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Biomedical subjects

K Kawakami

Publications and source records attributed to K Kawakami.

At least 19 recordsLinked to original sources

Differences between T helper cell type I (Th1) and Th2 cell lines in signalling pathways for induction of contact-dependent T cell help.

B cells get help in the antibody response by presenting antigen to helper T (Th) cells. Upon antigen recognition, T cells produce lymphokines that act as growth and differentiation factors for B cells, but resting B cells require additional helper signals that depend on cell contact with an activated Th cell. Like lymphokine secretion, contact help must be induced by antigen recognition or antigen receptor cross-linking in continuous Th cell lines. In the mouse, most CD4+ T cell lines can be classified into one of two stable differentiation states, Th1 or Th2, which produce different lymphokines and have different effector functions, activation requirements and cytoplasmic signalling mechanisms. This report demonstrates additional differences between Th1 and Th2 cell lines in the signalling pathways leading from the T cell antigen receptor to the induction of Th functions. In a system dependent on antigen presentation by B cells, B cell proliferation driven by Th2 cells but not Th1 cells was blocked by acute treatment with phorbol esters. Further experiments showed that phorbol esters blocked the induction of both contact help and lymphokine production in Th2 cells but not in Th1 cells. However, depletion of protein kinase C (PKC) activity by prolonged treatment of T cells with high concentrations of phorbol esters blocked induction of contact help and lymphokine production in Th1 cells but not in Th2 cells. These findings support the hypothesis that Th2 cells use a signalling pathway that is independent of PKC and that PKC activation can block this pathway. Since contact help and lymphokine secretion are affected in parallel, this difference between Th1 and Th2 cells probably reflects early events in the signalling pathway. Contact help and lymphokine production could be dissociated with cholera toxin and other cAMP agonists, but this dissociation could be explained by non-cAMP-related effects of cholera toxin on induction of contact help in Th2 cells, and by the direct effect of cAMP agonists on interleukin 2 gene transcription in Th1 cells reported by other laboratories.

Animals

Effect of geometric factors on hydration kinetics of theophylline anhydrate tablets.

The effect of tablet thickness on the hydration kinetics of types I and II theophylline anhydrate tablets at 95% relative humidity and 35 degrees C was studied with various kinetic equations. Samples of 1- and 2-cm-diameter tablets (1 g) were compressed at 1000 kg/cm2. Types I and II tablets expanded by 11-17% in volume during hydration to the monohydrate. The thickness expansion of all tablets exceeded the diameter expansion. After the hygroscopicity test, the final expansion ratio of type I tablets was more than that of type II tablets. The hydration kinetics analysis suggested that the hydration of theophylline anhydrate tablets proceeds as follows: Hydration of the 1-cm-diameter type I tablet followed the two-dimensional phase boundary equation, and that of the 1-cm-diameter type II tablet followed the three-dimensional phase boundary equation, but those of the 2-cm-diameter types I and II tablets followed the equation for two-dimensional growth of nuclei. The hydration kinetics of tablets does not depend on the nature of bulk powder but on geometrical factors (tablet thickness and porosity).

Chemical Phenomena

Na+/K(+)-ATPase activity and its alpha II subunit gene expression in rat skeletal muscle: influence of diabetes, fasting, and refeeding.

We have examined the effects of diabetes, fasting, and refeeding on Na+/K(+)-adenosine triphosphatase (ATPase) activity and its catalytic alpha II subunit gene expression in skeletal muscle. Two hypoinsulinemic states, streptozotocin-induced diabetes and 48-hour fasting caused a significant decrease (P less than .05) in skeletal muscle Na+/K(+)-ATPase activity and a marked increase (P less than .01) in the levels of alpha II subunit mRNA. A decrease in enzyme activity was observed on the 2nd and the 14th day of diabetes, whereas an increase in alpha II mRNA levels was found only on the 14th day. The levels of alpha I mRNA were not affected, while the levels of mRNA of the structural beta subunit were decreased on the 14th day of diabetes. Correction of hyperglycemia with insulin restored enzyme activity and alpha II isoform mRNA levels toward normal in diabetic animals. Refeeding for 48 or 72 hours restored these parameters to normal in skeletal muscle of previously fasting rats. These observations suggest that a decrease in muscle Na+/K(+)-ATPase activity may lead to a compensatory increase in its alpha II subunit gene expression. The levels of insulin and not of glycemia appear to be critical in modulating Na+/K(+)-ATPase activity and gene expression.

Animals

Phase differences between chest and mouth flows in patients suffering from pulmonary disease.

The phase difference (PD) between mouth flow and chest flow during rest breathing was measured in pulmonary diseased patients using a body box and the results were compared with normal subjects. Whereas the PD increased in patients with chronic pulmonary obstructive disease (COPD) compared to normal subjects, PD was found to be normal in patients with interstitial pulmonary fibrosis (IPF) (Normal: 2.94 +/- 1.25, COPD: 11.32 +/- 4.17*, IPF: 2.62 +/- 1.67 degrees; *P < 0.01). PD correlated well with FEV1.0/VC%, PFR, RV/TLC, VTG and Ra (r: -0.759, -0.672, -0.788, 0.666, 0.606). From an in-depth analysis of the results, we suggest that the factors which increase PD in COPD patients include hyperinflation of the lung, increases in airway resistance and increases in the parallel inhomogeneity of airway resistance accompanied by an unevenness of alveolar pressures. PD was thought to be clinically useful for the evaluation of the pathological stages of COPD because it reflects the overall clinical manifestations in COPD patients.

Adult

Silicone-immobilized biocatalysts effective for bioconversions in nonaqueous media.

A hydrophobic silicone polymer could be effectively applied to immobilization of two kinds of biocatalysts operating in organic media. Horse liver alcohol dehydrogenase, which was solubilized in a small amount of water, or deposited on water-filled hydrophilic particles, was immobilized in this material. This configuration of the preparation involving finely dispersed aqueous phase permitted a simple packed-bed operation for the enzymatic oxidation of alcohol and reduction of aldehyde with a coupled-substrate NAD(H) recycling in n-hexane. Another example was the immobilization of Nocardia corallina which catalysed epoxidation of liquid alkenes such as 1-tetradecene, 1-octene, and styrene in the presence of n-hexadecane. In order to adjust the hydrophobicity-hydrophilicity balance of the support, it was effective to immobilize the cells in a mixed matrix composed of silicone polymer and Ca-alginate gel. The optimum composition of the mixed matrix, which yielded the highest productivity of epoxide, was 80-90% silicone + 20-10% alginate for the production of 1,2-epoxytetradecane, 40-50% silicone + 60-50% alginate for 1,2-epoxyoctane, and almost 0% silicone + 100% alginate for styrene oxide. This significant change of the optimum composition was primarily associated with the degree of substrate inhibition.

Alcohol Dehydrogenase

Maturational stage specific immunoglobulin heavy chain gene rearrangements, determined by D and D upstream region gene structures.

In 43 cases of various B-cell lineage tumors, precise gene structures of rearranged immunoglobulin heavy chain (IgH) were studied. By Southern-blot analysis of D upstream (5'D) gene of IgH, biallelic rearrangement structures, D-J or V-D-J, were determined and consequently maturational stage specific IgH rearrangement patterns were investigated. B-precursor ALL cases (especially stage IV of Nadler's criteria) have V-D-J rearranged IgH genes on both alleles. In contrast, most of the mature B-cell malignancies, excluding multiple myeloma, have IgH genotype of D-J/V-D-J. In addition, in case of D-J/V-D-J, the D gene used in D-J joining has been speculated by Southern-blot of D genes. So, these approaches for inquiring precise structures of rearranged IgH genes are supposed to provide new information of lymphocyte differentiation and leukemogenesis.

Antigenic Variation

Overproduction and purification of lysyl-tRNA synthetase encoded by the herC gene of E coli.

Lysyl-tRNA synthetases are synthesized from two distinct genes in E coli, lysS and lysU, but neither gene product has been purified distinctively by using overproducing systems. The lysS gene has been identified by a herC mutation which restores maintenance of the mutant ColE1 replicon. The herC gene product was overproduced by using a tac promoter fusion and purified to homogeneity. The purified HerC protein possesses a lysyl-tRNA synthetase activity as predicted by the sequence identity of herC to lysS. The procedure is useful for rapid mass-scale purification of lysyl-tRNA synthetase.

Escherichia coli

Zonisamide blocks T-type calcium channel in cultured neurons of rat cerebral cortex.

We investigated the effect of zonisamide, a new antiepileptic drug, on voltage-dependent Ca2+ currents in cultured neurons of rat cerebral cortex. Whole-cell voltage-clamp recordings demonstrated at least two distinct voltage-dependent Ca2+ currents: (1) a low-threshold, rapidly inactivating component, T-type Ca2+ current, which is sensitive to 100 microM Ni2+, and (2) a high-threshold, slowly inactivating (long-lasting) component, L-type Ca2+ current. Zonisamide, a new anticonvulsant effective against maximal electroshock (MES) seizures in mice reduced T-type Ca2+ current in a dose-dependent manner. The mean percentage of reduction was 59.5 +/- 7.2% at 500 microM, but zonisamide had no effect on L-type Ca2+ current. A methylated analog of zonisamide, which is ineffective against MES seizures in mice, was tested at a concentration of 500 microM, and reduced neither T-type nor L-type Ca2+ current. These findings suggest that the effects of zonisamide against MES seizures might occur through the reduction of T-type Ca2+ current. Because drugs that are effective against MES seizures are thought to prevent seizure discharge spread, T-type Ca2+ channels could underlie a cellular mechanism of spreading activity in epileptic seizures.

Action Potentials

Ty element-induced temperature-sensitive mutations of Saccharomyces cerevisiae.

Temperature-sensitive mutants of Saccharomyces cerevisiae were isolated by insertional mutagenesis using the HIS3 marked retrotransposon TyH3HIS3. In such mutants, the TyHIS3 insertions are expected to identify loci which encode genes essential for cell growth at high temperatures but dispensable at low temperatures. Five mutations were isolated and named hit for high temperature growth. The hit1-1 mutation was located on chromosome X and conferred the pet phenotype. Two hit2 mutations, hit2-1 and hit2-2, were located on chromosome III and caused the deletion of the PET18 locus which has been shown to encode a gene required for growth at high temperatures. The hit3-1 mutation was located on chromosome VI and affected the CDC26 gene. The hit4-1 mutation was located on chromosome XIII. These hit mutations were analyzed in an attempt to identify novel genes involved in the heat shock response. The hit1-1 mutation caused a defect in synthesis of a 74-kD heat shock protein. Western blot analysis revealed that the heat shock protein corresponded to the SSC1 protein, a member of the yeast hsp70 family. In the hit1-1 mutant, the TyHIS3 insertion caused a deletion of a 3-kb DNA segment between the delta 1 and delta 4 sequences near the SUP4 locus. The 1031-bp wild-type HIT1 DNA which contained an open reading frame encoding a protein of 164 amino acids and the AGG arginine tRNA gene complemented all hit1-1 mutant phenotypes, indicating that the mutant phenotypes were caused by the deletion of these genes. The pleiotropy of the HIT1 locus was analyzed by constructing a disruption mutation of each gene in vitro and transplacing it to the chromosome. This analysis revealed that the HIT1 gene essential for growth at high temperatures encodes the 164-amino acid protein. The arginine tRNA gene, named HSX1, is essential for growth on a nonfermentable carbon source at high temperatures and for synthesis of the SSC1 heat shock protein.

Base Sequence

Molecular cloning and expression of cDNA encoding a galactose/N-acetylgalactosamine-specific lectin on mouse tumoricidal macrophages.

We previously reported that the mouse macrophage galacose and N-acetylgalactosamine-specific lectin (MMGL) may participate in the binding of the macrophages to tumor cells [Oda, S., Sato, M., Toyoshima, S., & Osawa, T. (1989) J. Biochem. 105, 1040-1043]. We now report the cloning and characterization of a cDNA encoding MMGL. The MMGL gene encoded a protein consisting of 304 amino acid residues with a molecular weight of 34,595. The deduced amino acid sequence indicated that MMGL had a single membrane-spanning region, three leucine zipper-like domains, and a carbohydrate recognition domain. Two N-glycosylation sites were found in the extracellular region of MMGL, corresponding to the heavy N-glycosylation in the native MMGL. Comparison of the amino acid sequence of MMGL with those of rat hepatic lectins revealed a high overall sequence homology. The sequence homology was especially high in the putative membrane-spanning region and carbohydrate recognition domain. There was, however, a region of 25 amino acids which did not exist on hepatic lectins. The MMGL cDNA without the region encoding the putative membrane-spanning region and intracellular region was expressed in Escherichia coli. The expressed protein had galactose-binding activity and its sugar-binding specificity was same as that of the native lectin.

Acetylgalactosamine

Identification and characterization of the cis-elements regulating the rat AMOG (adhesion molecule on glia)/Na,K-ATPase beta 2 subunit gene.

We have identified a positive regulatory cis-acting element of the adhesion molecule on glia (AMOG)/Na,K-ATPase beta 2 subunit gene as GAGGCGGGG at position -87 to -79 by transient transfection assay using B103 cells (rat neuroblastoma cell line). The newly identified AMOG regulatory element (AMRE) enhanced the promoter activity in a mutually compensating manner with the Sp1 element at position -147 to -142. AMRE acts as a positive regulatory element not only in B103 cells but also in 3Y1 (rat embryo cell line) cells to roughly the same extent and in MDCK (canine kidney cell line) cells to a lesser extent. AMRE also enhances other gene promoters, such as myelin basic protein (MBP) and herpes simplex virus (HSV) thymidine kinase (TK) gene promoters. The element is not a typical enhancer element because when it is introduced downstream of the HSV TK promoter, it has no enhancing activity.

Adenosine Triphosphatases

Differential regulation of two genes encoding lysyl-tRNA synthetases in Escherichia coli: lysU-constitutive mutations compensate for a lysS null mutation.

Lysyl-tRNA synthetases are synthesized in Escherichia coli from two distinct genes, lysS and lysU, which are regulated differentially. A strain which is null for lysS, the constitutive gene, was created by gene disruption (lysS1) and exhibited cold-sensitive lethality. Hence, lysS is dispensable at high temperatures. This cold sensitivity was suppressed by a multi-copy plasmid carrying lysU, the inducible gene. These data are interpreted as indicating that lysS is functionally replaceable by lysU for cell growth, and that the cold sensitivity of lysS1 is caused by insufficient expression of lysU at low temperatures. To investigate the mechanism of lysU expression, cold-resistant bypass mutations were isolated from lysS1, and named als (for abandonment of lysS). Two als mutations which were linked to lysU contain IS2 insertions upstream of the lysU promoter. They caused a 16-19-fold increase in the lysU-mRNA level. Furthermore, deletion mutations created immediately upstream of the lysU promoter restored growth of lysS1. These results suggest that transcription of lysU is negatively controlled by a cis-element located upstream of the promoter.

Base Sequence

[Studies on motile-Aeromonas infection 3). Phage typing of motile Aeromonas isolated from patients with diarrhea].

Phage types were determined for 102 strains of motile Aeromonas isolated from patients with diarrhea at four metropolitan hospitals in Tokyo. The following results were obtained. 1) Of the 102 strains examined, 52 (51.0%) were divided into 28 phage types. This rate was considerably higher, compared to our previous results, namely, 21.7% for strains isolated from natural environments and 25% for those isolated from meats. By bacterial species, phage types could be determined for 33 (52.4%) of 63 strains of A. hydrophila, for 16 (45.7%) of 35 strains of A. sobria, 2 (50.0%) of 4 strains of A. caviae and 1 (100%) strain of Aeromonas spp. 2) Of the 52 strains for which the phage types could be determined, the greatest number (16 strains, 30.8%) were identified as belonging to Type I group. These are followed by 5 strains (9.6%) which were identified as Type I/III group and 2 strains (3.4%) each identified as Type I/II, I/II/V, IV, V and VI groups. The remaining 21 strains were identified as belonging to one of the other phage type groups. Thirty-five (67.3%) of the strains for which the phage types were identified, were found to belong either to Type I group or to combinations with Type I. This demonstrated that 34.0% of the isolates from patients with diarrhea were related to Type I.

Aeromonas

Housekeeping Na,K-ATPase alpha 1 subunit gene promoter is composed of multiple cis elements to which common and cell type-specific factors bind.

Na,K-ATPase alpha 1 subunit gene (ATP1A1) is one of the housekeeping genes involved in homeostasis of Na+ and K+ in all animal cells. We identified and characterized the cis-acting elements that regulate the expression of ATP1A1. The region between -155 and -49 was determined as a positive regulatory region in five cultured cell lines of different tissue origins (MDCK, B103, L6, 3Y1, and HepG2). The region was divided into three subregions: from -120 to -106 (including the Sp1 binding site), from -102 to -61, and from -58 to -49 (including an Sp1 consensus sequence). Cell type-specific factors binding to the middle subregion (from -102 to -61) were detected by gel retardation analysis, using nuclear extracts prepared from MDCK and B103 cells. Two gel retardation complexes were formed in the B103 nuclear extract, and three were formed in the MDCK nuclear extract. DNA binding regions of these factors were located at -88 to -69 and differed from each other in DNase I footprinting experiments. These factors also showed different binding characteristics in gel retardation competition and methylation interference experiments. The identified cis element was named the ATP1A1 regulatory element. The core sequence of this element is found in several other genes involved in cellular energy metabolism, suggesting that the sequence is a common regulatory element responsive to the state of energy metabolism.

Animals

Pulmonary metastatic nodules: CT-pathologic correlation.

To elucidate the characteristics of pulmonary metastatic nodules on high-resolution computed tomographic (HRCT) scans, a correlative computed tomographic (CT)-pathologic study was performed with five human lungs after autopsy. The relationship of metastatic nodules to pulmonary vessels was studied with HRCT scans, radiographs of the specimen, and stereomicroscopic study in 264 nodules 0.6-9.0 mm in diameter. On radiographs and stereomicroscopic images, 190 small nodules (less than 3 mm in diameter) were in contact with the pulmonary lobule on the central bronchovascular bundles (n = 33 [17.4%]), located between the central bronchovascular bundle and the perilobular structure (n = 127 [66.8%]), or attached to perilobular structures (n = 30 [15.8%]). On HRCT scans, 21 small nodules (11.1%) were located on the central bronchovascular bundle; 130 small nodules (68.4%), between the central bronchovascular bundle and the perilobular structure; and 39 small nodules (20.5%), on the perilobular structure. On radiographs and stereomicroscopic images, 43 of 74 large nodules (greater than 3 mm in diameter) (58%) compressed both bronchovascular bundles and perilobular structures. The central bronchovascular bundle was invaded in only 13 large nodules (18%).

Humans

Novel myosin isoform in nuclear chain fibers of rat muscle spindles produced in response to endurance swimming.

With the use of myosin adenosinetriphosphatase (ATPase) and immunofluorescence staining methods, the adaptive responses of intrafusal and extrafusal fibers to endurance swimming were studied in frozen sections of rat soleus (SOL) and extensor digitorum longus (EDL) muscles. Glycogen depletion confirmed muscle fatigue at the end of a standardized bout of exercise. No significant age-dependent changes in myosin isoforms were detected in any fibers. The 12-wk training increased type I fibers by 10.9% in the SOL and type IIa fibers in the EDL by 16.6%. In trained muscle sections, both staining methods identified a permuted chain fiber, expressed the same as the myosin isoform in the bag2 fiber. However, no exercise-induced change of myosin isoform profile was found in the bag1 and bag2 fibers. Myosin ATPase (and immunofluorescence) staining showed the percentage of permuted chain fibers increased from 0 to 6.7% (5.6%) after 6 wk of training and to 19.2% (14.1%) after 12 wk of training and that it was still at 6.1% (4.2%) 10 wks after training. A novel myosin isoform may thus be expressed in nuclear chain fibers by repetitive recruitment of muscle spindles.

Adenosine Triphosphatases

Regulation of Na,K-ATPase gene expression by thyroid hormone in rat cardiocytes.

Synthesis and activity of the enzymatic equivalent of the sodium pump, Na,K-ATPase, are regulated by thyroid hormone in responsive tissues. The purpose of this study was to determine whether triiodothyronine (T3) regulates the level of the messenger RNA (mRNA) coding for Na,K-ATPase alpha- and beta-subunits in the heart. The expression of Na,K-ATPase mRNAs in in vitro myocardial cells was directly assayed by Northern and slot blot hybridization using Na,K-ATPase alpha- and beta-isoform-specific cDNA probes. Exposure of cultured neonatal rat cardiocytes to 10(-8) M T3 resulted in 1) threefold to fourfold increase in alpha 1- and beta 1-mRNA accumulation, with a maximum elevation at 48 hours, 2) sevenfold increase in alpha 2-mRNA accumulation with a peak elevation at 72 hours, and 3) transient threefold increase in alpha 3-mRNA within the first 24 hours followed by a deinduction thereafter. The increase in alpha 1-mRNA accumulation by T3 occurred over the physiological T3 concentration range with an EC50 of 5 x 10(-10) M. This was associated with a twofold increase in alpha 1-subunit protein accumulation and an increase in Na,K-ATPase transport activity. The half-life of alpha 1-mRNA analyzed by actinomycin D chase was less than 3 hours and was not affected by T3. Transfection experiments with the luciferase reporter gene revealed that thyroid hormone response sequences are located within the 5'-flanking regions of each alpha-isoform gene.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals