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M Matsui

Publications and source records attributed to M Matsui.

At least 127 records · Page 7Linked to original sources

Molecular cloning, expression and characterization of a phenol sulfotransferase cDNA from mouse intestine.

A sulfotransferase (ST) cDNA was isolated from a mouse intestinal cDNA library using a probe which was generated by reverse transcription (RT)-PCR based on the conserved amino acid sequences of the ST molecules. The isolated cDNA (1.1 kb) contained an 858 bp open reading frame encoding a 286 amino acid polypeptide with molecular weight of 33439. The deduced amino acid sequence shares 55.1% and 40.2% identity with mouse liver aryl/phenol (mSTp1) and alcohol (mSTa1 or mSTa2) STs, respectively, and it is highly similar to those of rat and human liver phenol ST (P-ST) isozymes, ST1B1 (87.8%) and ST1B2 (71.0%), respectively. RT-PCR analyses showed abundant expression of the P-ST mRNA in the intestine as well as in the liver in the mouse tissues examined (brain, heart, intestine, kidney, liver and lung) of both sexes. E. coli-expressed enzyme is capable of catalyzing the sulfation of 2-naphthol at Km = 3.3 microM and Vmax = 3.33 nmol/min/mg protein and also showed sulfation activity for L-3,4-dihydroxyphenylalanine (L-DOPA) and dopamine. Among food constituents tested, tannic acid and epigallocatechin gallate strongly inhibited the P-ST activity in vitro.

Amino Acid Sequence↗

Mapping of five subtype genes for muscarinic acetylcholine receptor to mouse chromosomes.

Muscarinic acetylcholine receptors in mammals consist of five subtypes (M1-M5) encoded by distinct genes. They are widely expressed throughout the body and play a variety of roles in the peripheral and central nervous systems. Although their pharmacological properties have been studied extensively in vitro, colocalization of the multiple subtypes in each tissue and lack of subtype-specific ligands have hampered characterization of the respective subtypes in vivo. We have mapped mouse genomic loci for all five genes (Chrm1-5) by restriction fragment length variant (RFLV) analyses in interspecific backcross mice. Chrm1, Chrm2, and Chrm3 were mapped to chromosome (Chr) 19, 6, and 13, respectively. Both Chrm4 and Chrm5 were mapped to Chr 2. Although a comparison of their map positions with other mutations in their vicinities suggested a possibility that the El2 (epilepsy 2) allele might be a mutation in Chrm5, sequencing analyses of the Chrm5 gene in the El2 mutant mice did not support such a hypothesis.

Animals↗

[Fundamental and clinical consideration of repeated intracordal injection therapy of atelocollagen--a histological study of canine vocal cords and a review of clinical data of 96 patients].

Hoarseness or aspiration due to recurrent laryngeal nerve paralysis confront many patients with problems in their daily living. At our outpatient clinic, patients with unilateral laryngeal paralysis due to recurrent laryngeal nerve paralysis are treated by injecting atelocollagen (3% non crosslinked atelocollagen, Koken Co., Ltd.) into the vocal cords under endoscopic control, using a soft fiberscope. A single injection may not be effective, but a relatively satisfactory therapeutic result can be obtained after several repeated injections. In the present study, the tissue levels of atelocollagen in the vocal cords of 8 adult dogs were determined after intracordal injection to evaluate the efficacy of repeated injection therapy of atelocollagen. In addition, clinical data of 96 patients who were treated by this therapy at our outpatient clinic (57 males and 39 females with a mean age of 54.5 years) were assessed. Histological investigation indicated that relatively good amounts of atelocollagen were retained and accumulated in the vocal cord tissue after repeated injection, and that the tissue around the injection site showed no appreciable foreign body reaction. The clinical data showed that about half of the 96 patients had received repeated intracordal injection therapy of atelocollagen. Maximum phonation time (MPT) was determined in 75 of 96 patients. The preoperative mean MPT was 3.27 sec, whereas MPT after a single injection and after all injections increased to 6.67 and 7.16 sec, respectively. The difference was statistically significant (p < 0.001), as assessed by the paired t-test. The results of this study indicate that besides being beneficial in accidents that result in recurrent laryngeal nerve paralysis, injection therapy with atelocollagen is of clinical value because the patient can receive repeated injections under endoscopic control at the outpatient clinic at reasonable intervals of time, and thus makes the therapy more convenient.

Adolescent↗

[Infection in the central nervous system and corticosteroid therapy].

No standardized therapy has been established for viral encephalitis except for herpes simplex encephalitis. Not a few neurologists, however, have had an impression that administration of corticosteroids ameliorated neurological impairment and induced better prognosis in some patients with viral encephalitis. Five patients with aseptic meningitis and 9 patients with viral encephalitis, who were moderately to severely ill, were examined for cerebrospinal fluid (CSF) parameters before and after short-term intravenous administration of corticosteroids. In all of the patients with aseptic meningitis, severe headache and nausea disappeared rapidly with this treatment, which was accomplished via anti-inflammatory effects of corticosteroids. By contrast, 5 of the patients with viral encephalitis responded well to intravenous corticosteroids, whereas the remaining 4 patients did not, three of whom showed poor prognosis. The CSF containing more than 15% of CD4+CD26+ memory helper T cells guaranteed good response to corticosteroid therapy. It appeared that viral encephalitis with severe inflammation had poor prognosis irrespective of attempted therapy including intravenous corticosteroids. The CSF of patients who responded well to corticosteroid treatment showed a significant reduction in CD4+CD29+ helper-inducer T cells in the course of the illness. This finding indicates that autoimmune mechanisms may be involved in the pathogenesis of neurological impairment in a part of patients with viral encephalitis.

Acyclovir↗

Establishment of framework P1 clones for map-based cloning and genome sequencing: direct RFLP mapping of large clones.

Large insert capacity, clone stability and convenient propagation in Escherichia coli have made bacterial artificial chromosome and phage P1 vector-based libraries the first choice for large-scale sequencing projects, and these libraries have also proven useful for chromosome walking. The application of these libraries for either purpose is greatly facilitated by the establishment of a set of framework clones distributed across the genome. Using a P1-based library of Arabidopsis thaliana with genomic inserts of 70-90kb (Liu, Y.-G., Mitsukawa, N., Vazquez-Tello, A., Whittier, R.F., 1995. Generation of a high-quality P1 library of Arabidopsis suitable for chromosome walking. Plant J. 7, 351-358), we have now established such a set of framework clones. To date, such clones have usually been identified by hybridization to smaller, previously mapped clones that detect restriction fragment length polymorphisms (RFLPs). In order to establish framework clones more efficiently, we refined protocols for P1 clone DNA isolation and RFLP detection in order to employ whole P1 clones directly as probes. This strategy enabled a very high rate of RFLP detection, and obviated the need to screen the P1 library with smaller RFLP probes. Altogether 95 clones were mapped providing a framework into which further clones can be integrated by physical overlap.

Arabidopsis↗

The Arabidopsis homologue of an eIF3 complex subunit associates with the COP9 complex.

The Arabidopsis COP9 complex is a multi-subunit repressor of photomorphogenesis which is conserved among multicellular organisms. Approximately 12 proteins copurify with the COP9 complex. Seven of these proteins are orthologues of subunits of the recently published mammalian COP9 complex. Four of the proteins show amino acid similarity to various subunits of the COP9 complex, eIF3 complex and 19S cap of the proteasome. We have studied one of these proteins in order to determine if it is a component of the COP9 complex. Arabidopsis p105 is highly similar to the p110 subunit of the human elF3. The p105 gene is induced during photomorphogenesis, and RNA and protein analysis reveal different tissue accumulation patterns. p105 is found in a large protein complex. p105 interacts in yeast with both COP9 and FUS6, two known components of the COP9 complex. Our results indicate that p105 is not a component of the COP9 core complex, though it may interact with components of the complex.

Amino Acid Sequence↗

Size- and invasion-dependent increase in cyclooxygenase 2 levels in human colorectal carcinomas.

Nonsteroidal anti-inflammatory drugs reduce the incidence and mortality of colorectal carcinoma. Their chemopreventive effects appear to be due to inhibition of cyclooxygenase (COX)-2. Here, we have studied the relationship between the COX-2 mRNA levels and pathological characteristics in 43 primary colorectal carcinomas. COX-2 levels were significantly higher in tumors with larger sizes and in those with deeper invasions but were not correlated with whether the patients had metastasis or not. These results suggest that larger carcinomas produce more COX-2 to support their own growth and that COX-2 inhibitors may be effective agents of carcinoma growth suppression.

Adult↗

Isolation and characterization of the Candida albicans gene for mRNA 5'-triphosphatase: association of mRNA 5'-triphosphatase and mRNA 5'-guanylyltransferase activities is essential for the function of mRNA 5'-capping enzyme in vivo.

The amino acid sequence of the Saccharomyces cerevisiae mRNA 5'-triphosphatase (TPase) diverges from those of higher eukaryotes. In order to confirm the sequence divergence of TPases in lower and higher eukaryotes, the Candida albicans gene for TPase was identified and characterized. This gene designated CaCET1 (C. albicans mRNA 5'-capping enzyme triphosphatase 1) has an open reading frame of 1.5 kb, which can encode a 59-kDa protein. Although the N-terminal one-fifth of S. cerevisiae TPase (ScCet1p) is missing in CaCet1p, CaCet1p shares significant sequence similarity with ScCet1p over the entire region of the protein; the recombinant CaCet1p, which was expressed as a fusion protein with glutathione S-transferase (GST), displayed TPase activity in vitro. CaCET1 rescued CET1-deficient S. cerevisiae cells when expressed under the control of the ADH1 promoter, whereas the human capping enzyme derivatives that are active for TPase activity but defective in mRNA 5'-guanylyltransferase (GTase) activity did not. Yeast two-hybrid analysis revealed that C. albicans Cet1p can bind to the S. cerevisiae GTase in addition to its own partner, the C. albicans GTase. In contrast, neither the full-length human capping enzyme nor its TPase domain interacted with the yeast GTase. These results indicate that the failure of the human TPase activity to complement an S. cerevisiae cet1delta null mutation is attributable, at least in part, to the inability of the human capping enzyme to associate with the yeast GTase, and that the physical association of GTase and TPase is essential for the function of the capping enzyme in vivo.

Acid Anhydride Hydrolases↗

Molecular cloning and expression of a cDNA encoding an olfactory-specific mouse phenol sulphotransferase.

Previously we demonstrated the presence of phenol sulphotransferase (P-ST) in mouse nasal cytosols and identified its zonal location in mouse nasal cavity by staining with an antiserum raised against a rat liver P-ST isoenzyme, PSTg. In the present study a cDNA was isolated from a mouse olfactory cDNA library by immunological screening with the antiserum. The isolated cDNA consisted of 1347 bp with a 912 bp open reading frame encoding a 304-residue polypeptide. Both the nucleotide and deduced amino acid sequences of the cDNA were 94% identical with those of a rat liver P-ST isoenzyme, ST1C1. The expressed enzyme in Escherichia coli displayed high P-ST activity towards phenolic odorants such as eugenol and guaiacol, and it showed a high N-hydroxy-2-acetylaminofluorene sulphation activity in comparison with the rat ST1C1 enzyme. These results indicate that the olfactory P-ST encoded by the cDNA is a mouse orthologue of rat ST1C1; however, expression of the olfactory P-ST mRNA is specific for nasal tissues as revealed by reverse transcriptase-mediated PCR (RT-PCR).

Amino Acid Sequence↗

Intestinal tumorigenesis in compound mutant mice of both Dpc4 (Smad4) and Apc genes.

The DPC4 (SMAD4) gene plays a key role in the TGFbeta signaling pathway. We inactivated its mouse homolog Dpc4 (Smad4). The homozygous mutants were embryonic lethal, whereas the heterozygotes showed no abnormality. We then introduced the Dpc4 mutation into the Apc(delta716) knockout mice, a model for human familial adenomatous polyposis. Because both Apc and Dpc4 are located on chromosome 18, we constructed compound heterozygotes carrying both mutations on the same chromosome by meiotic recombination. In such mice, intestinal polyps developed into more malignant tumors than those in the simple Apc(delta716) heterozygotes, showing an extensive stromal cell proliferation, submucosal invasion, cell type heterogeneity, and in vivo transplantability. These results indicate that mutations in DPC4 (SMAD4) play a significant role in the malignant progression of colorectal tumors.

Adenocarcinoma↗

On the nature of rat hepatic and mouse olfactory sulfotransferases.

Rat hydroxysteroid sulfotransferase (HS-SULT) cDNAs, ST-40 and ST-20 are 90% identical in amino acid sequences and show different substrate specificities toward dehydroepiandrosterone (DHEA), androsterone (AD) and cortisol (CS). ST-40 enzyme is active toward the three substrates, whereas ST-20 enzyme is preferentially active for CS. First we prepared mutants of well conserved histidine, lysine and asparagine by site-directed mutagenesis. Secondly we constructed 20 chimeric HS-SULTs by reciprocal exchange of five protein domains between ST-20 and ST-40 enzymes. The studies on the expressed mutant and chimeric enzymes indicate the importance of the C-terminal region for the substrate specificity and the involvement of multiple regions for the enzyme activities. Next we determined the genetic loci of ST-40 and ST-20 by fluorescence in situ hybridization. Biotinylated ST-20 and ST-40 probes gave a pair of fluorescent spots on the same region of rat chromosome 1 and the loci of these genes were localized to the same chromosomal region of 1q21.3 --> q22.1. Finally we studied mouse olfactory phenol SULT (P-SULT). It was immunolocalized in the cytoplasm of mouse olfactory sustentacular cells and mouse nasal cytosols show high SULT activities toward phenolic aromatic odorants. We subsequently isolated a mouse P-SULT cDNA from mouse olfactory cDNA library. It encodes 304 amino acid polypeptide and is 94% identical with rat ST1C1 in amino acid sequences.

Amino Acid Sequence↗

Complementary DNA sequence for a 42 kDa rat kidney choline/ethanolamine kinase.

By means of peptide sequence information, several cDNA clones encoding a 42 kDa choline/ethanolamine kinase were isolated from a rat kidney cDNA library. Eight clones were sequenced with all of them resulting in identical overlapping nucleotide sequences. Four of them possessed entire open reading frame which could encode 394 amino acids with a calculated molecular size of 45 100. The predicted amino acid sequence contained all of the internal peptide fragment sequences derived from the purified 42 kDa enzyme. When the open reading frame was introduced into pGEX-2T vector and transfected into E. coli cells, a significant choline/ethanolamine kinase activity did appear in the cell lysate. A homology comparison with the previously reported choline kinase cDNAs (CKR1 and CKR2) from rat liver showed 66%-68% in entire nucleotide sequences and 57%-59% in amino acid sequences, indicating that the cloned cDNA here must be a novel CK/EK gene product. (c) 1998 Elsevier Science B. V.

Amino Acid Sequence↗

AtGDI2, a novel Arabidopsis gene encoding a Rab GDP dissociation inhibitor.

The GTPase cycle of Rab/Ypt proteins is strictly controlled by several classes of regulators to ensure their proper roles in membrane traffic. GDP dissociation inhibitor (GDI) is known to play essential roles in regulating nucleotide states and subcellular localizations of Rab/Ypt proteins. To obtain further knowledge on this regulator molecule in plants, we isolated and characterized two genes of Arabidopsis thaliana that encode different GDIs. AtGDI1 has been identified by a novel functional cloning in yeast [Ueda et al. (1996) Plant Cell, 8, 2079-2091] and AtGDI2 was isolated by cross-hybridization in this study. AtGDI2, as well as AtGDI1, complements the yeast sec19/gdi1 mutant, indicating that they can replace the function of yeast GDI. Evidence is shown that both AtGDI1 and AtGDI2 can interact with Ara4, an Arabidopsis Rab protein, in the yeast ypt1 mutant cells. AtGDI2 is ubiquitously expressed in Arabidopsis tissues with some difference from AtGDI1 in expression level. Genomic DNA hybridization using specific probes reveals the presence of one more GDI gene in Arabidopsis. This may imply differentiated roles of GDI in higher plants.

Amino Acid Sequence↗

Spinocerebellar ataxia type 6: MRI of three Japanese patients.

We describe the MRI findings in three Japanese patients with spinocerebellar ataxia type 6 (SCA6) in which a polymorphic CAG repeat was identified in the gene encoding the alpha 1A voltage-dependent P/Q-type Ca2+ channel subunit (CACNL1A4). All showed slowly progressive cerebellar ataxia and mild pyramidal signs. Neuroradiologically, they had moderate cerebellar atrophy, most prominently in the superior vermis, whereas the brain stem appeared to be spared. No abnormal signal intensity was identified.

Adult↗