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Biomedical subjects

K Matsubara

Publications and source records attributed to K Matsubara.

At least 109 records · Page 6Linked to original sources

Cholecystokinin regulates the invasiveness of human pancreatic cancer cell lines via protein kinase C pathway.

We have previously reported that cholecystokinin (CCK) plays an important role in the invasiveness and the production of matrix metalloproteinase-9 (MMP-9) in two human pancreatic cancer cell lines. In this study we investigated the pathway of the invasiveness associated with MMP-9 of those lines regulated by CCK. Two human pancreatic cancer cell lines were treated with CCK-8 alone, CCK-8 and staurosporine, or CCK-8 and indomethacine. The invasiveness and the production of MMP-9 were decreased with staurosporine but not indomethacine. These results suggest that CCK may regulate the invasiveness and the production of MMP-9 via protein kinase C in human pancreatic cancer cell lines.

Blotting, Western↗

[Usefulness of 18F-FDG PET for diagnosis of cardiac sarcoidosis].

Cardiac sarcoidosis, the main cause of death among patients with sarcoidosis, frequently becomes clinically apparent when the disease is far advanced. To evaluate the usefulness of the 18F-fluorodeoxyglucose (FDG) positron emission tomography (PET) in detecting cardiac sarcoidosis, 18F-FDG PET was performed in 16 patients with sarcoidosis (13 female, 63 +/- 12 yrs), compared with scintigraphic findings of 99mTc-MIBI and 67Ga. Ten of 16 patients were considered to have cardiac complications on clinical grounds with tissue confirmation such as positive endomyocardial biopsy, severe ventricular arrhythmia, more than second degree atrioventricular block, and echocardiographically proven ventricular dysfunction. Among these patients with cardiac complications, abnormal myocardial uptake of FDG were observed in all (100%), which confirms significantly higher frequency compared to 67Ga scintigraphy (50%) (abnormality of 99mTc-MIBI SPECT were observed in 80%). Although abnormal FDG accumulations were observed in region with decreased uptake of 99mTc-MIBI in many cases, localization of regional abnormality of each tracer was frequently independent. This discrepancy may reflect inflammatory and degenerative process of myocardium in cardiac sarcoidosis. 18F-FDG PET is thought to be a useful noninvasive method in detecting cardiac involvement of sarcoidosis and may provide a useful information on the activity of the disease.

Adult↗

Identification of novel pancreas-specific regulatory sequences in the promoter region of human pancreatic secretory trypsin inhibitor gene.

The human pancreatic secretory trypsin inhibitor (PSTI) genes introduced into mice are specifically expressed in pancreas. The 1.0 kilobase pairs of PSTI 5'-flanking sequence directed preferential expression of a linked reporter chloramphenicol acetyltransferase, which was active in a PSTI-expressing pancreatic cell line (AR42j) but not in a PSTI-nonexpressing fibroblast cell line (XC). Two positively acting elements were found, Region I (-161/-116) and Region II (-103/-74), as defined by transfection and binding assays with AR42j cells. Region II is sufficient for the pancreas-specific expression, but the presence of both Regions I and II is needed for the maximum activity. Sequence studies also revealed that these two elements differ from the previously identified recognition sequence for pancreas transcription factor 1 (PTF1). When the same set of experiments was done with XC cells, one negatively acting element was identified, Region IV (-154/-137). Interestingly, Regions I and IV share a core sequence (-149/-139), CAATCAATAAC. These results suggest that this novel element regulates the human PSTI gene expression positively in pancreatic cells but negatively in nonpancreatic cells.

Animals↗

Cloning and developmental expression of the murine homolog of doublecortin.

While analyzing active genes in neonatal mouse hippocampus by quantitative 3'-cDNA collection, we identified a highly conserved murine homolog of doublecortin, the causative gene of X-linked lissencephaly (XLIS) and subcortical laminar heterotopia (SCLH) syndrome. The m-doublecortin cDNA contains nearly 8 kb 3' UTR homologous to hs-doublecortin and it was mapped to the X chromosome. The expression of m-doublecortin is limited to the developing CNS, especially the cortical plate, supporting that XLIS/SCLH syndrome is associated with an arrest of neuronal migration in the cerebral cortex. The m-doublecortin mRNA was absent in the ventricular zone where neuronal precursors proliferate, and interestingly it was found in various brain structures that are not typically affected in patients with this syndrome.

Amino Acid Sequence↗

Identification of the essential cysteinyl residue located in the active site of human phenylethanolamine N-methyltransferase.

Phenylethanolamine N-methyltransferase (PNMT) catalyzes the production of epinephrine from norepinephrine using S-adenosyl-L-methionine as a methyl donor. Previous studies of chemical modification of the PNMT with reagents specific to Cys residues showed that the enzyme contains a Cys residue essential for its activity. Each of the six Cys residues in human PNMT was changed to Ser by PCR-based site-directed mutagenesis, and each mutant PNMT was expressed in Escherichia coli to identify the functionally important Cys residue. The six mutants (C48S, C60S, C91S, C131S, C139S, and C183S) and the wild-type enzyme were expressed at almost the same levels as revealed by Western blotting analysis. Kinetic parameters (apparent Km and Vmax) of C48S, C60S, C91S, C131S, and C139S for the substrates, norepinephrine and S-adenosyl-L-methionine, showed similar values to those of the wild-type enzyme. However, C183S exhibited markedly reduced enzyme activity with less than 3% of the wild-type Vmax and with ca. sixfold increased apparent Km values for both substrates. These results suggested that Cys183 plays an important role in the activity of human PNMT.

Amino Acid Sequence↗

Expression profile of active genes in granulocytes.

A number of genes active in granulocytes have been intensively studied as to the function of their products and their expression controls. However, the intensities and relative order of these gene activities have not been studied. This report describes an expression profile of 748 different species of active genes in human peripheral granulocytes obtained by analyzing a 3'-directed cDNA library that faithfully represents the mRNA population in the source cells. A significant fraction (20.3% of the total) of the expressed genes in granulocytes consisted of nuclear proteins such as DNA binding proteins, of secretory proteins such as cytokines, and of membrane proteins such as major histocompatibility complex (MHC) proteins and receptors. By comparing this expression profile with 11 profiles similarly obtained with unrelated human cells/tissues, we discovered 10 novel genes that are likely to act specifically in granulocytes. Comparison of this expression profile with that obtained with granulocytoids widely used as a granulocyte model by inducing a cultured promyelocytic leukemia cell line HL60 showed similarities and dissimilarities of gene expressions.

Adult↗

A novel SCG10-related gene uniquely expressed in the nervous system.

We have isolated a novel cDNA (HiAT3: hippocampus abundant transcript 3) in the course of screening for genes that are preferentially expressed in neonatal mouse hippocampus using random 3'-directed cDNA sequencing approach. It encodes a 180-aa protein that has high similarity to SCG10, a neuron-specific negative regulator of microtubule dynamics during neurite outgrowth. The expression of HiAT3 is limited to neurons and peaks about 1 week after birth. The identification of HiAT3 suggests that there may be an elaborate destabilizing regulation for microtubule dynamics in neurons in addition to the stabilizing effect of multiple microtubule-associated proteins (MAPs).

Amino Acid Sequence↗

Carbohydrate gluing is a strategy for supramolecular clamping of submultiples in annelid extracellular multi-subunit hemoglobin.

A key to understanding the mysterious hierarchic organization of annelid multi-subunit extracellular hemoglobin (giant Hb, composed of 144 globin chains and about 36 nonheme chains called linkers) is knowing the role of linkers in holding together the entire two-tiered hexagonal form. Here, the effects of added monosaccharides on the dissociation of giant Hb from the marineworm Perinereis aibuhitensis were monitored using dynamic light scattering (DLS), transmission electron microscopy (TEM), and circular dichroism (CD) measurements. Changes in Stokes radius and more clearly the distribution analysis of the Hb based on the DLS measurements showed that Hb preferentially dissociates into hexagonal units (called submultiples), which was consistent with the results of TEM and CD measurements. The results thus show that linkers specifically "clamp" submultiples together to organize the two-tiered form through carbohydrate gluing. Thus, a submultiple behaves like an ordinary protein, whereas the intact Hb behaves like a miniature supramolecular system. This clamp model is plausible because it inherently involves catastrophe of the molecular stoichiometry at the two-tiered hexagonal formation level because carbohydrates are under posttranslational regulation and therefore contain structural ambiguity.

Animals↗

Identification of a novel gene marker specific for epithelial cells by utilizing a 3'-directed cDNA library.

To achieve reliability of molecular diagnosis using reverse transcription-PCR (RT-PCR), we established a unique method to search for a novel gene marker specific for colonic epithelial cells. Of eight candidate genes selected from a 3'-directed cDNA library in colonic mucosa, two genes were expressed in normal mucosa and cancer of the colon but not in either normal lymph node or normal liver tissue. Known sequences of these genes were reported to be located in the 3' noncoding region, and an additional sequence just upstream to gs04094 (one of the candidate genes) was determined. According to the newly identified sequence, we designed a new set of primers so that we could distinguish the DNA fragment amplified in RT-PCR from that in genomic PCR. RT-PCR using these primers demonstrated that gs04094 was expressed in all of 10 primary colon cancers and 4 liver metastases from colon cancer but in none of 5 normal lymph nodes, 10 peripheral blood samples, and 2 normal liver tissues. Sensitivity of this method was so high as to detect gs04094 mRNA in 10(-6) microg of colon cancer RNA per 1 microg of normal lymph node RNA. Thus, our strategy to search for a novel gene marker using 3'-directed cDNA library proved to be highly efficient.

Animals↗

Structural significance of azaheterocyclic amines related to Parkinson's disease for dopamine transporter.

We have evaluated the neuronal uptake of 12 neutral and quaternary azaheterocyclic amines that are possible candidates for idiopathic Parkinson's disease via dopamine transporter of striatal synaptosomes. The double-reciprocal plots for dopamine transporter obtained from Wistar rat and C57BL/6 mouse synaptosomes with N-methyl-4-phenylpyridinium cation (MPP+) as a substrate were identical to each other. Neutral beta-carbolines and tetrahydroisoquinolines were unfavorable substrates for dopamine transporter. The quarternization of these compounds strikingly increased the affinity for dopamine transporter with 2-10 times greater Km and 10 times smaller Vmax values than MPP+. Although catechol tetrahydroisoquinolines were weak substrates, their quarternization reduced their original properties as substrates for dopamine transporter. These results provide both topographic and electrogenic information of azaheterocyclic amines for the dopamine transporter-mediated influx. The intramolecular distance between the N-atom and the centroid of the benzene ring could be an important factor for the recognition of binding site of dopamine transporter, and an adequate net charge similar to dopamine would be further required for translocation into the cells.

1-Methyl-4-phenylpyridinium↗

Detection and isolation of a novel human gene located on Xp11.2-p11.4 that escapes X-inactivation using a two-dimensional DNA mapping method.

Using a two-dimensional DNA mapping method, we detected four NotI restriction sites that escape chromosome X-specific methylation in humans. Two genes corresponding to two of these sites that lie in the region of Xp11.2-p11.4 were cloned and their properties studied. One of the genes matched a known gene, but the other, termed EXLM1, is novel and is predominantly expressed in cultured lymphocytes and skeletal muscle.

Amino Acid Sequence↗

Genomic aberrations in early stage human hepatocellular carcinomas.

BACKGROUND: Primary liver cancer, which most often takes the form of hepatocellular carcinoma (HCC), is among the 10 most common cancers in humans worldwide. In hepatocarcinogenesis, evidence of a multistep process is supported by the marked increase of HCC incidence with age; most HCCs are diagnosed in the second half of life, generally after a long period of chronic liver disease and in frequent association with cirrhosis. This long process may be correlated with the development of multiple genetic lesions, the origin of which currently remain largely unknown. In a previous study, the authors collected data on genomic DNA aberrations in primary HCC by restriction landmark genomic scanning (RLGS), a powerful screening method for the human genome. METHODS: The authors examined the genomic aberrations that occurred in early stage HCCs by means of RLGS of NotI-cleaved and 32P-end-labeled genomic DNA resolved by electrophoresis in a two-dimensional gel. More than 2000 radioactive spots originating from NotI cleavage sites were compared among six small HCC nodules and their normal counterparts. RESULTS: The intensities of five spots were consistently higher in the small HCCs, and the same effect was observed in large HCCs. In addition, the intensities of 22 spots were consistently half those of normal tissue, suggesting the loss of one allele. CONCLUSIONS: The occurrence of certain genomic alterations in early stage HCCs, as reflected by an increase or decrease in spot intensity, seems to reflect early events that occur during HCC development.

Adult↗

Hypereosinophilic syndrome in a trisomy 21 fetus.

BACKGROUND: Hypereosinophilic syndrome is characterized by peripheral blood eosinophilia and multiple organ system involvement. Only one case in a newborn has been reported. CASE: Fetal sonography performed on a 33-year-old woman at 35 weeks' gestation showed pericardial effusion and cardiomegaly. The infant was delivered by cesarean at 35 weeks' gestation because of a worsening of the pericardial effusion. Hematologic studies revealed unexplained hypereosinophilia, and the pericardial fluid contained a large number of eosinophils. Chromosomal analysis revealed trisomy 21. The hypereosinophilia, pericardial effusion, and cardiomegaly all resolved after 8 weeks of steroid therapy. CONCLUSION: Hypereosinophilic syndrome caused pericardial effusion and cardiomegaly in a fetus with trisomy 21.

Adult↗

New sonographic findings in a fetus with an interstitial deletion in the long arm of chromosome 14.

BACKGROUND: Interstitial deletions of 14q in which band 14q31 is deleted are uncommon. Malformations such as atrial septal defect, horseshoe kidney, and cryptochidism have been reported. CASE: We evaluated sonographically the fetus of a 22-year-old woman between 16 and 20 weeks' gestation. This imaging showed marked dilation of the bladder with mild bilateral hydronephrosis and bilateral dilation of the lateral ventricles. In an amniotic fluid specimen obtained at 17 weeks, chromosomal analysis showed an interstitial deletion of chromosome 14 including band 14q31, designated 46,XY,del(14)(q24.3q32.1). CONCLUSION: This first-reported fetal case of interstitial deletion in chromosome 14 including band 14q31 showed anomalies not seen in the reported postnatal cases.

Adult↗

Reduced dorsal hippocampal glutamate release significantly correlates with the spatial memory deficits produced by benzodiazepines and ethanol.

Memory deficits frequently occur after taking benzodiazepines and ethanol. We studied in vivo hippocampal presynaptic glutamate transmission in conjunction with memory deficits induced by benzodiazepines and ethanol in rats as an animal model of amnesia. These drugs potently impaired spatial memory formation as evaluated by the Morris water maze task, the rank order among tested treatments being the combination of triazolam (20 micrograms/kg) with ethanol (2 g/kg) > or = triazolam (100 micrograms/kg) > ethanol (2 g/kg) > or = triazolam (20 micrograms/kg) > rilmazafone (20 micrograms/kg). On the other hand, these drug treatments also reduced glutamate release in the dorsal hippocampus but not in the cerebellum measured by microdialysis: the combined administration of triazolam with ethanol potently inhibited glutamate release to 60% of basal output in the dorsal hippocampus. These decreases in hippocampal glutamate transmission closely correlated with the extent of impairment of spatial memory performance (r = 0.990). Thus, the present results strongly indicated that presynaptic dysfunction in dorsal hippocampal glutamatergic neurons would be critical for spatial memory deficits induced by benzodiazepines and ethanol.

Animals↗