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Biomedical subjects

T Yasuhara

Publications and source records attributed to T Yasuhara.

At least 19 recordsLinked to original sources

Multiple genes, including a member of the AAA family, are essential for degradation of unassembled subunit 2 of cytochrome c oxidase in yeast mitochondria.

Cytochrome c oxidase consists of three mitochondrion- and several nucleus-encoded subunits. We previously found that in a mutant of Saccharomyces cerevisiae lacking nucleus-encoded subunit 4 of this enzyme (CoxIV), subunits 2 and 3 (CoxII and CoxIII), both encoded by the mitochondrial DNA, were unstable and rapidly degraded in mitochondria, presumably because the subunits cannot assemble normally. To analyze the molecular machinery involved in this proteolytic pathway, we obtained four mutants defective in the degradation of unassembled CoxII (osd mutants) by screening CoxIV-deficient cells for the accumulation of CoxII. All of the mutants were recessive and were classified into three different complementation groups. Tetrad analyses revealed that the phenotype of each mutant was caused by a single nuclear mutation. These results suggest strongly that at least three nuclear genes (the OSD genes) are required for this degradation system. Interestingly, degradation of CoxIII was not affected in the mutants, implying that the two subunits are degraded by distinct pathways. We also cloned the OSD1 gene by complementation of the temperature sensitivity of osd1-1 mutants with a COXIV+ genetic background on a nonfermentable glycerol medium. We found it to encode a member of a family (the AAA family) of putative ATPases, which proved to be identical to recently described YME1 and YTA11. Immunological analyses revealed that Osd1 protein is localized to the mitochondrial inner membrane. Disruption of the predicted ATP-binding cassette by site-directed mutagenesis eliminated biological activities, thereby underscoring the importance of ATP for function.

ATP-Dependent Proteases

Effects of angiotensin I-converting enzyme inhibitory substances derived from Indonesian dried-salted fish on blood pressure of rats.

Indonesian dried-salted fish (DSF) was produced from skipjack tuna by soaking the flesh in 15% NaCl (DSF I) or 25% NaCl (DSF II). The DSFs were then hydrolyzed by trypsin, chymotrypsin, Pronase E, and pepsin. Angiotensin I-converting enzyme (ACE) inhibitory activity was measured. The pepsin digest showed the highest inhibitory activity (IC50; 0.63 mg protein/ml). DSF II hydrolysate had higher inhibitory activity than that in DSF I. A three-month storage period of DSF gave higher ACE-inhibitory activity than that of 6 months. An oral administration of pepsin hydrolysate significantly decreased the blood pressure of rats. From the purification steps, at least 4 inhibitor peptides were found. The amino acid sequences of the peptides were Val-Ala-Trp-Lys-Leu, Trp-Ser-Lys-Val-Val-Leu, Ser-Lys-Val-Pro-Pro, and Cys-Trp-Leu-Pro-Val-Tyr, with an IC50 value of 31.97, 156.28, 74.22, and 22.20 microM, respectively.

Amino Acid Sequence

Aminopeptidase Y, a new aminopeptidase from Saccharomyces cerevisiae. Purification, properties, localization, and processing by protease B.

A novel aminopeptidase, termed aminopeptidase Y, was purified from yeast, Saccharomyces cerevisiae, as two molecular forms of 70 and 75 kDa, which were identical immunologically, catalytically and in N-terminal sequence up to 14 residues. They contained 0.81 and 0.84 mol of zinc atom/mol of protein, respectively. N-Gly-canase generated a single 53-kDa species from both forms, and endoglycosidase H gave a 54-kDa species. Immunoblotting after subcellular fractionation showed that aminopeptidase Y is localized in the vacuole/lysosome-soluble compartment as the 70-kDa form. Aminopeptidase Y hydrolyzed all amino acid-4-methylcoumaryl-7-amides (MCA) examined, especially Lys- and Arg-MCA. Dipeptidyl-MCAs were far more rapidly hydrolyzed (Lys-Ala-MCA/Lys-MCA = 350-fold, Arg-Arg-MCA/Arg-MCA = 150-fold). Hydrolysis of amino acid-MCAs or dipeptides was markedly enhanced by Co2+, whereas that of dipeptidyl-MCAs, tripeptides, and larger peptides was inhibited. Rabbit anti-aminopeptidase Y antiserum adsorbed over half the aminopeptidase activities in vacuolar extract from wild-type yeast cells. ABYS1 mutant cells from which the genes of four vacuolar proteases had been deleted contained aminopeptidase Y as a 74-kDa proform. This was converted to the mature form (70 kDa) by vacuolar extract of wild-type cells and by purified yeast vacuolar protease B.

Amino Acid Sequence

Molecular cloning of the aminopeptidase Y gene of Saccharomyces cerevisiae. Sequence analysis and gene disruption of a new aminopeptidase.

A yeast genomic DNA encoding a new vacuolar aminopeptidase, aminopeptidase Y, was isolated by using a cDNA fragment obtained by screening the lambda gt11 yeast cDNA library with anti-aminopeptidase Y antibody. The DNA sequence encodes 537 amino acids. The "mature" protein, whose NH2-terminal sequence was determined previously by analysis of the purified enzyme, consists of 481 amino acids, and the calculated molecular weight (52,900) coincides with the value obtained by SDS-polyacrylamide gel electrophoresis of the enzyme after removal of sugar chains, 53 kDa. The 56-residue preprosequence was divided into two parts by putative processing sites for signal peptidase and conversion to the mature form; the 21-residue presequence has a hydrophobic stretch which may function as the signal sequence for transit through the endoplasmic reticulum, and the 35-residue prosequence (4013 Da) accounts for the 4-kDa difference between proaminopeptidase Y in the vacuolar proteases-deleted ABYS1 mutant and wild-type mature enzyme. The aminopeptidase Y gene was localized on chromosome II by genetic mapping. A deletion mutant was constructed by disrupting the aminopeptidase Y gene. Vacuolar aminopeptidase activities toward Ala-4-methylcoumaryl-7-amide (MCA) and Lys-MCA were 13 and 20% of wild-type, and those in the presence of Co2+ were 2.2 and 2.8%, respectively. Mutant cells showed no ability to hydrolyze Lys-Ala-MCA to Lys and Ala-MCA, although vacuolar carboxypeptidase Y activity was similar to that in wild-type cells.

Amino Acid Sequence

ATP-dependent proteolysis in yeast mitochondria.

An ATP-dependent proteolysis system in yeast mitochondria was characterized by examining the hydrolysis of mitochondrial translation products in isolated mitochondria. Degradation of [35S]methionine-labeled polypeptides synthesized in isolated yeast mitochondria was activated by exogenously added ATP. ADP, GTP, and CTP substituted for ATP to some extent, but nonhydrolyzable ATP analogues did not. Adenosine-5'-O-(3'-thio-triphosphate) effectively competed with ATP as activator. Carboxyatractyloside, an inhibitor of adenine nucleotide translocation across the mitochondrial inner membrane, and the metal chelator o-phenanthroline inhibited the ATP-dependent proteolysis. The latter inhibition was abolished by subsequent addition of Mn2+ or Co2+ but not Ca2+ or Zn2+. Hemin inhibited the ATP-dependent proteolysis of mitochondrial translation products with a half-maximum inhibition at 12 microM. Analysis by SDS-polyacrylamide gel electrophoresis showed that [35S]methionine-labeled polypeptides were rapidly degraded into low-molecular-weight species. Submitochondrial particles retained the ATP-dependent proteolytic activity and had the same spectrum of inhibitors as intact mitochondria except for a reduced effect of carboxyatractyloside. These results indicate that yeast mitochondria contain an ATP-dependent and hemin-sensitive proteolysis system which is associated with the inner membrane and can hydrolyze mitochondrial translation products, and that a chelator-sensitive protease is probably involved in this system.

Adenosine Triphosphate

Divalent metal ion-dependent mitochondrial degradation of unassembled subunits 2 and 3 of cytochrome c oxidase.

Intracellular protein degradation plays an important role in maintaining the stoichiometry of the different subunits of an oligomeric enzyme. In a Saccharomyces cerevisiae mutant defective in cytochrome c oxidase subunit 4 encoded in nuclear DNA, mitochondrial-encoded subunits 2 and 3 cannot assemble normally [Dowhan et al. (1985) EMBO J. 4, 179-184]. In this study, we show that those unassembled forms of subunits 2 and 3 in this strain are eliminated rapidly by degradation. Reduction of the intracellular ATP level by inhibiting the glycolytic pathway, or inhibition of the entry of ATP into mitochondria by bongkrekic acid, both of which are expected to reduce the intramitochondrial ATP level in respiratory-deficient cells such as WD1, significantly suppressed the degradation, suggesting that the degradation requires intramitochondrial ATP. The degradation was also inhibited by o-phenanthroline, a membrane-permeable metal chelator, and this inhibitory effect was suppressed by addition of an excess amount of Co2+, Mn2+, or Zn2+, but not by Ca2+ or Mg2+, suggesting a novel metal-dependence of the degradation of unassembled Cox II and Cox III which has not been reported previously for mitochondrial metabolic protein degradation systems. A potential advantage of using this strain for identifying the factor(s) involved by a genetical approach is discussed.

Adenosine Triphosphate

Isolation and identification of hemin as an endogenous Na+/K(+)-ATPase inhibitor from porcine blood cells.

A substance which is a potent inhibitor of Na+/K(+)-ATPase activity and competitively displaces [3H]ouabain binding to this enzyme was isolated from porcine blood cells. From its chemical and physiochemical properties, this activity was identified as hemin (chloroprotohemin IX). Hemin showed a dose dependent curve for Na+/K(+)-ATPase inhibitory activity similar to that of ouabain and displaced [3H]ouabain binding as potent as 1/100 of ouabain itself.

Animals

Expression of endothelin-2 (ET-2) gene in a human renal adenocarcinoma cell line: purification and cDNA cloning of ET-2.

It has been found that human renal adenocarcinoma ACHN cells synthesize and secrete immunoreactive endothelin (ir-ET) in the culture medium. Partial characterization of this material with reverse-phase high-performance liquid chromatography (RP-HPLC) suggested that ACHN cells synthesized only human endothelin-2 (ET-2). Isolation and characterization of this ir-ET-2 has revealed that this peptide has almost the same amino acid sequence and molecular weight as that of human ET-2 deduced from the nucleotide sequence of cloned human ET-2 gene. To delineate the precise structure of human ET-2 precursor, ET-2 cDNAs were cloned from a cDNA library constructed with mRNA derived from the ACHN cells, and the nucleotide and deduced amino acid sequences were determined. The ET-2 cDNA that has the longest open reading frame encodes prepro-ET-2 protein, consisting of 178 amino acid residues. The ET-like sequence found in the prepro-ET-1 and -ET-3 was also conserved in this prepro-ET-2. The Northern blot analysis of mRNA revealed that the transcript of the human ET-2 gene was 1.4 kb.

Adenocarcinoma

Woodfordin D and oenothein A, trimeric hydrolyzable tannins of macro-ring structure with antitumor activity.

Two new antitumor trimeric hydrolyzable tannins, woodfordin D (5) and oenothein A (13), were isolated from the dried flowers of Woodfordia fruticosa, and their macrocyclic structures, which have a novel constituent unit (woodfordinoyl group) connecting the monomers, have been elucidated on the basis of spectral and chemical evidence. Oenothein A (13) was also isolated from the leaves of Oenothera biennis.

Antineoplastic Agents, Phytogenic

Purification and primary structure of C-1027-AG, a selective antagonist of antitumor antibiotic C-1027, from Streptomyces globisporus.

C-1027-AG, a selective antagonist of antitumor antibiotic C-1027, was isolated by column chromatography on DEAE-cellulose, butyl-Toyopearl and Sephadex G-50 from a culture filtrate of Streptomyces globisporus. The amino acid sequence of purified C-1027-AG was determined with a protein sequencer on the basis of fragment peptides obtained by enzymatic hydrolysis with lysylendopeptidase, V8 protease, endopeptidase AspN and chymotrypsin, after performic acid oxidation. C-1027-AG is shown to consist of a single polypeptide chain cross-linked by two disulfide bonds, and to contain a total of 110 amino acid residues with alanine and glycine as its amino- and carboxyl-termini, respectively; its molecular weight was calculated to be 10,500 daltons. The primary structure of C-1027-AG is indicated to be identical to the protein moiety of C-1027, and is highly homologous to the sequences of antitumor proteins obtained from other Streptomyces species.

Amino Acid Sequence

Role of histamine in motion sickness in Suncus murinus.

The levels of histamine (HA) and tele-methylhistamine (t-MH) were determined in five brain regions of Suncus murinus (suncus) and the effects of motion stimulus or drugs influencing the turnover of these amines were studied to elucidate the role of histamine in motion sickness. Shaking the animals for 2 min increased HA contents in telencephalon and diencephalon without significantly changing the t-MH levels. alpha-Fluoromethylhistidine (alpha-FMH), which is presumed to deplete the neuronal HA, tended to raise the HA levels. alpha-FMH slightly alleviated the vomiting response to motion stimulus and suppressed the HA increase in diencephalon caused by shaking. Compound 48/80, which releases HA from mast cells, did not alter the control HA levels, but effectively prevented the motion sickness and completely suppressed the motion-induced rises in HA levels. These results provide further evidence that brain HA plays an important role in the development of motion sickness.

Animals

Role of lysine residue at 7th position of wasp chemotactic peptides.

Most of chemotactic peptides isolated from various kinds of wasp venom have lysine residue at 7th (or 8th) position, but only a chemotactic peptide from Icaria sp. has no basic amino acid residues in the sequence. The relation of chemotaxis with other biochemical activities such as superoxide generation and lysosomal enzyme release from guinea pig neutrophils was studied by the use of substitution analogs of Icaria chemotactic peptide at 7th position. Findings revealed two distinct ways of chemoattractant signal transduction in neutrophils.

Amino Acid Sequence

Apocarboxypeptidase B-sepharose: a specific adsorbent for peptides.

Apocarboxypeptidase B-Sepharose was prepared by immobilization of porcine carboxypeptidase B, followed by treatment of the column with o-phenanthrolin. This column efficiently adsorbed Met-enkephalin-Arg-Arg (YGGFMRR) in an optimum pH range of 6.5-7.5. The adsorbed Met-enkephalin-Arg-Arg was eluted at pH 4.0 and confirmed to be unaltered. In the apocarboxypeptidase B-Sepharose chromatography, Met-enkephalin-Arg-Arg or dynorphin 1-13 (YGGFLRRIRPKLK), substrates of carboxypeptidase B, was separated from Met-enkephalin (YGGFM), dynorphin B 1-9 (YGGFLRRQF), and beta-neo-endorphin (YGGFLRKYP) which do not react with the immobilized enzyme.

Amino Acid Sequence

Threonine6-bradykinin in the venom of the wasp Colpa interrupta (F.) presynaptically blocks nicotinic synaptic transmission in the insect CNS.

1. The venom of the solitary scoliid wasp Colpa interrupta (F.) shows a kinin-activity, when tested on a cascade of mammalian smooth muscle preparations, and, in addition, a contraction of the rat colon. 2. The venom also irreversibly blocks the nicotinic synaptic transmission from the cercal nerve to a giant interneuron in the sixth abdominal ganglion of the cockroach, Periplaneta americana. 3. The same activities have been found within one HPLC fraction. 4. However, rechromatography of this fraction resulted in four subfractions being active on smooth muscles. 5. One fraction caused contraction of the colon, three other fractions contained kinin-activity. 6. Only the most active kinin fraction blocked synaptic transmission in the insect CNS. 7. This fraction contained threonine-bradykinin. 8. Synthetic Thr-bradykinin causes irreversible presynaptic activation-induced block of transmission in the insect CNS.

Amino Acid Sequence

Purification and characterization of an aminopeptidase from sperm of the sea urchin, Strongylocentrotus intermedius. Ca2(+)-dependent substrate specificity as a novel feature of the enzyme.

An aminopeptidase showing broad substrate specificity was purified to electrophoretic homogeneity from spermatozoa of the sea urchin, Strongylocentrotus intermedius. It is a single chain protein (Mr = 110,000) with an isoelectric point of 5.2 and shows the highest activity in a pH range between 7.0 and 7.5. Ni2+, Cu2+, Zn2+, and Hg2+, as well as 1,10-phenanthroline and p-chloromercuribenzoate, inhibit the enzyme irrespective of the substrates used, but Ca2+, Mn2+, Mg2+, and Co2+ modified the activity differently depending on the nature of the substrate. The effect of Ca2+ was most marked; it stimulated the activity toward some 4-methylcoumaryl-7-amide (MCA) substrates (for example leucine MCA), whereas it depressed the activity toward some other substrates such as arginine-MCA and lysine-MCA in a competitive manner. The rate of enzymatic hydrolysis determined for a mixture of leucine-MCA and arginine-MCA, in respect to the release of their common product (7-amino-4-methylcoumarin), was in good agreement with the value calculated on the assumption that these two substrates compete with each other for a single active site of the enzyme. Furthermore, the enzyme showed an identical Ki value for each of the competitive inhibitors examined, irrespective of the type of substrate. Ca2+ also influenced the activities toward various peptide substrates in a dual way similar to that observed on the MCA substrates. These results indicate that the sea urchin sperm aminopeptidase has an active site that alters its substrate preference depending on the Ca2+ concentration of the reaction medium.

Aminopeptidases

Cutaneous reactions caused by experimental exposure to jellyfish, Carybdea rastonii.

Dermatitis caused by contact with tentacles of jellyfish was studied on 25 volunteers. Two tentacles cut from a living jellyfish, Carybdea rastonii, were applied on each of the forearms and skin reactions were observed. All volunteers complained of severe pain, which lasted from 10 min to 8 hrs. Erythema and wheal appeared within 3 to 4 min and enlarged for 15 to 20 min. Erythema subsided within 24 hrs to 3 days in all but two individuals. Seven to 13 days after the application, linear erythema and papulo-vesicular lesions with pruritus were observed on the forearms of 15 out of 25 volunteers tested. These flare-up lesions lasted for one week leaving slight pigmentation. Histological findings from the flare-up lesions corresponded to those of allergic contact dermatitis. The lymphocyte response to the jellyfish venom in the subjects who had recurring lesions was greater than that in either the subjects with no recurring lesions or the control group, who was never exposed to jellyfish.

Adult

Effects of interaction of tannins with co-existing substances. VII. Inhibitory effects of tannins and related polyphenols on xanthine oxidase.

The inhibitory effects of hydrolyzable tannins, condensed tannins and related polyphenols on the activity of xanthine oxidase (XOD), catalyzing uric acid formation from xanthine, were investigated. Marked differences in the strength of the inhibition were observed. Some of the differences among the monomeric hydrolyzable tannins were due to their molecular weights, reflecting the number of phenolic hydroxyl groups in the molecule. However, the inhibitory activity of several oligomeric hydrolyzable tannins seemed particularly low in spite of their large molecular size. It was also observed that differences in location of acyl groups on the carbohydrate cores caused differences in the inhibitory activity among monomeric and oligomeric hydrolyzable tannins. A caffeic acid derivative (caffeetannin), 3,5-di-O-caffeoylquinic acid (24), also inhibited this enzyme. Galloylation and the degree of polymerization in proanthocyanidins were also shown to affect remarkably the strength of the inhibition. Among the compounds tested in the present study, valoneic acid dilactone (29), isolated from Mallotus japonicus, inhibited the enzyme most effectively. A kinetic study showed that this dilactone inhibited XOD non-competitively. Comparison of the inhibitory effect on XOD, with the binding activity to hemoglobin, for each tannin, suggests that their inhibition of XOD is not based on non-specific binding to the protein. Similar comparison of the inhibitory effect on XOD with the inhibitory effect on the generation of superoxide anion radical (O2-.) from the hypoxanthine-XOD system revealed that the inhibition of O2-. generation by tannins is due to their radical-scavenging activity, and not due to their inhibitory activity upon the enzyme.

Flavonoids