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Biomedical subjects

S Oka

Publications and source records attributed to S Oka.

At least 271 records · Page 15Linked to original sources

Ontogenetic development of gonadotropin-releasing hormone-like immunoreactive neurons in the brain of the chum salmon, Oncorhynchus keta.

In the chum salmon, gonadotropin-releasing hormone-immunoreactive (GnRH-ir) cells were first detected in the olfactory placode of embryos at 16 days after fertilization, and then appeared sequentially in the olfactory nerve and the distal part of the forebrain by hatching. Four months after hatching, the terminal nerve was differentiated along the olfactory nerve, and GnRH-ir fibers extended to the hypothalamus and hypophysis. GnRH-ir cells occurred later in the preoptic area in about 1-year-old juveniles. These data suggest that GnRH neurons originate in the olfactory placode and then migrate into the brain along the olfactory nerve.

Aging↗

Conjugation of recombinant reverse transcriptase of HIV-1 to beta-D-galactosidase from Escherichia coli for ultrasensitive enzyme immunoassay (immune complex transfer enzyme immunoassay) of anti-HIV-1 IgG.

Recombinant reverse transcriptase (RT) of HIV-1 was conjugated to beta-D-galactosidase from Escherichia coli in three different ways. Maleimide groups were introduced into beta-D-galactosidase molecules using N,N'-o-phenylenedimaleimide in the absence (method I) or presence (method II) of N-ethylmaleimide or into beta-D-galactosidase molecules, which had been treated with excess of 4,4'-dithiodipyridine to block thiol groups, using N-succinimidyl-6-maleimidohexanoate (method III). Subsequently, the maleimide groups were reacted with thiol groups introduced into recombinant RT molecules using N-succinimidyl-S-acetylmercaptoacetate. The conjugates were tested by a sensitive enzyme immunoassay (immune complex transfer enzyme immunoassay). The immune complex consisting of 2,4-dinitrophenyl-bovine serum albumin-recombinant RT conjugate, anti-HIV-1 IgG and recombinant RT-beta-D-galactosidase conjugate was captured by polystyrene beads coated with (anti-2,4-dinitrophenyl group) IgG, eluted with N epsilon-2,4-dinitrophenyl-L-lysine and transferred to polystyrene beads with (anti-human IgG gamma chain) IgG. The conjugate prepared by method III, which showed the least polymerization, the least loss of the specific enzyme activity and the lowest nonspecific binding, improved the sensitivity of the enzyme immunoassay for anti-HIV-1 IgG approximately 30-fold compared with RT-horseradish peroxidase conjugate.

Animals↗

Detection of antibody IgG to HIV-1 in urine by ultrasensitive enzyme immunoassay (immune complex transfer enzyme immunoassay) using recombinant p24 as antigen for diagnosis of HIV-1 infection.

Anti-HIV-1 IgG in urine was detected by an ultrasensitive enzyme immunoassay (immune complex transfer enzyme immunoassay) using recombinant p24 gag protein (p24) of HIV-1 as antigen and beta-D-galactosidase from Escherichia coli as label. Anti-HIV-1 IgG in urine was reacted simultaneously with 2,4-dinitrophenyl-bovine serum albumin-recombinant p24 conjugate and recombinant p24-beta-D-galactosidase conjugate. The complex formed, consisting of the three components, was trapped onto polystyrene balls coated with affinity-purified (anti-2,4-dinitrophenyl group) IgG, eluted with epsilon N-2,4-dinitrophenyl-L-lysine, and transferred to polystyrene balls coated with affinity-purified (anti-human IgG gamma-chain) IgG. Bound beta-D-galactosidase activity was assayed by fluorometry. This assay was at least 3,000-fold more sensitive than conventional methods. The lowest signal among 49 asymptomatic carriers was 3.1-fold higher than the highest nonspecific signal among 100 seronegative subjects. The sensitivity and specificity were both 100%. The positivity could be confirmed by preincubation of urine samples with excess of the antigen. Thus, this assay would be a powerful tool for detecting IgG antibody to HIV-1 in urine.

Adolescent↗

Diagnosis of HIV-1 infection by detection of antibody IgG to HIV-1 in urine with ultrasensitive enzyme immunoassay (immune complex transfer enzyme immunoassay) using recombinant proteins as antigens.

Anti-HIV-1 IgG in urine was detected by an ultrasensitive enzyme immunoassay (immune complex transfer enzyme immunoassay) using recombinant reverse transcriptase (RT), p17 and p24 as antigens, and beta-D-galactosidase from Escherichia coli as label. Anti-HIV-1 IgG in urine was reacted simultaneously with 2,4-dinitrophenyl-bovine serum albumin-recombinant protein conjugate and recombinant protein-beta-D-galactosidase conjugate. The immune complex formed, consisting of the three components, was trapped onto polystyrene balls coated with affinity-purified (anti-2,4-dinitrophenyl group) IgG. After washing, the immune complex was eluted from the polystyrene balls with excess of epsilon N-2,4-dinitrophenyl-L-lysine and transferred to clean polystyrene balls coated with affinity-purified (anti-human IgG gamma-chain) IgG. Finally, the enzyme activity bound to the last solid phase was assayed by fluorometry. Using recombinant RT as antigen, the sensitivity and specificity for 83 seropositives and 100 seronegatives were both 100%, and the lowest signal for 60 asymptomatic carriers was 8.2-fold higher than the highest signal for the seronegatives. The positivity with recombinant RT as antigen could be confirmed by using recombinant p17 and p24 as antigens. The sensitivity could be improved by a longer assay of bound beta-D-galactosidase activity by using concentrated urine samples and by the combined use of recombinant RT, p17, and p24. Thus, reliable diagnosis of HIV-1 infection was possible for asymptomatic carriers.

Acquired Immunodeficiency Syndrome↗

Cell cycle-dependent nuclear localization of exogenously added fibroblast growth factor-1 in BALB/c 3T3 and human vascular endothelial cells.

Previous studies have shown that the presence of a functional nuclear targeting sequence in the primary structure of fibroblast growth factor (FGF)-1 correlates with its activity as a mitogen, but not with its potential for inducing receptor tyrosine phosphorylation, suggesting the presence of a yet undefined function of FGF-1 as a nuclear protein. In the present study we have investigated the cytosolic and nuclear localization of exogenously added FGF-1. FGF-1-specific monoclonal antibodies were raised. By an extensive screening, highly specific antibody clones were isolated. For both BALB/c 3T3 and human umbilical vein endothelial (HUVE) cells, immunofluorescence studies performed with those clones delineated that during G1 stage of cell cycle, FGF-1 transits from cytosol to nucleus. This was followed by a shift to the perinuclear and juxtanuclear region just prior to the onset of S-phase in BALB/c 3T3 cells. Confocal microscopical examinations confirmed that the nuclear staining resides throughout the nuclear matrix with some enrichment at the envelope boundary and in the nucleoli. Immunoblot analysis of the fractionated BALB/c 3T3 cells that had been induced to proliferate by serum and pulsed with exogenous FGF-1 at various timings revealed that the incorporation of exogenous FGF-1 into cytosol took place constantly, whereas the nuclear translocation significantly increased after 5 h following stimulation of the quiescent cells. The cytosolic form of FGF-1 is indicated to be present in soluble cytosolic fraction rather than membrane-enveloped compartments, endosomes, by the microinjection of anti FGF-1 antibody to HUVE cells cultured in the presence of FGF-1. The data demonstrate that the exogenously added FGF-1 is constantly endocytosed and fractioned into the cytosol soluble compartment, whereas its nuclear localization is regulated at the nuclear translocation level and takes place preferably at late G1 phase of the cell cycle.

3T3 Cells↗

Bilateral giant bullae with rapidly increasing fluid in the right bulla following operation: report of a case.

A 33-year-old Japanese male was admitted to our hospital for the treatment of left pneumothorax. He was found to have bilateral giant bullae. Retention of fluid was observed in the right giant bulla. The fluid accumulated rapidly directly after bullectomy and excision of the left giant bullae. This suggested the existence of some mechanisms of fluid retention other than an infection of the bulla alone after operation.

Adult↗

An ICAM-related neuronal glycoprotein, telencephalin, with brain segment-specific expression.

Telencephalin (TLN) is a 130 kd glycoprotein expressed exclusively in neurons of the telencephalon, the most rostral brain segment. In the neurons, TLN is localized to soma-dendritic membrane but not to axonal membrane. In this study, we have cloned cDNA encoding rabbit and mouse TLN. The cDNA-derived primary structure of TLN predicts an integral membrane protein with nine tandem immunoglobulin-like domains in an extra-cellular region, a transmembrane domain, and a short cytoplasmic tail. The distal eight immunoglobulin-like domains of TLN show highest homology with the immunoglobulin-like domains of intracellular adhesion molecules (ICAMs) 1, 2, and 3/R. The structural similarity of TLN with ICAMs provides a new and strong link between immunoglobulin superfamily molecules in the nervous and immune systems. TLN is an example of a dendrite-associated cell adhesion molecule involved in the brain's segmental organization, cell-cell interactions during dendritic development, and maintenance of functional neuronal networks.

Amino Acid Sequence↗

Variable fetal heart rate decelerations and electrocortical activities.

OBJECTIVE: The purpose of this study was to examine the influence of fetal behavioral states on baroreflex-mediated, variable fetal heart rate decelerations caused by umbilical cord occlusion. STUDY DESIGN: Five chronically instrumented fetal lambs were subjected to intermittent partial umbilical cord occlusion for 1 minute every 3 minutes, lasting 2 hours. Fetal behavioral states determined by electrocorticogram and heart rates by electrocardiogram were monitored continuously during these experiments. RESULTS: The fetuses exhibited an alteration between low- and high-voltage electrocorticogram states. Both the depth and width of the variable fetal heart rate decelerations were greater during high-voltage than during low-voltage electrocorticogram. CONCLUSION: Amplitude and duration of variable fetal heart rate decelerations are affected by fetal behavioral states.

Animals↗

Genetic analysis of HIV-1 during rapid progression to AIDS in an apparently healthy man.

We encountered a case of HIV-1 infection in a previously healthy man, which was characterized by rapid progression to AIDS and death within 7 months in association with high levels of antigenemia throughout the clinical course and no humoral immune response for at least 6 months. Genetic changes of the third variable domain (V3) of the envelope gene of HIV-1 in serum samples were analyzed at four time points during his rapid clinical course. The nucleotide changes were confined to a maximum of three substitutions among 105 nucleotides of the V3 region. A major population of the viral clones in this patient showed one amino acid substitution from aspartic acid (a negatively charged amino acid) to lysine (a positively charged amino acid) at position 30 from the first cysteine of the V3 loop. This substitution was thought to be associated with phenotypic changes, and viruses with this sequence in the V3 region had a strong syncytium-inducing ability in MT-4 cells. It appears that the lack of a humoral immune response accelerated disease progression in our patient and a genetic change that appeared to produce a phenotypic change occurred at an early stage of the disease.

Acquired Immunodeficiency Syndrome↗

The amino acid sequence of a boar transition protein 3.

The boar transition protein 3 (TP3) was extracted with acid from the isolated late spermatid nuclei or directly from the testes, fractionated with trichloroacetic acid, and reduced and carboxymethylated (RCM-). RCM-TP3 from the nuclei was purified by HPLCs on Nucleosil 300 7C18 and Hitachi #3057, and that from the testes, by ion-exchange chromatography on CM-Sephadex C-25 and HPLCs on Nucleosil 300 7C18 and Chemcosorb 7C8. The two TP3 preparations were identical in acid-urea- and SDS-gel electrophoretic mobilities and amino acid composition. The primary structure of TP3 was determined by manual Edman degradation of the peptides obtained by lysyl endopeptidase-digestion or by alpha-chymotrypsin-digestion of RCM-TP3 from the testes, and by automated Edman degradation of it. Boar TP3 is a basic protein of 76 residues: H-AKVTEKSWQPQTTSTKRWKKRKTPSQPRSRGKVRKIYKKVKRPLHVCSRKKYSPKVITTSRRQKRAR RANKFETIP-OH, and it shows 27% homology with boar TP1. TP3 is composed of an N-terminal region (1-19) having two characteristic tryptophan residues (8 and 18) which is absent in the known TP1 group, and a C-terminal region (20-76) having a close resemblance to boar TP1.

Amino Acid Sequence↗

Cloning and expression of cDNA coding for a new allergen from the house dust mite, Dermatophagoides farinae: homology with human heat shock cognate proteins in the heat shock protein 70 family.

An immunoreactive clone, which shares no homology with the major allergens, Der f I and Der f II, was isolated by screening of a Dermatophagoides farinae cDNA library with rabbit antiserum raised against an extract of the house dust mite and sera from patients with mite allergy. The deduced amino acid sequence of the cDNA of the clone is significantly homologous, up to 65.5%, to the carboxyl-terminal region of the heat shock cognate protein (hsc) 71 in the heat shock protein (hsp) 70 family. A pool of the recombinant protein-specific IgE purified from mite-allergic sera recognized a 67 kDa protein on a blot of ATP-binding components partially purified from the mite body extract, while the antibody did not bind to the major allergens. We conclude that the recombinant protein, one of several important allergens, may be a protein in the heat shock protein 70 family from the house dust mite, D. farinae.

Allergens↗

Major antigenic region on the integrase (IN) protein of human immunodeficiency virus type 1 determined by reactivity of human sera and a monoclonal antibody to IN protein.

The gene encoding the integrase (IN) protein of human immunodeficiency virus type 1 (HIV-1) was expressed in vaccinia virus and Escherichia coli, and sera from 55 HIV-1-infected individuals were examined for immunoreactivity to the recombinant IN proteins by Western immunoblot. Approximately 98% (54 of 55) of the HIV-1-infected individuals showed reactivity to both the full-length IN protein of 32 kDa (IN32 protein) and the carboxy-terminal portion of the IN protein (IN17 protein). Serum samples from only 6 of the 54 antibody-positive individuals and a monoclonal antibody against the IN protein, 6F4, reacted with the amino-terminal portion of the IN protein (IN15 protein). The eight AIDS patients tested were seronegative to IN15 protein. The magnitude of reactivity to the recombinant IN proteins decreased slightly in the progression of the course of HIV-1 infection. These results suggest that a B-cell immunodominant epitope(s) on the IN protein is located on the C-terminal IN17 portion and that a minor epitope(s) recognizable by 6F4 and by rare patients is on the N-terminal IN15 portion.

Amino Acid Sequence↗

Detection of anti-human immunodeficiency virus type 1 (HIV-1) immunoglobulin G in urine by an ultrasensitive enzyme immunoassay (immune complex transfer enzyme immunoassay) with recombinant reverse transcriptase as an antigen.

Anti-human immunodeficiency virus type 1 immunoglobulin G in urine was detected by an immunoassay with reverse transcriptase as the antigen and beta-D-galactosidase as the label; this immunoassay was 30-fold more sensitive than the previous immunoassay with peroxidase as the label. The sensitivity and specificity were both 100%. The lowest signal for asymptomatic carriers was 20-fold higher than the highest signal for seronegative subjects.

Adolescent↗

A naturally occurring single basic amino acid substitution in the V3 region of the human immunodeficiency virus type 1 env protein alters the cellular host range and antigenic structure of the virus.

Human immunodeficiency virus type 1 circulates in vivo as a mixture of heterologous populations (quasispecies). We previously analyzed the quasispecies of the third hypervariable region (V3) in the viral envelope glycoprotein gp120 in an infected individual and found that the species with a basic amino acid substitution (lysine for aspartic acid) at a particular position evolved and became a distinct population within a short period, followed by progression to the typical immunodeficiency stage (S. Oka et al., AIDS Res. Hum. Retroviruses 10:271-277, 1994). In the present study, we examined the biological significance of this amino acid substitution by constructing recombinant viruses with specific point mutations and comparing their replication capabilities in different cell types. The results demonstrated that the single basic amino acid substitution was sufficient to render a virus fully capable of replicating in human T-cell lines under certain conditions. With an acidic amino acid at the position, the virus grew much less fast or did not grow at all in the T-cell lines. Viral neutralization assay and peptide enzyme-linked immunosorbent assays further showed that this amino acid substitution resulted in different recognition by several of the serum specimens from human immunodeficiency virus type 1-infected individuals and thus could alter the antigenic structure. An additional finding worthy of note was that at the terminal stage, the proviral sequences of peripheral blood mononuclear cells and the viral isolates from them were without exception of the late type with the basic amino acid substitution, whereas the early sequence without the substitution was retained as a major subset in the spleen. These results support the notion that basic amino acid substitutions in V3 are a strong predictor of virus tropism and may be relevant to disease progression.

Acquired Immunodeficiency Syndrome↗

Cloning and characterization of cDNA coding for a new allergen from the house dust mite, Dermatophagoides farinae.

A cDNA clone encoding a new allergen from the Dermatophagoides farinae cDNA lambda gt11 library was isolated and sequenced. There was no amino acid sequence homology with other known allergens. The gene product, beta-galactosidase fusion protein, of the truncated cDNA on blot reacted with IgE in 13 of 43 sera from patients allergic to mites. The affinity-purified fusion protein had a potent ability to release histamine from washed blood cells of the mite-allergic patients. Human specific IgE eluted from the fusion protein band on blots recognized a 39-kD component on blots of a mite body extract.

Allergens↗

Structure of IgE epitopes on a new 39-kD allergen molecule from the house dust mite, Dermatophagoides farinae.

Two IgE epitope sequences comprising Ser56-Pro-Val-Thr-Lys-Arg-Ala-Ser-Leu-Lys-Ile-Asp-Ser-Lys-Lys70 and Asp104-Val-Glu-Leu-Ser-Leu-Arg-Ser-Ser-Asp-Ile-Ala115 were identified by deletion analysis of the cDNA encoding a new 39-kD protein of mite allergen. A synthetic dodecapeptide corresponding to the latter epitope sequence functioned as a monovalent and mite-specific hapten. Replacement of each of the 12 amino acid residues with Gly, using site-directed mutagenesis, indicated that Arg110 may play a central role in IgE binding. However, the 8 allergic sera tested exhibited a wide variation in their amino acid residues required for reactivity to IgE in allergic sera.

Allergens↗

B cell mitogenic activity of sea squirt antigen.

The activity of sea squirt antigen, one of the allergy-inducing substances for humans, on murine and human lymphocytes was studied in vitro. Sea squirt antigen stimulated normal mouse spleen cells to proliferate, as detected by [3H]-TdR incorporation, in a dose-dependent manner. The responder cells are B cells because the response was reduced by the treatment of spleen cells with anti-immunoglobulin antibody and complement and passing through a nylon wool column, but not with anti-Thy-1 antibody and complement. Spleen cells of C3H/HeJ mice, which are lipopolysaccharide low responders, were also stimulated as well as spleen cells of C3H/HeN mice, suggesting that this response is not due to lipopolysaccharide in the antigen fraction. Sea squirt antigen stimulated not only proliferative response of B cells, but also polyclonal immunoglobulin production. Furthermore, sea squirt antigen also stimulated human lymphocytes to proliferate and to produce immunoglobulin. All these results suggest that sea squirt antigen has mitogenic activity on B cells, and this ability is concerned with the induction of allergic reaction.

Animals↗

Low-molecular-size allergens, LM-1s, in feces extract of Dermatophagoides farinae which elicit histamine release from washed blood cells of patients with bronchial asthma.

A significant activity to elicit histamine release was found in an ultrafilterable (Mr-cutoff < 10 kD) fraction of a mite feces extract from a spent mite medium. The activity was divided into two fractions (LM1 and LM2) on an Ultrogel AcA 54 column when monitored by histamine release assay using washed peripheral blood cells from mite-allergic patients. The larger-molecular-size antigen, LM1 was further separated into three allergenic fractions by consecutive chromatography on Sephadex G-50, GM-DEAE, and TSKgel ODS-120T. All the purified allergens, LM1s (LM1a, LM1b, and LM1c), which produced positive reactions in skin tests on allergic patients, were glycoproteins (molecular weight: 8 kD on SDS-PAGE; 12.5 kD on Gel filtration) with different carbohydrate contents and pI values ranging from 4 to 5 on an IEF plate. LM1s were cross-reactive with anti-Der f II but not with anti-Der f I. The reaction of LM1c to anti-Der f II serum was completely inhibited with the other antigens, while the reactions of LM1a and LM1b to the serum were partially inhibited with LM1c or the other antigens, respectively.

Allergens↗