIIIa-specific-monoclonal antibody (mAb) for antigen capture, platelet-associated anti-GPIIb-IIIa antibodies were detected in 14 out of 37 patients (38%), and these antibodies could be detected with all 3 mAbs used for antigen capture. In the MACE using EDTA-treated platelets at 37 degrees C, the reactivity of platelet-associated anti-GPIIb-IIIa antibodies in 9 out of 10 patients was markedly reduced in both cases of GPIIb-specific- and GPIIIa-specific-mAb used. Immunoprecipitation experiments further confirmed that the EDTA-treatment abrogated the antigenicity of GPIIb-IIIa for platelet-associated antibodies in 2 patients. Serum anti-GPIIb-IIIa autoantibodies were detected in 23 out of 57 patients (40%). However, only 7 out of 23 serum anti-GPIIb-IIIa antibodies could be detected with all 3 mAbs. The MACE using EDTA-treated platelets further showed that the features of serum anti-GPIIb-IIIa antibodies were different from those of platelet-associated antibodies even in the same patient. Our data demonstrate that the platelet-associated anti-GPIIb-IIIa antibodies mainly recognize the cation-dependent antigenic determinants on GPIIb-IIIa and that serum anti-GPIIb-IIIa antibodies may contain some components which differ in specificity from platelet-associated antibodies.

Antibodies, Monoclonal

Constitutive activation of the thyrotropin receptor by deletion of a portion of the extracellular domain.

Mutations involving the transmembrane domain of the thyrotropin receptor (TSHR) confer constitutive activation of the receptor and can cause human diseases. Naturally occurring activating mutations identified to date are located only in the transmembrane domain of the receptor. We now report a mutant involving the extracellular domain of the TSHR which also shows constitutive activation. This mutation is missing residues 339-367 located in the C-terminal portion of the extracellular domain. When expressed in COS-7 cells, the mutated TSHR (M3B) retained similar TSH binding ability to that of the wild-type receptor. However, the basal cAMP production without TSH stimulation in COS-7 cells transfected with M3B cDNA was significantly higher than that of COS-7 cells with wild-type receptor, indicating that the mutant receptor is constitutively activated. Our results provide new insight into the mechanism of receptor activation.

Animals

Monoclonal anticardiolipin autoantibodies established from the (New Zealand white x BXSB)F1 mouse model of antiphospholipid syndrome cross-react with oxidized low-density lipoprotein.

OBJECTIVE: Autoimmunity-prone (New Zealand white x BXSB)F1 ([NZW x BXSB]F1) mice have been shown to be useful as a model of antiphospholipid syndrome with myocardial infarction. The aim of this study was to examine the cross-reactivity of anticardiolipin antibody (aCL) derived from (NZW x BXSB)F1 mice with oxidized low-density lipoprotein (ox-LDL), which is closely associated with atherosclerosis. METHODS: Six monoclonal antibodies (MAb) against CL were established from (NZW x BXSB)F1 mice, and reactivity of aCL with ox-LDL was examined by micro-enzyme-linked immunosorbent assay. RESULTS: Higher titers of anti-ox-LDL autoantibodies were found in adult (NZW x BXSB)F1 mice compared with other autoimmunity-prone mouse strains (P < 0.01) or a control strain (P < 0.005). There was a significant positive correlation between titers of aCL and those of anti-ox-LDL in (NZW x BXSB)F1 mice (r = 0.79, P < 0.001). Of the 6 MAb against CL, 2 clones that showed beta 2-glycoprotein 1-dependent reactivity also cross-reacted with ox-LDL. Binding of monoclonal aCL to solid-phase cardiolipin was inhibited by ox-LDL, but not by native LDL. CONCLUSION: We confirmed that aCL derived from (NZW x BXSB)F1 mice can cross-react with ox-LDL. This result suggests that aCL, which is closely associated with lupus-associated thrombosis, may also play an important role in atherosclerotic complications in patients with systemic lupus erythematosus.

Animals

Statistical analysis of functional region(s) of the TSH receptor.

In this study, we apply recently developed methods to evaluate the thyrotropin receptor (TSH-R). These methods are called deviation (DEV) model, deviation decrease (DD) and DEV/DD analyses, and are based on deviation of amino acid sequences. A 3-dimensional structure model of TSH-R was graphically constructed, and found to possess a large central cavity (donut-like structure). The N-terminus was found to be in the center of the whole extracellular structure and to form a part of the bottom of the cavity. High DEV values indicate deviated amino acid compositions in the protein and were seen in 7 regions, 6 of which were found to be in regions with hydrophilic and acrophilic character. On the basis of the analysis of intra-molecular cis-acting relationships, 7 pairs of regions were presumed to be closely related. Further, when 3 exoplasmic loop lesions were analyzed similarly, 3 other regions were shown to have a close relationship with the cell surface. DEV/DD values were applied to predict the interface of TSH-R with trans-acting molecules such as TSH-R antibody or TSH. The regions in association with trans-acting molecules were seen in 14 regions, 11 of which included the high DEV regions. Both of the TSH-R specific regions in the N- and C-terminal side, especially the latter, were found to be the major components.

Amino Acid Sequence

Two of three promoter elements identified in a rice gene for proliferating cell nuclear antigen are essential for meristematic tissue-specific expression.

Proliferating cell nuclear antigen (PCNA) is an auxiliary protein of DNA polymerase delta, and it is highly conserved among eukaryotes. The rice PCNA promoter, truncated to position -263, was previously shown to confer meristematic tissue-specific expression in transgenic plants. By DNasel footprinting and gel retardation analysis, three cis-acting elements were defined in this truncated promoter, which designated site I (-201 to -194, CCAGGTGG), site IIa (-197 to -188, TGGGCCCGT) and site IIb (-178 to -169, TGGTCCCAC). Site I resembles the G-box, and sites IIa and IIb resemble the conserved motif (T/GGTCCCAT) that is found in promoter regions of auxin-regulated genes. Functional analysis of expression of a PCNA-GUS gene fusion in transgenic tobacco plants revealed that a mutation in site I in the full-length 2.0 kb promoter had no significant effect on the activity. However, the mutation in site I in the truncated -263 promoter, which had 14% of the activity of the full-length promoter, caused a considerable decrease in the activity, suggesting that site I contributes in part to transcriptional activation. Simultaneous disruption of sites IIa and IIb in the full-length promoter caused about 80-85% loss of promoter activity, while separate disruption of site IIa or site IIb resulted in no marked change on the activity. These observations suggest that site IIa and site IIb play an important role in the meristematic tissue-specific expression of the rice PCNA gene, presumably by mediating putative enhancer activities dependent on the far-upstream region.

Base Sequence

Characterization of heterogeneous mutations causing constitutive activation of the luteinizing hormone receptor in familial male precocious puberty.

Familial male precocious puberty (FMPP) is a gonadotropin-independent disorder that is inherited in an autosomal dominant, male-limited pattern. A heterozygous mutation encoding substitution of Asp578 with Gly in transmembrane helix 6 of the G protein-coupled receptor for luteinizing hormone (LHR) has been found in affected males from nine American FMPP families. Cells expressing the mutant LHR exhibit markedly increased cyclic adenosine monophosphate (cAMP) production in the absence of agonist, suggesting that autonomous Leydig cell activity in FMPP is caused by a constitutively activated LHR. We have now analyzed genomic DNA from affected males from six additional FMPP families. PCR was used to amplify a fragment of the LHR gene encoding amino acid residues 441-594. None of the six new samples contained the Asp578-->Gly mutation, as indicated by absence of digestion with MspI. PCR products were then screened for heterozygous mutations using temperature-gradient gel electrophoresis. DNA fragments from two of the patients migrated abnormally. Direct sequencing of PCR product from one affected German male revealed a heterozygous mutation (ATG-->ATA) encoding Met571-->Ile at the cytoplasmic end of helix 6, the same mutation that has been reported in another European FMPP kindred. Affected males in the second family had a novel Thr577-->Ile mutation (ACC-->ATC). Mutations in different portions of the LHR or in a different gene may be responsible for disease in the other FMPP kindreds. Agonist binding and functional coupling of the mutant receptors to the cAMP and inositol phosphate pathways were studied by transiently expressing them in COS-7 cells. Agonist affinity was unaffected by the mutations.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Molecular basis of CD36 deficiency. Evidence that a 478C-->T substitution (proline90-->serine) in CD36 cDNA accounts for CD36 deficiency.

CD36 deficiency is divided into two subgroups: neither platelets nor monocytes express CD36 (type I deficiency), and monocytes express CD36 in spite of the lack of platelet CD36 (type II deficiency). We have already demonstrated that a 478C-->T substitution (proline90-->serine) in platelet CD36 cDNA predominates in type II deficiency (Kashiwagi, H., S. Honda, Y. Tomiyama, H. Mizutani, H. Take, Y. Honda, S. Kosugi, Y. Kanayama, Y. Kurata, and Y. Matsuzawa. 1993. Thromb. Haemostasis. 69:481-484). In this study, we revealed that monocyte CD36 cDNA from two type II deficient subjects was heterozygous for C478 and T478 form, while platelet CD36 cDNA of these subjects consisted of only T478 form. In a type I deficient subject, both platelet and monocyte CD36 cDNA showed only T478 form. Expression assay using C478 or T478 form of CD36 cDNA transfected cells revealed that there was an 81-kD precursor form of CD36, and that the maturation of the 81-kD precursor form to the 88-kD mature form of CD36 was markedly impaired by the substitution. The mutated precursor form of CD36 was subsequently degraded in the cytoplasm. These results indicate that the 478C-->T substitution directly leads to CD36 deficiency via defects in posttranslational modification, and that this substitution is the major defects underlying CD36 deficiency.

Amino Acid Sequence

Thyroid-stimulating antibodies in sera from patients with Graves' disease are heterogeneous in epitope recognition.

Two synthetic peptides, P354-14 (amino acid nos. 354 to 367) and P338-16 (nos. 338 to 353), corresponding to the partial amino acid sequences of the hTSH receptor structure were studied for their ability to bind specifically serum IgGs from patients with Graves' disease and to inhibit thyroid stimulating TSH receptor antibody (TSH-R SAb) activity. IgG binding was measured by an ELISA using sera from 102 Graves', 20 Hashimoto patients, and 9 normal subjects. Both peptides showed significantly increased IgG binding of Graves' sera compared with those of Hashimoto and normal sera. There was a significant correlation (r = 0.529) between the amount of IgG bound by the two peptides, but neither of these values correlated well with their TSH-R SAb activity nor thyrotropin-binding inhibitor TSH receptor antibody (TSH-R IAb) activity. TSH-R SAb inhibiting effects of these peptides were then analysed by measuring TSH-R SAb activity after incubation with the peptides. Among eight Graves' IgGs tested the TSH-R SAb activity of three was inhibited by both peptides, two were inhibited only by P354-14 and three were not affected by either. These TSH-R SAb inhibiting effects were dose-dependent and reproducible. To confirm these findings, a peptide-sepharose gel affinity absorption study was performed. Eleven Graves' IgGs were applied to both peptide gels and the TSH-R SAb activity of the unabsorbed fraction was measured. The TSH-R SAb activity of five IgGs was strongly absorbed only by P354-14 and five others were absorbed by both peptides to an almost similar extent.(ABSTRACT TRUNCATED AT 250 WORDS)

Absorption

Presence of heterogeneous thyroid-stimulating antibodies in sera from individual Graves' patients as shown by synthesized thyrotropin receptor peptide application: evidence showing two independent epitopes and a possible recognition of two epitopic regions by one antibody molecule.

To define the epitope(s) of stimulating thyrotropin receptor antibody (TSH-R-Sab), we synthesized 19 oligopeptides covering almost all amino acids of the extracellular domain of the human TSH-R and studied these effects on the inhibition of one TSH-R-Sab activity. Four of the 19 peptides encompassing residues 31-50 (P31-20), 91-119 (P91-29), 287-304 (P287-18) and 354-367 (P354-14) were found to show significant TSH-R-Sab inhibition and to have similar effects on the other three Graves' immunoglobulins. When these peptides were applied in combination with P354-14 only P287-18 revealed additional effects but the other two combinations did not. Furthermore, sequential addition of these peptide pairs confirmed the additional effects of P287-18 and P354-14. Sequential peptide-affinity gel studies were then performed. Most of the TSH-R-Sab activity in the unabsorbed fraction from P287-18 gel was absorbed to a subsequent P354-14 gel and the eluted fraction from P287-18 mostly remained unabsorbed by the P354-14 gel. On the other hand, most of the unabsorbed fraction from P91-29 gel remained unabsorbed even by the subsequent P354-14 gel. When a P354-14 affinity gel-purified TSH-R-Sab immunoglobulin was labeled and evaluated for its binding to FRTL-5 cells, additions of original immunoglobulin, P354-14 and P91-29 resulted in significant inhibition of the binding but P287-18 did not affect either. From these results, it was concluded that most of the individual Graves' immunoglobulins contain at least two heterogeneous moieties with TSH-R-Sab activity, one of which binds P354-14 and the other binds P287-18. Further, P354-14 and P91-29 were indicated to bind the same molecule of TSH-R-Sab immunoglobulin.

Absorption

Abnormal processing of the glycoprotein IIb transcript due to a nonsense mutation in exon 17 associated with Glanzmann's thrombasthenia.

We analyzed the molecular genetic defect responsible for type I Glanzmann's thrombasthenia in a Japanese patient. In an immunoblot assay using polyclonal anti-GpIIb-IIIa antibodies, some GPIIIa (15% of normal amount) could be detected in the patient's platelets, whereas GPIIb could not (< 2% of normal amount). Nucleotide sequence analysis of platelet GPIIb mRNA-derived polymerase chain reaction (PCR) products revealed that patient's GPIIb cDNA had a 75-bp deletion in the 3' boundary of exon 17 resulting in an in-frame deletion of 25 amino acids. DNA analysis and family study revealed that the patient was a compound heterozygote of two GPIIb gene defects. One allele derived from her father was not expressed in platelets, and the other allele derived from her mother had a 9644C--> T mutation which was located at the position -3 of the splice donor junction of exon 17 and resulted in a termination codon (TGA). Moreover, quantitative analysis demonstrated that the amount of the abnormal GPIIb transcript in the patient's platelets was markedly reduced. Thus, the C --> T mutation resulting in the abnormal splicing of GPIIb transcript and the reduction in its amount is responsible for Glanzmann's thrombasthenia.

Adult