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Biomedical subjects

K Ishikawa

Publications and source records attributed to K Ishikawa.

At least 19 recordsLinked to original sources

Expression and secretion of wheat germ agglutinin by Saccharomyces cerevisiae.

Genes encoding pre-protein and prepro-protein of wheat germ agglutinin isolectin 2 (WGA2) were chemically synthesized and expressed in the yeast Saccharomyces cerevisiae under the control of the ENO1 promoter. Yeast harboring either a pre-WGA2 or a prepro-WGA2 gene expression plasmid secreted a mature form of WGA2 into the culture medium. The amount of WGA2 secreted by the strain KS58-2Ddel, which has a ssl1 mutation causing a supersecretion of human lysozyme [Suzuki, K., Ichikawa, K. & Jigami, Y. (1989) Mol. Gen. Genet. 219, 58-64], was 20-fold greater than that secreted by the wild-type strain KK4. The recombinant WGA2 from the cells containing the prepro-WGA2 gene expression plasmid was purified to homogeneity by a three-step ion-exchange chromatography scheme. As in wheat, the N-terminal signal peptide of recombinant WGA2 purified from yeast culture was processed to form an N-terminal 5-oxoprolyl (pyroglutamyl) residue. Likewise, we found that the C-terminal pro-region of recombinant WGA2 had also been processed in yeast. Using electrospray ionization mass spectrometry, we found the processed C-terminus to be heterogeneous in both recombinant WGA2 purified from yeast and in authentic WGA2. The major component of the recombinant WGA2 contained two additional amino acids at its C-terminus compared to that of authentic WGA2. In spite of this difference in the C-terminus, the recombinant WGA2 exhibited a sugar binding activity that was indistinguishable from that of authentic WGA2.

Amino Acid Sequence

Suppressive effects of the endothelin receptor (ETA) antagonist BQ-123 on ET-1-induced reduction of lipoprotein lipase activity in 3T3-L1 adipocytes.

Endothelin (ET)-1 reduced heparin-releasable lipoprotein lipase (LPL) activity in 3T3-L1 adipocytes in a concentration-dependent manner. However, a selective ETB receptor agonist, [Ala1,3,11,15]ET-1, did not act like ET-1. The ET-1-induced decrease in LPL activity was suppressed by a selective ETA receptor antagonist, BQ-123: the concentration-response curve for the ET-1 reduction of LPL activity was shifted to the right in the presence of BQ-123 in a concentration-dependent manner. This antagonistic effect of BQ-123 clarifies that the ETA receptor is responsible for the ET-1-induced reduction of LPL activity in 3T3-L1 adipocytes, which suggests that there is therapeutic potential for ETA antagonists in LPL-related lipoprotein disorders.

3T3 Cells

Protective effect of a selective endothelin receptor antagonist, BQ-123, in ischemic acute renal failure in rats.

To elucidate the pathophysiological role of endogenous endothelin (ET), we examined the effects of the newly synthesized ETA receptor-selective antagonist, BQ-123, on ischemic acute renal failure induced by bilateral clamping of renal artery and vein followed by reperfusion in rats. BQ-123, when given by i.v. infusion of 0.5 mg/kg per min for 2.5 h during the pre- and post-ischemic period, was found to prevent the decrease in creatinine clearance and increases in blood urea nitrogen, plasma creatinine and the fractional excretion of sodium. Morphological observation also showed an effect of BQ-123, i.e. prevention of proximal tubular (S3 segment) necrosis. At 2 h after the start of reperfusion, the ET-1 content in the kidney increased to its maximal level. At this time, the Ca2+ content in the mitochondrial fraction of the renal cortex increased, with a concomitant increase in blood urea nitrogen. However, these increases were limited by treatment with BQ-123. Thus, BQ-123 was effective to both prevent mitochondrial Ca2+ accumulation in the early phase of ischemic acute renal failure and protect proximal tubular cells from post-ischemic degeneration. We conclude that ET may be at least partially involved in the pathogenesis of tubular cell injury in this acute renal failure model.

Acute Kidney Injury

A mutant alpha-amylase with enhanced activity specific for short substrates.

The 210th lysine (K210) at the active site in Saccharomycopsis fibuligera alpha-amylase was altered to arginine (R) or asparagine (N) by site-directed mutagenesis. Replacement of K210 by R strengthened the 7th and weakened the 8th subsite affinities. K210 was found to contribute to both the 8th and the 7th subsites. The catalytic activity of the K210R enzyme for the hydrolysis of maltose (G2) was three-times higher than that of the native enzyme due to an increase in the affinity of the 7th subsite adjacent to the catalytic site, whereas the activity of the K210N enzyme for G2 was decreased to 1% of that of the native enzyme by a reduction in the 7th subsite affinity.

Amylose

A novel transthyretin mutation at position 30 (Leu for Val) associated with familial amyloidotic polyneuropathy.

A novel transthyretin (TTR) mutation associated with familial amyloidotic polyneuropathy was detected in a Japanese patient. Single-strand conformation polymorphism analysis and sequence analysis of polymerase chain reaction (PCR)-amplified exons of the patient's TTR gene revealed a point mutation resulting in a substitution of leucine for valine at position 30. As the mutation creates a Cfr13I site, it was confirmed by PCR and restriction analysis. Our finding indicates the importance of position 30 in TTR-derived amyloid fibril formation.

Amyloidosis

Alteration of bond-cleavage pattern in the hydrolysis catalyzed by Saccharomycopsis alpha-amylase altered by site-directed mutagenesis.

The 210th lysine (K) residue in the Saccharomycopsis alpha-amylase (Sfamy) molecule was replaced by arginine (R) and asparagine (N) residues by site-directed mutagenesis. The influences of the replacements on the bond-cleavage pattern for several substrates were analyzed. Both mutant enzymes, K210R and K210N, cleave mainly the first glycosidic bond from the reducing end of maltotetraose (G4), while the native enzyme hydrolyzes mainly the second bond from the reducing end. We changed successfully the major cleavage point in the hydrolysis reaction of G4. The 8th subsite affinities of the K210R and K210N enzymes are calculated to be +2.52 and -0.01 kcal/mol, respectively, whereas that of the native enzyme is +3.32 kcal/mol as reported in the previous paper. These affinity values suggest that the K210 residue composes the 8th subsite, one of major subsites, and that a positively charged amino residue is necessary for the 8th subsite affinity. The K210N enzyme is found to be less active for short substrates like maltotetraose (G4) than for long substrates like amylose A (approximately G18). The reduced catalytic activity specifically for the short substrates is also attributable to the remarkable decrease in the affinity of the 8th subsite.

Amino Acid Sequence

Enalapril reduces the enhanced 1,2-diacylglycerol content and RNA synthesis in spontaneously hypertensive rat hearts before established hypertension.

There is evidence that cardiac hypertrophy in spontaneously hypertensive rats (SHR) occurs before the development of hypertension. 1,2-Diacylglycerol, which is thought to be a second messenger activating protein kinase C, is also produced in excess in SHR hearts at 4 weeks of age, before established hypertension. We determined myocardial 1,2-diacylglycerol content in SHR with and without prazosin and enalapril from 3 to 4 weeks of age. Hearts from untreated SHR had greater RNA and DNA synthesis and greater relative weights at 4 weeks of age than those from Wistar-Kyoto (WKY) rats. There was no difference in triglyceride content or phospholipid species between WKY rats and untreated SHR, except for a higher cholesterol content in SHR. Treatment of SHR with enalapril, but not prazosin, lowered not only 1,2-diacylglycerol content but also RNA synthesis to the levels of WKY rats. Moreover, fatty acids involved in 1,2-diacylglycerol were altered by enalapril despite the lack of a difference between WKY rats and untreated SHR. Prazosin did not have any effect on 1,2-diacylglycerol fatty acid composition. Enalapril may decrease cardiac hypertrophy in SHR by lowering myocardial 1,2-diacylglycerol production.

Animals

Evidence for different sites of monoamine oxidase and catechol-O-methyltransferase in the striatum.

Wistar rats were implanted with a probe for brain microdialysis in the striatum, and measured for two major dopamine metabolites, 3,4-dihydroxyphenylacetic acid (DOPAC) and homovanillic acid (HVA). Intraperitoneal chlorpromazine (5 mg/kg) increased the concentrations of both metabolites in the dialysate when the determinations were carried out before 90 min after the administration. An apparent difference between the declines in concentrations of DOPAC and HVA was observed. Although the concentration of HVA maintained higher levels for over 6 h after the administration, DOPAC underwent a decrease in its concentration after the maximum level, which occurred at 90 min after the administration. These results are discussed in terms of the different distributions of two enzymes related to the metabolism of dopamine, catechol-O-methyltransferase and monoamine oxidase.

3,4-Dihydroxyphenylacetic Acid

Multi-functional roles of a histidine residue in human pancreatic alpha-amylase.

Functional roles of histidine residues at the active site in human pancreatic alpha-amylase were examined by protein engineering. Three histidine residues at 101, 201, and 299 were converted to asparagine residues, respectively. It was found that His201 played multi-functional roles concerning so many functions; substrate binding, control of optimum pH, change in substrate specificity, activation by chloride ion, and inhibition by a proteinaceous inhibitor.

Binding Sites

Importance of histidine residue 25 of rat heme oxygenase for its catalytic activity.

A truncated, soluble, and enzymatically active rat heme oxygenase lacking its membrane-associative, C-terminal segment was expressed in E. coli strain JM109. The roles of its four histidine residues were examined by determining the enzymatic activities of mutant enzymes in which each of these residues in turn was replaced by alanine. Mutation of histidine residue 25 to alanine resulted in marked decrease in activity for heme breakdown, indicating that this histidine residue has an important role in the heme oxygenase reaction.

Alanine

Different distribution of endothelin receptor subtypes in pulmonary tissues revealed by the novel selective ligands BQ-123 and [Ala1,3,11,15]ET-1.

We have demonstrated the different distribution of two distinct endothelin (ET) receptor subtypes in porcine pulmonary tissues using a radioligand binding assay. The clear differentiation of the subtypes was made possible by the discovery of two compounds, BQ-123 and [Ala1,3,11,15]ET-1 (4AlaET-1), that are highly selective for ETA and ETB receptors, respectively. In the bronchus and lung parenchyma, BQ-123 inhibited 65% and 30% of [125I]ET-1 binding on the sensitive sites, while 4AlaET-1 displaced 25% and 60%, respectively. The combination of the two compounds completely inhibited ET-1 binding in both tissues. An autoradiographic study of [125I]ET-1 binding using BQ-123 and 4AlaET-1 also supported the different localization of two ET receptor subtypes in pulmonary tissues. In particular, the blood vessels and bronchi are rich in ETA, but the lung parenchyma is rich in ETB.

Amino Acid Sequence

Specific distribution of an epididymal 50 kDa protein revealed by an anti-Mos protein monoclonal antibody.

An anti-Mos protein monoclonal antibody, 4A6, was used to investigate the distribution of the antigen in the epididymis, in which the c-mos gene is reportedly expressed. The 4A6-reactive antigen was found on the basement membrane and luminal surface of the epithelial cells in the caput epididymis of BALB/c male mice as well as in the proximal corpus epididymis, the cauda epididymis, and the vas deferens. The 4A6 antigen was also found on the luminal surface of the epithelial cells in the epididymis of male germ cell-deficient C57BL/6J-Wv/Wv mice. This confirmed that the 4A6 antigen does not derive entirely from the testicular c-Mos protein but is synthesized in the epididymis. Western blot analysis revealed that the molecular weight of the epididymal 4A6 antigen was 50 kDa, which is unusually high for the c-Mos protein. With its specific distribution in the epididymis, the protein should play a specific role in functions of the epididymis.

Animals

Structure and expression during the germination of rice seeds of the gene for a carboxypeptidase.

The carboxypeptidase gene from rice and corresponding cDNA clones were isolated. The Sal I 11.2 kb fragment of DNA cloned from a size-fractionated genome library contained eight introns and an open reading frame that encoded 500 amino acids (M(r) 55,445). The structure deduced for the carboxypeptidase from rice was very similar to those of type III serine carboxypeptidases from barley and wheat. The extent of homology of the amino acid sequence to that of these carboxypeptidases from barley and wheat was 92.3% and 87.2%, respectively. The accumulation of mRNA for the rice carboxypeptidase was conspicuous in germinating endosperms that contained aleurone layers, but levels were lower in leaves and roots. The abundance of the mRNA in endosperms was enhanced by gibberellic acid (GA) and accumulation of the mRNA was inhibited by abscisic acid (ABA). The rice gene for carboxypeptidase contained some pyrimidine boxes (C/TCTTTTC/T), in the 5' flanking region, which are a characteristic of a GA-responsive gene.

Amino Acid Sequence

Bethanechol and a G-protein activator, NaF/AlCl3, induce secretory response in Paneth cells of mouse intestine.

Paneth cells located at the bottom of intestinal crypts may play a role in controlling the bacterial milieu of the intestine. Using morphometry to clarify the secretory mechanism of the Paneth cells, we studied the ultrastructural changes in mouse Paneth cells produced following intra-arterial perfusion with Hanks' balanced salt solution containing a cholinergic muscarinic secretagogue (bethanechol), a neuroblocking agent (tetrodotoxin), or a G-protein activator (NAF/AlCl3). Bethanechol (2 x 10(-4) mol/l) induced Paneth-cell secretion. Many Paneth cells massively exocytosed their secretory material into the crypt lumen; the enhanced secretion caused degranulation and vacuole formation. However, tetrodotoxin (2 x 10(-6) mol/l) did not prevent the bethanechol-enhanced secretion by the Paneth cells. NaF (1 x 10(-2) mol/l) and AlCl3 (1 x 10(-5) mol/l) induced massive exocytosis of the Paneth cells; the exocytotic figures were similar to those observed in mice stimulated by bethanechol. G-protein activation was followed by a sequence of intracellular events, resulting in exocytosis.

Aluminum

Nucleotide sequence of capsid protein gene of rice tungro bacilliform virus.

The sequence of 5,028 nucleotides, including one open reading frame (ORF), of rice tungro bacilliform virus (RTBV) dsDNA was determined. The predicted translational product comprises 1,675 amino acids and has Mr of 194,134 (p194). The amino acid sequences of three tryptic fragments from the 32 k capsid protein of RTBV (p32) were found in the predicted translational product indicating that the ORF codes for the RTBV capsid protein.

Amino Acid Sequence

Antitumor effect of a Coliolus preparation, PSK: induction of macrophage chemotactic factor (MCF) in spleens of tumor bearing mice.

The effect of administration of PSK (Polysaccharide Kureha), a Coliolus preparation, in Meth-A solid tumors was analyzed in BALB/c mice. Spleen cells prepared from normal, non-treated Meth-A bearing, PSK-treated normal and PSK-treated tumor bearing mice were examined for induction of macrophage chemotatic factor (MCF). Only spleen cells from the latter mice produced MCF after 48 hrs of cultivation in the presence of Meth-A cells or concanavalin A (Con A). MCF-producing cells were indicated to be Lyt-1 positive, L3T4 positive and Lyt-2 negative cells in the negative elimination assay. There were no differences in the production of other cytokines including interleukin-2, interferon and tumor necrosing factor, spleen cells obtained other different groups of mice. The antitumor effect of either crude or purified MCF (molecular weight 100,000) was examined by daily consecutive intratumoral injections into Meth-A tumor tissues, and a significant inhibitory effect was detected.

Animals

The prevalence and prognostic significance of arrhythmias in Duchenne type muscular dystrophy.

To investigate the prevalence and prognostic significance of cardiac arrhythmias in Duchenne type muscular dystrophy 24-hour ambulatory ECG was performed in 80 patients with Duchenne type muscular dystrophy, and they were followed up for 5 years. Various arrhythmias were observed in 63.8% (51 of 80) of the patients. Ventricular premature beats were found in 30% (24 of 80), and the incidence of ventricular premature beats increased as the clinical severity of skeletal muscle involvement advanced. Forty-seven patients survived for 5 years, but the incidence of arrhythmias increased from 38.3% (18 of 47) to 74.5% (35 of 47) (p < 0.001). During the 5-year period, four of 33 deaths were sudden. Malignant ventricular premature beats (ventricular couplets, ventricular tachycardia, and R-on-T-type ventricular premature beats) were observed in three of these four patients. It appears that cardiac arrhythmias are a common complication of Duchenne type muscular dystrophy and that the incidence of ventricular arrhythmias increases with the progression of myocardial involvement. There is an association between ventricular arrhythmias and sudden death, but the reduction of ventricular arrhythmias may not reduce the incidence of episodes of sudden death.

Adolescent