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Biomedical subjects

H Matsubara

Publications and source records attributed to H Matsubara.

At least 325 records · Page 18Linked to original sources

Down-regulation of atrial natriuretic peptide receptor and cyclic GMP response in cultured rat vascular smooth muscle cells.

Treatment of cultured rat vascular smooth muscle cells with human atrial natriuretic peptide (hANP) or Met(O)12hANP caused a similar and marked reduction (approximately 80%) of ANP receptor number (down-regulation). A second challenge with hANP stimulated the accumulation of intracellular cGMP in the down-regulated cells to the same extent as in control cells. These data suggest that ANP receptor sites are functionally heterogenous, the more abundant site being uncoupled from guanylate cyclase but susceptible to down-regulation.

Animals↗

Crystallographic study of endogenous alpha-amylase inhibitor from wheat.

Endogenous alpha-amylase inhibitor from wheat has been crystallized by a microdialysis method. There are two forms of monoclinic crystal in a microdialysis cell with a space group of P2(1). The unit cell dimensions are a = 43.5 A, b = 64.8 A, c = 32.2 A, beta = 113 degrees for the rod-like crystal, and a = 42.5 A, b = 65.2 A, c = 32.2 A, beta = 112 degrees for the plate-like crystal. The former is suitable for structure analysis because it gives the sharp diffraction beyond 2.0 A resolution, and the latter tends to form a twin crystal. A heavy-atom derivative has been successfully prepared with the heavy-atom reagent K2PtCl4, and structure analysis is in progress.

Crystallography↗

The role of atrial pressure in secreting atrial natriuretic polypeptides.

The role of atrial pressure and catecholamines in secreting human atrial natriuretic polypeptides (hANP) were investigated in patients with acute or old myocardial infarction (AMI or OMI). No differences were observed in hANP levels obtained from brachial vein, right atrium, pulmonary artery and femoral artery, suggesting that hANP degradation in the pulmonary circulation has little clinical significance in hANP measurement. Plasma hANP levels in 10 patients with AMI were higher than those in controls and significantly correlated to both mean right atrial pressure (mRA) and pulmonary wedge pressure (PCW) (r = 0.76, p less than 0.05; r = 0.95; p less than 0.01, respectively). In 12 patients with OMI, plasma hANP levels were normal at rest and were significantly increased (p less than 0.01) with bicycle ergometer exercise associated with significant elevations of plasma catecholamine levels, mRA, and PCW. However, the increments of hANP correlated only to those of PCW. These results suggest that the elevation of atrial (principally left atrial) pressure rather than catecholamine stimulates hANP secretion.

Aged↗

A unique amino acid sequence of the B subunit of a heat-labile enterotoxin isolated from a human enterotoxigenic Escherichia coli.

The purified B subunit of heat-labile enterotoxin produced from a human strain, 240-3, of enterotoxigenic Escherichia coli (LTh(240-3] was carboxymethylated, succinylated, digested with chymotrypsin and subjected to high performance liquid chromatography (HPLC), and the amino acid compositions of the peptide peaks from the column were analyzed and compared with the data reported by Yamamoto and Yokota (J. Bacteriol. 155, 728.1983), who deduced the amino acid sequence of LTh(H10407) from the DNA sequence of a human strain H10407. Only one fraction differed in amino acid composition from that reported by them. This fraction was found to consist of peptides with the sequences Arg-Asn-Thr-Gln-Ile-Tyr and Arg-Ile-Ala-Tyr. Yamamoto and Yokota reported the sequence of the latter peptide as Arg-Ile-Thr*-Tyr, which corresponds to the peptide from 73rd to 76th from amino (N-) terminus. Thus amino acid residue 75 from the N-terminus of LTh-B(240-3) is alanine, not threonine. The B subunit of cholera toxin also has alanine at position 75. LTh(240-3) appeared similar to LTh(H10407) in an Ouchterlony test, vascular permeability test and GMI ganglioside ELISA. These data show that substitution of threonine for alanine at position 75 from the N-terminus does not affect the immunological and biological characteristics of LTh.

Amino Acid Sequence↗

Expression of modified cytochrome c1 genes and restoration of the respiratory function in a yeast mutant lacking the nuclear cytochrome c1 gene.

Yeast cytochrome c1 is a component of complex III, an oligomeric enzyme of the mitochondrial respiratory chain. In order to investigate the structural requirement of cytochrome c1 for the function and assembly of the enzyme, we used an in vivo complementation assay to determine whether or not an in vitro mutated cytochrome c1 is functional. A yeast mutant whose nuclear cytochrome c1 gene was specifically inactivated was constructed by means of a gene disruption technique. The mutant was unable to respire, and lacked spectrally and immunochemically detectable cytochrome c1. These defects disappeared on the introduction of a plasmid carrying the cytochrome c1 gene coding the wild-type molecule or one coding a mutant molecule lacking the carboxyl (C)-terminal 17 amino acid residues. On the other hand, another mutant gene with a deletion corresponding to the C-terminal 71 residues showed no such ability. These results suggest that the region between the C-terminal 17 and 71 residues is necessary for the function of cytochrome c1.

Amino Acid Sequence↗

A carboxyl-terminal hydrophobic region of yeast cytochrome c1 is necessary for functional assembly into complex III of the respiratory chain.

Cytochrome c1 is an amphiphilic protein which binds to the mitochondrial inner membrane, presumably through a hydrophobic region near the carboxyl (C)-terminus. In the preceding study (Hase, T., et al. (1987) J. Biochem. 102, 401-410), two cytochrome c1 mutations were constructed: delta 1 and delta 2 cytochromes c1, in which the C-terminal segments of 17 and 71 residues were replaced by foreign sequences of 20 and 15 residues, respectively. delta 2 cytochrome c1 had lost the putative membrane anchor. The two cytochrome c1 mutants were localized in mitochondria, but succinate-cytochrome c1 reductase activity was detected only in the mitochondria containing delta 1 cytochrome c1. The membrane association of the two mutant molecules as well as that of authentic cytochrome c1 was investigated. These three molecules were firmly attached to mitochondrial membranes and not solubilized on either sonication or sodium carbonate (pH 11) treatment. However, when the membranes were solubilized with Triton X-100, both the delta 1 and authentic cytochromes c1 were extracted from the membranes more easily than delta 2 cytochrome c1. By fractionating cholate extracts of mitochondrial membranes with ammonium sulfate, delta 1 cytochrome c1 was cofractionated with the enzymatic activity of complex III, but delta 2 cytochrome c1 was clearly separated from the complex III fraction. Trypsin treatment of mitochondria and mitoplasts showed that delta 2 cytochrome c1 was exposed to the intermembrane space, with such a topology that its trypsin susceptibility became much higher than that of the authentic molecule.(ABSTRACT TRUNCATED AT 250 WORDS)

Cytochrome c Group↗

Studies on algal cytochromes VI: some properties and amino acid sequence of cytochrome c6 from a green alga, Bryopsis maxima.

A photosynthetic c-type cytochrome, cytochrome c6, was extracted from a green alga, Bryopsis maxima, by cutting and immersing the frozen thalli in phosphate buffer, pH 7.0, and purified by acrinol treatment, ammonium sulfate fractionation, DEAE-Sephacel chromatography and Bio-Gel P-10 gel filtration. The ferrcytochrome c6 has absorption maxima at 553.5 (alpha), 523 (beta), 417 (gamma), 318 (delta), and 275 nm, and the ferricytochrome at 695, 528, and 411 (gamma). The molecular weight was estimated to be about 10,000 from Sephadex G-75 gel filtration and sodium dodecyl sulfate (SDS)-polyacrylamide gel electrophoresis (PAGE). The midpoint redox potential for the cytochrome was determined by equilibrium titration with a ferro- and ferricyanide system to be 0.385 volt at pH 7.0. Isoelectric points for ferro- and ferricytochromes were determined by density gradient isoelectric focusing electrophoresis to be at pH 3.91 and 4.02, respectively. The complete amino acid sequence of the cytochrome was determined by Edman degradation and by carboxypeptidase digestions of the Cm-cytochrome, 6 staphylococcal protease peptides and 5 lysyl endopeptidase peptides. The cytochrome contained 88 amino acid residues, giving a molecular weight of 9,904 including 1 mol of heme c. The sequence is as follows: GGDLEIGADVFTGNCAACHAGGANSVEPLKTLNKEDVTKYLDGGLSIEAITSQVRNGKGAMPAWSDRLD DEEIDGVVAYVFKNINEGW. A phylogenetic tree of 13 algal cytochromes c6 was constructed by comparing the amino acid differences.

Amino Acid Sequence↗

Cloning and sequencing of Serratia protease gene.

The gene encoding an extracellular metalloproteinase from Serratia sp. E-15 has been cloned, and its complete nucleotide sequence determined. The amino acid sequence deduced from the nucleotide sequence reveals that the mature protein of the Serratia protease consists of 470 amino acids with a molecular weight of 50,632. The G+C content of the coding region for the mature protein is 58%; this high G+C content is due to a marked preference for G+C bases at the third position of the codons. The gene codes for a short pro-peptide preceding the mature protein. The Serratia protease gene was expressed in Escherichia coli and Serratia marcescens; the former produced the Serratia protease in the cells and the latter in the culture medium. Three zinc ligands and an active site of the Serratia protease were predicted by comparing the structure of the enzyme with those of thermolysin and Bacillus subtilis neutral protease.

Amino Acid Sequence↗

Regulation of atrial natriuretic peptide receptors in cultured vascular smooth muscle cells of rat.

To elucidate the regulation of vascular receptors for atrial natriuretic peptide (ANP), we have studied the binding capacity of 125I-labeled rat (r) ANP using cultured vascular smooth muscle cells from rat aorta. After preincubation with 3.2 X 10(-8) M rANP at 37 degrees C, the binding capacity decreased as a function of time; the maximal receptor loss (70-75%) occurred after 4 hrs and persisted for 24 hrs. Pretreatment with cycloheximide (20 micrograms/ml) and actinomycin D (2 micrograms/ml) similarly caused a dramatic reduction (approximately 80%) of the binding capacity after 24 hrs; the half-life (t1/2) of the receptor loss was approximately 7-8 hrs. Following removal of rANP, the "down-regulated" ANP receptors fully recovered in the presence of 10% fetal calf serum, but not in combination with either actinomycin D or cycloheximide. Concanavalin A dose-dependently inhibited the binding. The binding capacity also decreased with time in the presence of tunicamycin (1 microgram/ml) with t1/2 of approximately 30 hrs. These data indicate that protein and carbohydrate moieties are essential for the functional integrity of the vascular receptor binding sites for ANP, and suggest that the recovery of the receptor loss by "down-regulation" requires concomitant RNA and protein synthesis.

Animals↗

The N-terminal 21 amino acids of a 70 kDa protein of the yeast mitochondrial outer membrane direct E. coli beta-galactosidase into the mitochondrial matrix space in yeast cells.

The intracellular location of fusion proteins was investigated in yeast cells. They consisted of the N-terminal 21, 61 or 292 amino acids of the 70 kDa protein of the yeast mitochondrial outer membrane and an enzymatically active E. coli beta-galactosidase. The hybrids containing 61 or 292 residues of the 70 kDa protein, as well as the original 70 kDa protein, were localized on the outer membrane in a tightly membrane-bound form. In contrast, the other hybrid was exclusively localized in the mitochondrial matrix space as a soluble protein.

Cytosol↗

Formation of the iron-sulfur cluster of ferredoxin in isolated chloroplasts.

The formation of the iron-sulfur cluster of ferredoxin was examined in vitro by incubating isolated chloroplasts with [(35)S]cysteine. The ferredoxin molecule was radioactively labeled in chloroplasts without synthesis of its polypeptide and comigrated with holoferredoxin during polyacrylamide gel electrophoresis under nondenaturing conditions. When the labeled ferredoxin was denatured by the addition of trichloroacetic acid, radioactive acid-labile sulfide in the cluster was released from the polypeptide as a gas and trapped in a 0.1 M NaOH solution. These results indicate that the sulfur atom derived from cysteine was incorporated into ferredoxin through formation of the iron-sulfur cluster. This process was stimulated by light and inhibited by the electron transport inhibitor, dichlorophenyldimethylurea, and the uncouplers, atebrin and gramicidin, but not by the protein synthesis inhibitor, chloramphenicol. These inhibitory effects were reversed by the addition of ATP to the incubation mixture. Formation of the iron-sulfur cluster of ferredoxin in chloroplasts is thus dependent on ATP.

Journal Article↗

Developmental variation and amino acid sequences of cytochromes c of the fruit fly Drosophila melanogaster and the flesh fly Boettcherisca peregrina.

The amino acid sequences of cytochromes c purified from the fruit fly Drosophila melanogaster and the flesh fly Boettcherisca peregrina were determined. In contrast with the case of the housefly, isocytochromes c were not detected in these flies at any developmental stage. The sequence of fruit fly cytochrome c differed from that reported previously but was identical with that predicted from the nucleotide sequence of the fruit fly cytochrome c gene (DC4) (Limbach, K.J. & Wu, R. (1985) Nucl. Acids Res. 13, 631-644). Isocytochrome c of the fruit fly, reported to be encoded by the DC3 gene, was not detected as a functional cytochrome c molecule.

Amino Acid Sequence↗

Autoxidizability of beef heart cytochrome c1 lacking the hinge protein c1-c.

The autoxidizability of beef heart cytochrome c1 was investigated in terms of the integrity of the binding of the hinge protein to the heme subunit. Cytochrome c1 was isolated as a subcomplex consisting of the heme subunit and the hinge protein. Treatment of the cytochrome c1 subcomplex with p-chloromercuribenzoate (pCMB) under mild conditions lessened the binding strength between the two subunits. They were dissociated on polyacrylamide gel electrophoresis (PAGE) under nondenaturing conditions, but were not separated by gel filtration chromatography. The pCMB-treated subcomplex had a slight autoxidizability. This was repressed to the level of the native subcomplex, when the mercurial compound bound to the subcomplex was removed by the addition of 2-mercaptoethanol. Concomitantly, the less stable binding between the subunits was apparently reversed to the native state. After pCMB treatment of the subcomplex, the heme subunit recovered from PAGE showed marked autoxidizability, even if it was treated with 2-mercaptoethanol. Addition of cholate repressed the autoxidizability of the heme subunit after the removal of the mercurial compound. These results confirmed that the stable binding of the hinge protein to the heme subunit was essential for the nonautoxidizability of cytochrome c1 subcomplex. In addition, it was suggested that cysteinyl residues in the subcomplex must be involved to a great extent in the stable binding between the two subunits.

Animals↗