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Biomedical subjects

H Misawa

Publications and source records attributed to H Misawa.

At least 91 records · Page 5Linked to original sources

alpha-L-fucosyltransferases from radish primary roots.

A novel alpha-L-fucosyltransferase capable of transferring L-fucose (L-Fuc) from GDP-L-Fuc to the O-2 of alpha-L-arabinofuranosyl residue (GDP-L-Fuc:alpha-L-arabinofuranoside 2-alpha-L-fucosyltransferase) has been found in the microsomal fraction of primary roots from 6-d-old radish (Raphanus sativus L.) seedlings. Enzyme activity was measured fluorometrically at 25 degrees C using a pyridylaminated trisaccharide, L-arabinofuranosylf alpha(1-->3)D-galactopyranosyl beta(1-->6)D-galactose (AraGalGal-PA) as the acceptor. This enzyme found in the microsomal fraction is maximally active at pH 6.8 and requires 0.1% (w/v) Zwittergent 3-16 and 5 mM Mn2+. Chemical and enzymatic analyses of fucosylated AraGalGal-PA confirmed the attachment of L-Fuc to the L-arabinofuranosyl (L-Araf) residue at O-2 by alpha-glycosidic linkage. Radiolabeling was used to assay L-Fuc transfer to L-Araf-containing galacto-oligomers and tamarind xyloglucan. The enzyme specific for the L-Araf residue undergoes development- and organ-specific expression in root tissue, whereas the L-Fuc transfer to tamarind xyloglucan can be detected in microsomal fractions from various organs in developing radish plants. Enzyme assays of membranes fractionated from microsomal fractions revealed that two distinct alpha-L-fucosyltransferases with different acceptor specificity are associated with Golgi membranes from primary roots, whereas hypocotyl Golgi membranes completely lack the enzyme specific for the L-Araf residue.

Carbohydrate Sequence↗

Coordinate expression of vesicular acetylcholine transporter and choline acetyltransferase in sympathetic superior cervical neurones.

The neurotransmitter acetylcholine is synthesized by choline acetyltransferase (ChAT) and transported into synaptic vesicles by the vesicular acetylcholine transporter (VAChT). Recently it has been reported that the entire coding region of VAChT mRNA is located in the first intron of the ChAT gene. In this study, ChAT and VAChT mRNAs were analysed in cultured sympathetic neurones. Cholinergic differentiation factor/leukaemia inhibitory factor and ciliary neurotrophic factor induced strong expression of ChAT and VAChT mRNAs in parallel. RT-PCR analysis of ChAT mRNAs revealed that five types of ChAT transcripts which differed in the 5' non coding regions were increased. RT-PCR analysis of VAChT mRNA indicated that the cytokines induced only VAChT mRNA species which did not contain the R-exon, and not those containing the R-exon. The results indicate that ChAT and VAChT expressions are coordinately but differentially regulated in cultured sympathetic neurones.

Acetylcholine↗

A subtype of opioid kappa-receptor is coupled to inhibition of Gi1-mediated phospholipase C activity in the guinea pig cerebellum.

PLC activity was stimulated either by 1-100 microM of GTP or by 100-3,000 microM Ca2+ in lysed synaptosomal membranes of the guinea pig cerebellum. The kappa-opioid receptor agonist selectively inhibited the PLC activity stimulated by 100 microM GTP, but not by 100-3,000 microM Ca2+. Pretreatment of membranes with PTX abolished such a kappa-agonist-induced inhibition of PLC activity. The reconstitution of Gi1, but not of Go purified from porcine brains with PTX-treated membranes showed a complete recovery of the kappa-agonist-inhibition of PLC activity. These findings suggest that a novel subtype kappa-receptor mediates inhibition of PLC through inhibiting the intrinsic activity of PTX-substrate G-proteins.

3,4-Dichloro-N-methyl-N-(2-(1-pyrrolidinyl)-cycloh↗

cDNA cloning and chromosomal localization of the human ciliary neurotrophic factor gene.

Full-length cDNA for human ciliary neurotrophic factor (CNTF) was isolated from a human sciatic nerve cDNA library. Sequence analysis revealed that the longest cDNA was comprised of a 48-bp 5'-untranslated region, a 600-bp coding region and a 1207-bp 3'-untranslated region containing four ATTTA pentamer motifs and a polyadenylation sequence. The transcription starting point was assigned at 81 bp upstream of the initiation methionine by 5' RACE analysis. Using the cDNA and genomic DNA fragment including the entire intron region as mixed probes, the human CNTF gene was localized to the long arm of chromosome 11 at region q12 by fluorescence in situ hybridization.

Chromosomes↗

Discrete acetylcholine release from neuroblastoma or hybrid cells overexpressing choline acetyltransferase into the neuromuscular synaptic cleft.

Neuroblastoma (clones NS-20Y, N1E-115, and Neuro2A) and neuroblastoma x glioma hybrid (NG108-15) cells were transfected with mouse choline acetyltransferase (ChAT) complementary DNA (cDNA) or vector DNA alone and stably transformed cell lines were established to examine their ability to secrete acetylcholine (ACh). Membrane potentials were recorded from either presynaptic neuroblastoma and hybrid cells or postsynaptic myotubes in co-culture. After transformation with ChAT, synapses were formed and miniature end-plate potentials (MEPPs) were recorded in myotubes co-cultured with Neuro2A and N1E-115 cells, while parental and mock-transfected control cells totally lacked this ability. The rate of synapse formation and/or MEPP frequency was higher in transformed NG108-15 hybrid and NS-20Y cells than that in the control cells. Action potentials of NS-20Y, Neuro2A or NG108-15 cells overexpressing ChAT were able to evoke end-plate potentials in myotubes, though the average quantum content of these cells was 0.04-0.14, which is as low as the control value. The results show that increased concentrations of ACh by ChAT cDNA transfection reveal a masked property in vesicular ACh release from Neuro2A and N1E-115 cells with no endogenous ChAT activity, or modify their secretory capacity upwardly from NG108-15 and NS-20Y cells with endogenous activity.

Acetylcholine↗

Overexpression of choline acetyltransferase reconstitutes discrete acetylcholine release in some but not all synapse formation-defective neuroblastoma cells.

Secretion of acetylcholine (ACh) in neuroblastoma cells overexpressing choline acetyltransferase (ChAT) was examined. With transient transfection of ChAT cDNA, neuroblastoma cells, which have no endogenous ChAT and either adhere to myotubes or not, failed to form functional synapses, and thus no evidence for release of ACh was detected. Stable neuroblastoma cell lines overexpressing ChAT accumulated ACh inside the cell, and slowly released ACh to the outside of the cell in a calcium-independent fashion. However, after co-culturing them with rat muscle cells, these transformed cells adhered to myotubes and ACh was secreted in a discrete fashion into the synaptic cleft efficiently in some neuroblastoma cell lines but rather inefficiently in another cell line. The results show that the latent secretion machinery of ChAT overexpressing neuroblastoma cells either is competent or possess defect(s) in ACh release.

Acetylcholine↗

Hemodynamic adaptations at birth and neonates delivered vaginally and by Cesarean section.

In order to assess the possible influence of differences in delivery mode on cardiovascular adaptation at birth, we measured left ventricular output and its regional distribution in the major organs sequentially using an echographic technique during the first 96 h of life. We studied 27 normal newborns, of whom 15 were delivered vaginally and 12 by cesarean section. We also measured umbilical arterial and venous catecholamine concentrations. The umbilical arterial epinephrine and norepinephrine concentrations in the infants delivered vaginally were significantly greater than those in the infants delivered by cesarean section (epinephrine 1,195 +/- 208 vs. 565 +/- 81 pg/ml, p < 0.05; norepinephrine 11,832 +/- 3,819 vs. 5,153 +/- 1,400 pg/ml, p < 0.05). The left ventricular output and its regional distribution showed a similar pattern in the two groups, and there were no significant differences between them. These results indicate that the capacity of infants delivered by cesarean section to tolerate cardiovascular changes during the early neonatal period is comparable to that in infants delivered vaginally, even though there are significant differences in the catecholamine surge between these groups.

Adaptation, Physiological↗

Differentiation of cholinergic neurons and physiological role of ciliary neurotrophic factor (CNTF).

Seven types of mRNA that differed in the 5'-non-coding region were identified for choline acetyltransferase of mouse spinal cord. These mRNAs were produced by differential splicing of pre-mRNAs transcribed from three different promoter regions. Two murine cholinergic cell lines, NS20Y and NG108-15, expressed M-type mRNA most abundantly. Using these cell lines, promotor activity in choline acetyltransferase gene was analyzed by transient assay of a reporter gene. The result indicated that there was promoter activity in the region upstream of the M-type exon and enhancer activity in the intron downstream of the M-type exon, and that this region regulated neuron-specific expression of choline acetyltransferase activity. In contrast, R-type mRNA was exclusively expressed in cultured superior cervical ganglion cells and was markedly increased by ciliary neurotrophic factor (CNTF). To analyse the physiological role of CNTF, we constructed and screened a cDNA library from human sciatic nerves and isolated two types of cDNAs for human CNTF. Sequence analysis revealed that one type of cDNA corresponded to the normal mRNA, while the other type contained a 4 bp stretch insertion within the coding region, which caused frameshift from 39th amino acid with a stop codon 24 amino acids downstream. Analysis of genomic DNA for CNTF showed that there was a point mutation from G to A in the intron of the mutated allele, which created a new splice acceptor site and generated a new mRNA species with 4 bp insertion.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetylcholine↗

A null mutation in the human CNTF gene is not causally related to neurological diseases.

We report a null mutation in the human ciliary neurotrophic factor gene (CNTF). The mutated allele shows a G to A transition producing a new splice acceptor site and the resulting mRNA species codes for an aberrant protein. Analysis of tissue samples and transfection of CNTF minigenes into cultured cells demonstrates that the mutated allele expresses only the mutated mRNA species. In 391 Japanese people tested, 61.9% were normal homozygotes, 35.8% heterozygotes and 2.3% mutant homozygotes. The distribution of the three genotypes is similar in healthy and neurological disease subjects, indicating that human CNTF deficiency is not causally related to neurological diseases.

Alleles↗

Calcium-independent release of acetylcholine from stable cell lines expressing mouse choline acetyltransferase cDNA.

Stably transfected cells expressing mouse choline acetyltransferase (ChAT) cDNA were established, and the synthesis and release of acetylcholine (ACh) were examined. A cDNA clone coding for mouse ChAT was inserted into an expression vector (pEF321) containing a promoter for human elongation factor 1 alpha to construct pEFmChAT. Neuronal (NG108-15, NS20Y, N1E115, and Neuro2A) and nonneuronal cell lines (L cells and NIH3T3) were transfected with pEFmChAT, and the cell lines that stably expressed high ChAT activity were selected. These cells expressed the 66-kDa ChAT protein and accumulated ACh mostly in the cytosol. The concentration of intracellular ACh in the cells increased upon raising the choline level in the medium. The cells continuously released ACh in a Ca(2+)-independent fashion. Neither high K+ nor calcium ionophore stimulated release of ACh from the cells.

3T3 Cells↗

Impaired cardiac function in rats with healed myocardial infarction: cellular vs. myocardial mechanisms.

The inotropic responsiveness of isolated perfused rat hearts and single left ventricular (LV) myocytes to extracellular Ca2+ ([Ca2+]o) was examined 3 wk after ligation of left main coronary artery. Myocytes isolated from myocardial infarcted (MI) hearts were 10% longer. At [Ca2+]o of 1.1 mM, cell shortening as well as intracellular Ca2+ concentration dynamics were similar between MI and sham LV myocytes. At [Ca2+]o of 4.9 mM, maximal extent of cell shortening was significantly less in MI myocytes (16 +/- 1 vs. 22 +/- 1%), and peak intracellular Ca2+ concentration was also substantially lower. Thus, under conditions of high [Ca2+]o, decreased sarcolemmal Ca2+ influx and Ca2+ release during excitation-contraction may contribute to systolic dysfunction in MI hearts. Perfused working hearts and isovolumic heart preparations with infarcted LV displayed depressed maximal systolic pressure and decreased sensitivity to the inotropic effects of [Ca2+]o. Our data also indicate that, in addition to possible abnormalities in the contractile response of single myocytes, global factors such as loss of functional myocardium, altered chamber geometry, tissue fibrosis, and/or subendocardial ischemia contributed to depressed LV function in post-MI hearts perfused at physiological [Ca2+]o.

Animals↗

Noninvasive quantitative evaluation of the morphology of the major pulmonary artery branches in cyanotic congenital heart disease. Angiocardiographic and echocardiographic correlative study.

BACKGROUND: Precise noninvasive evaluation of pulmonary artery (PA) morphology is extremely important for medical and surgical management of patients with cyanotic heart disease. In this study, the accuracy of two-dimensional echocardiography combined with color Doppler flow mapping to assess the size, stenosis, and atresia of the major PA branches was examined using a new parasternal approach. METHODS AND RESULTS: With the use of right and left high parasternal windows, we visualized each of the major portions along the right (R-PA) and left (L-PA) pulmonary arteries in 45 of the 47 examinations (96%) in 38 patients with cyanotic heart disease. The patients were between 13 days and 20 years old (mean age, 2.9 years). The internal diameters of the major PA branches were measured at three points along the R-PA (the proximal, mid, and distal portions) and at the proximal and distal portions on the L-PA in systole by both two-dimensional echocardiography and angiography. In addition, the diameter of the stenosis in the PA branch was measured. These PA values as determined by two-dimensional echocardiography correlated well with those obtained by angiography (r = .95 to .97). By two-dimensional echocardiography with color Doppler flow mapping, 17 of 19 lesions with stenoses or atresia of the major PA branches were predicted as defined by angiography (sensitivity, 89.5%; specificity, 100%). Differences between the distal parts of the L-PA and R-PA of > 30% in diameter were determined by angiography in 15 examinations and by two-dimensional echocardiography in 12 examinations (sensitivity, 80%; specificity, 97.4%). CONCLUSIONS: Our technique permits noninvasive evaluation of the size, stenoses, and atresia of the major portions of the PA branches in patients with cyanotic heart disease both before and after surgery.

Angiocardiography↗

Regional blood flow distribution and left ventricular output during early neonatal life: a quantitative ultrasonographic assessment.

To examine the serial changes of left ventricular output and regional blood flow distribution during the early neonatal period, we measured blood flow volume in the ascending aorta, middle cerebral artery, celiac artery, superior mesenteric artery, and renal artery in 23 normal term infants at 1, 4-8, 24, and 96 h after birth. The blood flow volume in each vessel was measured by the pulsed Doppler technique. In the middle cerebral artery, celiac artery, and superior mesenteric artery, the blood flow volume at 1 and 4-8 h of age was significantly lower than after 24 h of age. In contrast, renal artery blood flow volume did not change significantly throughout the study period. The reduced organ blood flow volume soon after birth was related to a low diastolic blood flow in the major vessels, and the percent diastolic integral of blood flow velocity in each vessel showed an inverse linear correlation with the diameter of the ductus arteriosus. The left ventricular output 1 h after birth was 365 +/- 69 mL/kg/min, which was significantly higher than after 4-8 h of age. Left ventricular output gradually declined to 301 +/- 63 mL/kg/min at 4-8 h of age (p < 0.05 versus 96 h), 272 +/- 48 mL/kg/min at 24 h, and 258 +/- 54 mL/kg/min at 96 h. There was a significant positive correlation between left ventricular output and the ductus arteriosus diameter.(ABSTRACT TRUNCATED AT 250 WORDS)

Blood Flow Velocity↗

Embryological study of the spinal ligaments in human fetuses.

We studied embryological development of the human spinal ligaments by dissecting 25 fetuses that ranged from 6 to 24 weeks of gestational age. At 6 and 7 weeks, the spine consisted of light zones and dark zones. The light zones were hypocellular and corresponded to vertebral bodies. The dark zones were hypercellular and corresponded to intervertebral disks. The anterior longitudinal ligament was identified at the gestational age of 8 weeks. At 10 weeks, the posterior longitudinal ligament was detected. At 12 weeks, laminae, the ligamentum flavum, and an ossification center were identified. At 15 weeks, fibers of the ligamentum flavum became clearer, but they were not as well as stained as the adult ligamentum flavum. The enthesis of the ligaments in the human fetuses was not completely identical to that in adults.

Embryonic and Fetal Development↗

Multiple mRNA species of choline acetyltransferase from rat spinal cord.

A cDNA library directed by a specific primer was constructed from the rat spinal cord and screened with 32P-labeled rat choline acetyltransferase cDNA which was recently isolated in this laboratory. Sequence analysis of 29 clones indicated that there are four types of cDNA (R1-, R2-, N1- and M-types). The nucleotide sequences in these cDNAs were identical in the coding region and the first 38 bp of the 5'-noncoding region, but differed in the 5'-noncoding region upstream of -38 bp. The R1-type was identical to the cDNA previously cloned from the rat spinal cord. The M and N1-type cDNAs both had sequences homologous to that of the cDNA previously obtained from the mouse spinal cord. Polymerase chain reaction analysis confirmed the presence of these 4 types of mRNA and found another type (N2-type) of transcript. The numbers of cDNA clones isolated and the relative amounts of polymerase chain reaction products for each type of mRNA suggested that the most abundant transcript was M-type. Sequencing of the genomic clone containing the 5'-region of choline acetyltransferase mRNA revealed that these five types of mRNA species were transcribed from three different promoter regions and produced by differential splicing of the 5'-noncoding exons.

Amino Acid Sequence↗

Transcriptional regulation of choline acetyltransferase gene by cyclic AMP.

The effect of cyclic AMP on the gene expression of choline acetyltransferase (ChAT) was studied in NG108-15, mouse neuroblastoma and rat glioma hybrid cell lines. Addition of dibutyryl cyclic AMP to the culture medium increased both the ChAT mRNA level and ChAT activity twofold. Polymerase chain reaction analysis of the ChAT mRNA indicated that, among the multiple mRNA species, M-type mRNA was transcribed most efficiently, with or without the addition of dibutyryl cyclic AMP. The 5' region of the mouse ChAT gene was ligated to the bacterial chloramphenicol acetyltransferase gene, and the expression of chloramphenicol acetyltransferase activity was determined by transfection analysis. Cyclic AMP derivatives enhanced the reporter gene expression in both transiently and stably transfected cells. DNA deletion analysis indicated that the intron region downstream of the M-type exon is necessary for the cyclic AMP responsiveness, and that cyclic AMP derivatives increase ChAT gene transcription mainly from M-type promoter. These results suggest that a cis-acting DNA element that confers the cyclic AMP responsiveness of the ChAT gene is present in the intron downstream of the M-type exon.

Animals↗

Gene expression of mouse choline acetyltransferase. Alternative splicing and identification of a highly active promoter region.

Seven types of mRNA for choline acetyltransferase that differ in the 5'-noncoding region were identified in the mouse spinal cord by cDNA cloning and polymerase chain reaction. Among these transcripts, the M-type mRNA corresponding to the previously cloned mouse cDNA was most abundant in the spinal cord of mouse. A mouse genomic DNA clone containing the 5'-region of choline acetyltransferase mRNA was isolated and sequenced. Comparison of the sequences between the cDNAs and the genomic DNA revealed that the different mRNA species were transcribed from different promoter regions and produced by differential splicing. Two murine cholinergic cell lines, NS20Y and NG108-15, were shown to express the M-type mRNA almost exclusively, and were therefore used to study transcription of M-type mRNA. Fragments of the 5'-region of choline acetyltransferase gene were ligated with chloramphenicol acetyltransferase reporter gene and introduced into cultured cells. The fragment from -2752 to +46, which contained the M-type exon, a TATA-box like element upstream of the M-type exon, and the downstream intron, induced a significant expression of CAT activity in neuronal but not in non-neuronal cell lines. This result indicates that this region of choline acetyltransferase gene contains elements that regulate neuron-specific expression of choline acetyltransferase activity. However, there was no parallel correlation between reporter gene expression in the transfected cells and intrinsic choline acetyltransferase activity in these neuronal cell lines. Possible mechanisms that would explain this observation are discussed.

Alternative Splicing↗