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Biomedical subjects

S Murao

Publications and source records attributed to S Murao.

At least 19 recordsLinked to original sources

Suppression of episodic growth hormone secretion in streptozotocin-induced diabetic mice: time-course studies on the hypothalamic pituitary axis.

To elucidate the roles of the hypothalamic peptides, GH-releasing hormone (GRH) and somatostatin (SRIH), potentially responsible for altered GH dynamics in diabetes, we studied the time courses of their changes in level associated with altered GH secretion in streptozotocin (STZ)-induced diabetic mice. Diabetic mice were used at 4, 7, and 14 days after STZ injection for analyses of 1) GH secretion in vivo, 2) hypothalamic GRH and SRIH messenger RNA (mRNA) levels, 3) pituitary GH mRNA and protein contents, and 4) pituitary GH response to GRH in vitro. GH secretion was completely suppressed 7 and 14 days after STZ injection. The hypothalamic GRH mRNA level was reduced to 59.8%, 61.2%, and 48.5% of control values at 4, 7, and 14 days, respectively. In contrast, the hypothalamic SRIH mRNA level was not altered at all of these time points. Pituitary GH mRNA and protein contents were significantly reduced to 70.2% and 61.5% of those in controls, respectively, only at 14 days. Pituitary GH responses to GRH at three doses (10, 50, and 250 nM) in vitro were remarkably increased at 4, 7, and 14 days. These findings indicate that the diabetic state rapidly and primarily inhibits hypothalamic GRH gene expression without affecting SRIH. A persistent decrease in hypothalamic GRH tone has been suggested to result in inhibition of GH synthesis in the pituitary. Enhancement of GH responsiveness to GRH may be due to the up-regulation of GRH receptors in the pituitary.

Animals

Effects of alpha- and beta-arbutin on activity of tyrosinases from mushroom and mouse melanoma.

The effects of alpha- and beta-arbutin on the activity of tyrosinases from mushroom and mouse melanoma were examined. alpha-Arbutin was synthesized from hydroquinone and starch using glucoside synthetase (GSase). beta-Arbutin inhibited both tyrosinase activities from mushroom and mouse melanoma. alpha-Arbutin inhibited only the tyrosinase from mouse melanoma, 10 times as strongly as beta-arbutin. The IC50 of alpha-arbutin was 0.48 mM and its inhibitory mechanism was speculated to be mixed type inhibition, while that of beta-arbutin was noncompetitive.

Animals

Characterization of ascorbate oxidase from Acremonium sp. HI-25.

The ascorbate oxidase obtained from a microorganism, Acremonium sp. HI-25 (molecular weight, 80 kDa; monomeric protein), was studied with respect to atomic absorption, EPR, absorption spectra, circular dichroism (CD) spectra, and steady-state kinetics. The enzyme was found to be a multicopper protein, containing four copper atoms of three kinds, types 1, 2, and 3 copper, in the ratio of 1:1:2. The EPR parameters of the type 1 and 2 copper atoms in the ascorbate oxidase are very similar to those in the case of the ascorbate oxidase obtained from cucumber, which is a dimeric protein. The apparent Km and kcat values for ascorbic acid of the ascorbate oxidase from Acremonium sp. HI-25 are almost the same as those of the monomeric unit of the ascorbate oxidase from cucumber.

Acremonium

Isolation and characterization of a dipeptidyl aminopeptidase from Streptomyces sp. WM-23.

A screening test was undertaken to isolate microorganisms that produced dipeptidyl aminopeptidase. The hydrolytic activity toward alanyl-phenylalanine p-nitroanilide was found in a culture filtrate of a actinomyces strain (WM-23), newly isolated from a soil sample. The enzyme (WM-23 dipeptidyl aminopeptidase) was isolated from the culture filtrate as a homogeneous preparation. The WM-23 enzyme, inhibited by phenylmethylsulfonyl fluoride, may be classified to mammalian dipeptidyl aminopeptidase II. The enzymatic characteristics were investigated.

Amino Acid Sequence

Isolation and characterization of a serine proteinase, inactivating m-subunit of lactate dehydrogenase, from Penicillium citrinum KE-1.

A selective inactivating enzyme for the m-subunit of lactate dehydrogenase (LDH) was found in the culture filtrate of Penicillium citrinum KE-1, newly isolated from soil. The enzyme was purified from the culture filtrate by ammonium sulfate fractionation, column chromatography on CM-Sepharose CL-6B, and gel filtration on Sephadex G-100. The purification was 124-fold with an activity yield of 81%. The purified enzyme gave a single band, corresponding to a molecular weight of 32,000, on SDS polyacrylamide gel electrophoresis, and the isoelectric point was 9.5. The enzyme specifically inactivated the m-subunit of LDH but showed no activity on the h-subunit of LDH. The enzyme, named KE-1 proteinase, proved to be a serine-type proteinase. Limited proteolysis of native m-subunit of LDH was assumed to result in a loss of enzyme activity.

Amino Acid Sequence

Expression of the cellulase (FI-CMCase) gene of Aspergillus aculeatus in Saccharomyces cerevisiae.

As a step to breed a Saccharomyces cerevisiae strain able to produce ethanol directly from cellulose, we combined cDNA for Aspergillus aculeatus FI-CMCase (FI-carboxymethyl cellulase) with the GAP (glyceraldehyde-3-phosphate dehydrogenase) promoter of S. cerevisiae and used the resultant plasmid, pYEC91, to transform S. cerevisiae. The transformed cells produced active FI-CMCase within the cytoplasm. Western-blot analysis following SDS-polyacrylamide gel electrophoresis demonstrated that the cells contained a peptide having the same molecular mass and immunological identity as A. aculeatus FI-CMCase.

Amino Acid Sequence

CD7, CD34-positive stem cell leukemia arising in agnogenic myeloid metaplasia.

Agnogenic myeloid metaplasia (AMM) is a chronic myeloproliferative disorder arising from a single hematopoietic cell. Approximately 5% of reported cases of AMM have terminated in leukemic crisis; however, the precise characteristics of the leukemic cells have rarely been reported. We report a case of AMM that occurred in a 42-year-old man and was complicated by leukemic transformation. The leukemic cells were morphologically lymphoblastoid cells with a negative reaction to peroxidase staining, and phenotypically characterized as CD7+, CD34+, HLA-DR+, CD4-, CD8-, CD10-, CD13-, and CD33-. Southern blot analysis revealed that T cell receptor-beta, gamma, and immunoglobulin heavy chain genes in leukemic cells were retained in germ-line configuration. These observations suggest that leukemic cells in our case involved early hematopoietic stem cells rather than those strictly committed to myeloid or lymphoid precursors. To our knowledge, this is the first report of stem cell leukemia arising in a patient with AMM.

Acute Disease

Molecular cloning and expression of proteinaceous alpha-amylase inhibitor gene from Streptomyces nitrosporeus in Escherichia coli.

The proteinaceous alpha-amylase inhibitor, T-76, gene was cloned by screening a Streptomyces nitrosporeus genomic library using a deoxyinosine-containing probe corresponding to the amino acid sequence of the inhibitor. The nucleotide sequence of the insert of a positive clone had an open reading frame of 330 bp that encoded a polypeptide of 110 amino acid residues with a calculated molecular mass of 11,306 daltons. The polypeptide begins with proximal basic amino acids and a region rich in hydrophobic amino acids that possibly act as a signal peptide for secretion, which is followed by a sequence consistent with the amino-terminal amino acid sequence of the T-76 inhibitor. Escherichia coli cells harboring the plasmid derivatives for expression produced the inhibitor in their periplasmic space. The amino-terminal sequence of the inhibitor produced by an E. coli transformant was identical to that of the T-76 inhibitor secreted by S. nitrosporeus. The amino acid sequence of the inhibitor deduced from nucleotide sequence showed significant homology to other proteinaceous alpha-amylase inhibitors.

Amino Acid Sequence

Expression of the cellulase (FI-CMCase) gene of Aspergillus aculeatus in Escherichia coli.

FI-CMCase cDNA of Aspergillus aculeatus was expressed in Escherichia coli by using the tac promoter of E. coli. Transformants of E. coli harboring a plasmid pHEM06 containing mature form FI-CMCase cDNA produced FI-CMCase in the cytoplasm of the cells. The enzyme from E. coli cells was purified to yield 56% and it was immunological identical to that of FI-CMCase purified from A. aculeatus.

Amino Acid Sequence

Drastic alteration of cycloheximide sensitivity by substitution of one amino acid in the L41 ribosomal protein of yeasts.

Cycloheximide is one of the antibiotics that inhibit protein synthesis in most eukaryotic cells. We have found that a yeast, Candida maltosa, is resistant to the drug because it possesses a cycloheximide-resistant ribosome, and we have isolated the gene responsible for this. In this study, we sequenced this gene and found that the gene encodes a protein homologous to the L41 ribosomal protein of Saccharomyces cerevisiae, whose amino acid sequence has already been reported. Two genes for L41 protein, named L41a and L41b, independently present in the genome of S. cerevisiae, were isolated. L41-related genes were also isolated from a few other yeast species. Each of these genes has an intron at the same site of the open reading frame. Comparison of their deduced amino acid sequences and their ability to confer cycloheximide resistance to S. cerevisiae, when introduced in a high-copy-number plasmid, suggested that the 56th amino acid residue of the L41 protein determines the sensitivity of the ribosome to cycloheximide; the amino acid is glutamine in the resistant ribosome, whereas that in the sensitive ribosome is proline. This was confirmed by constructing a cycloheximide-resistant strain of S. cerevisiae having a disrupted L41a gene and an L41b gene with a substitution of the glutamine codon for the proline codon.

Amino Acid Sequence

Purification and some properties of a Haim-sensitive alpha-amylase from newly isolated Bacillus sp. No. 195.

Newly isolated Bacillus sp. No. 195 produced an extracellular alpha-amylase sensitive to Haim which was found to inhibit specifically animal alpha-amylases. The enzyme was purified easily by two steps of starch adsorption and gel filtration using Sephacryl S-200. The purified enzyme, which showed a single band on native-PAGE or SDS-PAGE, had a molecular weight of 60,000 as judged on SDS-PAGE. The optimum pH value for activity and the isoelectric point were around 7.0 and 4.5, respectively. The sensitivity of the amylase to Haim was similar to that of animal amylase rather than bacterial amylase. It was suggested that a Haim-amylase complex might be formed at the molar ratio of 1:1. The amino acid sequence F-S-W similar to the triplet F-E-W highly conserved among alpha-amylases sensitive to proteinaceous inhibitors, such as Hoe 467-A or Haim, was found in the amino-terminal part of the No. 195 amylase.

Amino Acid Sequence

Isolation and sequencing of a gene, C-ADE1, and its use for a host-vector system in Candida maltosa with two genetic markers.

The host-vector systems of an n-alkane-assimilating-yeast, Candida maltosa, that we previously constructed consisted of a vector replicating with an ARS region of this yeast, and C. maltosa strains J288 (leu2) or CH1 (his5) as hosts. Since each of these hosts has a single genetic marker, we have developed a new host-vector system using two genetic markers. By UV irradiation of strain CH1, an adenine auxotrophic mutant, CHA1, forming red colonies was isolated. A DNA fragment complementing this deficiency was isolated from the C. maltosa genome. Since the DNA fragment also complemented the ade1 mutation of S. cerevisiae, we termed a gene contained in this DNA fragment C-ADE1. The nucleotides of C-ADE1 were sequenced. The deduced amino acid sequence (291 residues) had 65.6% homology with that of ADE1 of S. cerevisiae (306 residues). Having the cloned C-ADE1 DNA, we improved the host-vector system of C. maltosa.

Adenine

Purification and some properties of a thermostable metal proteinase produced by Thermomicrobium sp. KN-22 strain.

An extreme thermophile that produces a heat-stable proteinase was isolated from hot-spring water and classified as Thermomicrobium sp. KN-22 (growth temperature, 50-83 degrees C; and optimum growth temperature, 70 degrees C). The proteinase was purified from the culture broth of this strain by fractionation with ammonium sulfate, chromatography on columns of DEAE-cellulose and CM-Sepharose CL-6B, and HPLC on TSKgel CM-5PW. The purified enzyme gave a single band on SDS-polyacrylamide gel electrophoresis and a single peak after HPLC (yield 8.8%). The enzyme had maximum activity at pH 8.5 and at 75 degrees C and it was stable up to 60 degrees C. The molecular weight of the enzyme was 35,000 by SDS-PAGE. Since the enzymatic activity was completely inhibited by EDTA, o-phenanthroline, and phosphoramidon, it appears that the enzyme is a metal proteinase.

Amino Acid Sequence

Cloning and sequence analysis of a cDNA for cellulase (FI-CMCase) from Aspergillus aculeatus.

We have cloned and characterized the cDNA coding for a major component of cellulase, endoglucanase (FI-CMCase), produced by Aspergillus aculeatus. The cDNA was isolated from a A. aculeatus cDNA library using synthetic oligonucleotide mixtures that correspond to the internal amino acid sequence of the mature FI-CMCase protein. Nucleotide sequence analysis of the cloned cDNA insert revealed a 711 bp open reading frame that encoded a protein of 237 amino acid residues. The primary structure of FI-CMCase deduced from the nucleotide sequence of cDNA agreed with that found by amino acid sequencing of peptide fragments obtained by digestion with several proteinases and cyanogen bromide cleavage. There may be a signal peptide sequence of 16 amino acid residues at the N-terminus. The molecular mass of the mature protein calculated from the cDNA is 24002 daltons, which compares favorably with molecular mass estimates of purified FI-CMCase obtained from SDS-PAGE (25000 Da). No distinct homology was found between the amino acid sequence of FI-CMCase and known cellulase sequences of other microorganisms. This study is the first example of cDNA cloning of an endoglucanase from the genus Aspergillus.

Amino Acid Sequence