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Biomedical subjects

M Yabuki

Publications and source records attributed to M Yabuki.

At least 55 records · Page 3Linked to original sources

Oxygen-dependent reversible inhibition of mitochondrial respiration by nitric oxide.

Effects of nitric oxide (NO) and NO generating agents, on the electron transport system of mitochondria were examined in a study of the mechanism and physiological importance of NO in energy metabolism. In the presence of various substrates, uncoupled respiration was inhibited by NO in manner which was both dose- and oxygen tension-dependent. Simultaneously measuring changes in cytochrome absorption spectra and respiration showed that the site of action of NO is cytochrome oxidase. Similar inhibition was also brought about by 1-hydroxy-2-oxo-3,3-bis(2-aminoethyl)-1-triazene (NOC 18), an NO donor. Electron paramagnetic resonance (EPR) analysis revealed that inhibition of uncoupled respiration occurred only during the presence of NO in the reaction mixture. The inhibitory effect of NO was increased significantly by lowering the concentration of mitochondrial protein. No appreciable inhibition of respiration was observed in the presence of 3-morpholinosydnonimine (SIN-1), a peroxynitrite anion (ONOO-) generating reagent, but inhibition did occur in the presence of superoxide dismutase (SOD). These results indicate that NO reversibly interacts with mitochondria at complex IV thereby inhibiting respiration particularly under physiologically low oxygen tension and that de novo generated ONOO may have no significant effect under the present experimental conditions.

Animals↗

Nitric oxide, a physiological modulator of mitochondrial function.

The effect of nitric oxide (NO) on the energy transfer reactions of mitochondria was examined under different oxygen tensions. Mitochondrial functions, such as respiration, ATP synthesis and regulation of membrane potential, were inhibited by NO in a concentration-dependent manner. In the presence of various substrates, NO also inhibited uncoupled respiration in an oxygen concentration-dependent manner. The inhibited function recovered completely at certain times after adding NO. When added to mitochondrial suspensions, NO disappeared rapidly from the medium and more rapidly at high oxygen tensions than at low oxygen tensions as determined by the formation of methemoglobin and EPR methods. From these results it is concluded that NO might play an important role in the regulation of mitochondrial functions particularly under low oxygen concentrations.

Animals↗

Enhancement of Escherichia coli H(+)-ATPase caused by binding of monoclonal antibodies is attributed to structural changes of Leu-456 and Ser-440 in the alpha subunit.

Five monoclonal antibodies against the alpha subunit of F1-ATPase from Escherichia coli alpha 104, alpha 105, alpha 107, alpha 109, and alpha 110 were prepared. The monoclonal antibodies alpha 104 and alpha 110 enhanced the F1-ATPase activity maximally to 1.6- and 1.7-fold that of the wild-type, respectively, while alpha 105 did not. Both antibodies bound to a peptide corresponding to the region between residues 354 and 513. Mutations in this region which caused reduced binding of the alpha subunit to the antibodies were identified at residues Ser-440, Leu-456, Leu-471, Leu-482, Met-483, and Ser-506 for alpha 104 and residues Ser-440, Leu-456, Leu-471, Asp-476, Leu-482, Met-483, and Ser-506 for alpha 110. These residues are possibly involved in the epitopes for the antibodies and are located close together on the surface of the alpha subunit. Among the mutations, Leu-456 to Pro and Ser-440 to Pro mutations caused increase of the F1-ATPase activity up to 1.9 and 1.2 times that of the wild-type, respectively, while Leu-471 to Pro mutation caused a defect in assembly of the F1-ATPase on the membrane. The other mutations caused no significant change in ATPase activity. These results suggested that Ser-440 and Leu-456 have an important role in regulating catalysis by the F1-ATPase, but that the neighboring residue Leu-471 has an important role in assembly of the F1-ATPase complex. It was also suggested that binding of the monoclonal antibodies alpha 104 and alpha 110 to residues Ser-440 and Leu-456 caused local conformational changes, leading to enhancing effects on F1-ATPase activity similar to the Ser-440 to Pro and Leu-456 to Pro mutations.

Animals↗

Metabolism of a tetrahydroaminoacridine derivative (SM-10888) in rat: structural analysis of an N-glucuronide of SM-10888 and an O-glucuronide of hydroxylated SM-10888 by FAB-MS/MS.

1. The metabolism of 9-amino-8-fluoro-1,2,3,4-tetrahydro-2,4-methanoacridine citrate (SM-10888), a cholinesterase inhibitor was studied in rat. 2. The phase I metabolite (designated M3) was isolated from urine and identified as 1-hydroxylated SM-10888 by 1H-n.m.r. and EI-MS. 3. Two glucuronides (designated SMG and M3G) were isolated from bile and urine and their structures examined by FAB-MS/MS and beta-glucuronidase hydrolysis. 4. FAB-mass spectra of SMG and M3G showed molecular ions ([M+H]+) at m/z 405 and 421, respectively. In their daughter spectra, fragment ions of aglycones (SM-10888 and M3), generated by the loss of glucuronic acid (176 amu) were observed. The daughter spectra of these aglycones were essentially similar to those of the corresponding synthetic standards. 5. SMG was hydrolysed non-enzymically at pH 5 as is often the case with N-glucuronides of arylamines. M3G could be hydrolysed by beta-glucuronidase but proved stable at pH 5. 6. From these results, SMG and M3G were concluded to be the N-glucuronide of SM-10888 and the O-glucuronide of M3, respectively.

Aminacrine↗

Doxorubicin: an antagonist of muscarinic receptors in guinea pig heart.

While studying the mechanisms of doxorubicin-induced cardiotoxicity, we observed that doxorubicin inhibited the negative inotropic effect of acetylcholine in isolated heart muscle preparations. We therefore examined the effects of doxorubicin on muscarinic acetylcholine receptors. In left atrial muscle preparations isolated from guinea pig heart and stimulated at 2 Hz at 30 degrees C, doxorubicin caused a parallel right-ward shift of the dose-response curves for the negative inotropic effects of acetylcholine. The inhibitory action was reversed by an additional incubation in the absence of doxorubicin. Doxorubicin reversed the carbachol-induced inhibition of developed tension: a high concentration of doxorubicin brought the force back to its original strength. Doxorubicin inhibited specific [3H]quinuclidinyl benzilate (QNB) binding to membrane preparations obtained from ventricular muscle of guinea pig hearts. The pA2 value for doxorubicin obtained in the inotropic study corresponded to the IC50 value for doxorubicin observed in the [3H]QNB binding assay. These results indicate that doxorubicin acts as a weak competitive antagonist on muscarinic acetylcholine receptors.

Animals↗

Characterization of technetium-99m complexes of pentane-2,4-dione bis(N-methylthiosemicarbazone).

Further characterization of the two neutral technetium-99m (99mTc) complexes of pentane-2,4-dione bis-(N-methylthiosemicarbazone) (PETS) was carried out using a new dianionic PETS derivative, 3,3-dimethyl-pentane-2,4-dione bis(N-methylthiosemicarbazone) (DM-PETS), and the well characterized 99mTc complex of 2,2,9,9-tetramethyl-4,7-diaza-1,10-decanedithiol (DADT) as references. While PETS generated two neutral 99mTc complexes, 99mTc-PETS-L1 and 99mTc-PETS-L2, by both the stannous reduction method and the ligand exchange reaction with six-coordinated 99mTc(V) complex of N,N'-ethylenebis(acetylacetone imine), DM-PETS formed only one neutral 99mTc complex. 99mTc-PETS-L2, the more lipophilic complex of the two 99mTc-PETS, was obtained with a much higher yield than 99mTc-PETS-L1 by the ligand exchange reaction of PETS with the five-coordinated 99mTc(V) complex of glucoheptonate. In addition, while 99mTc-PETS-L2 and 99mTc-DADT remained unchanged in the presence of CN- anions, a breakdown of the original complexes was observed in 99mTc-PETS-L1 and 99mTc-DM-PETS. All four 99mTc complexes exhibited similar brain, heart and pancreas extraction when injected into mice. These cumulative results imply that 99mTc-PETS-L1 and 99mTc-DM-PETS are six-coordinated mononuclear 99mTc(V) complexes and that 99mTc-PETS-L2 is a five-coordinated mononuclear 99mTc(V) complex. These results also suggest that while the chelate ring structure of the 99mTc-dithiosemicarbazone (DTS) chelate played a significant role in its stability, ionization of the third proton of the PETS molecule and the subsequent resonating structure afforded further stability to the 99mTc-PETS complex. Markedly high lipophilicity of the 99mTc-PETS-L2 may also be explained by assuming that 99mTc-PETS-L2 is the five-coordinated resonating structure.

Animals↗

[Change of joint synovial clearance speed in experimental arthritis].

The radio activity of 131I-Hippuran injected into the knees was investigated in rabbits and found to decrease with passage of the time. The disappearance curve was monoexponential and the disappearance rate was able to be obtained by a biological half life (T 1/2). This evidence showed that 131I-Hippuran was absorbed from the knee and excreted into body blood circulation but was not able to return to the knee again, and might provide a suitable parameter for the joint clearance. The mean value of T 1/2 in normal 25 knees was 13.9 +/- 4.5 min. The effect of 0.1N oxalic acid on the T 1/2 was investigated in 20 knees 24 hours after intra-articular injection, in 17 knees 4 days, in 14 knees 7 days, in 11 knees 12 days and in 9 knees 20 days. The mean T 1/2 value was 50.4 +/- 9.8 min., 30.6 +/- 6.2 min., 20.9 +/- 4.4 min., 15.2 +/- 2.2 min., and 13.7 +/- 2.5 min., respectively. The significant difference was observed between the groups of 24 hours, 4 days and 7 days. Hemorrhagic arthritis was observed in the rabbit knee with oxalic acid injection. The very severe hemorrhagic change was observed in the specimen obtained 24 hours and 4 days after the injection. On the 7 days after that the arthritic condition began to heal and almost complete healing was observed on 12 to 20 days. These results indicated that the joint clearance of 131I-Hippuran was reflected well in the pathological change induced by oxalic acid. It is interpreted to mean that the inhibition of synovial blood circulation by oxalic acid might cause decrease of absorption and clearance rate of 131I-Hippuran in the knee. It is thought that the measurement of the biological half life (T 1/2) after the intra-articular injection of 131I-Hippuran is a suitable method mainly to understand the condition of absorption and excretion of the joint through the synovial blood vessels.

Animals↗

Stable and lipophilic technetium-99m dithiosemicarbazone complexes with 5-6-5 membered chelate ring structure.

Modification of the chelate ring structure of technetium-99m (99mTc) dithiosemicarbazone (DTS) chelate was carried out in pursuit of a more stable and lipophilic compound. A new DTS chelating molecule, pentane-2,4-dione bis(N-methylthiosemicarbazone) (PETS), with a 5-6-5 membered chelate ring structure, was synthesized and labeled with 99mTc, PETS generated two 99mTc compounds as major products. Both had much higher stability and lipophilicity than a 5-5-5 membered 99mTc DTS compound, as well as great stability in plasma. Both 99mTc-PETS compounds were rapidly extracted by the brain and heart when injected into mice. Thus, the modified chelate ring structure afforded a preferable characteristics to DTS chelate as for the chelating site for technetium radiopharmaceuticals.

Animals↗

Intragenic suppression in the uvrD gene of Escherichia coli. I. Temperature-sensitive uvrD mutations.

A temperature-sensitive uvrD mutant, HD323 uvrD4, was isolated from the uvrD mutant HD4 uvrD3. The temperature sensitivity of the uvrD4 gene product was reversible. The suppressor mutation uvrD44 which rendered the uvrD3 mutant temperature-sensitive could be separated from the uvrD3 mutation by replacing the PstI fragment, which encodes the C-terminal half of the UvrD protein. The uvrD44 mutation was found to make host bacteria lethal at non-permissive temperatures only when cloned on a low copy vector pMF3. The nucleotide sequence of the uvrD3 and uvrD4 mutant genes was determined. The nucleotide change found in the uvrD3 at +1235, GAA to AAA, only alters the amino acid sequence from Glu at 387 to Lys. The uvrD44 has another nucleotide change at +1859, GAA to AAA (Glu at 595 to Lys), which is considered to be the suppressor mutation uvrD44.

Adenosine Triphosphatases↗

Na+-driven Ca2+ transport in alkalophilic Bacillus.

Ca2+ transport was studied in membrane vesicles of alkalophilic Bacillus. When Na+-loaded membrane vesicles were suspended in KHCO3/KOH buffer (pH 10) containing Ca2+, rapid uptake of Ca2+ was observed. The apparent Km value for Ca2+ measured at pH 10 was about 7 microM, and the Km value shifted to 24 microM when measured at pH 7.4. The efflux of Ca2+ was studied with Ca2+-loaded vesicles. Ca2+ was released when Ca2+-loaded vesicles were suspended in medium containing 0.4 M Na+. Ca2+ was also transported in membrane vesicles driven by an artificial pH gradient and by a membrane potential generated by K+-valinomycin in the presence of Na+. These results indicate the presence of Ca2+/Na+ and H+/Na+ antiporters in the alkalophilic Bacillus A-007

Bacillus↗

Rapid induction of alpha-amylase by nongrowing mycelia of Aspergillus oryzae.

A rapid induction system for synthesis of alpha-amylase by the funga Aspergillus oryzae M-13 was established. The mycelia were prepared from 20-h cultures grown on a peptone-glycerol medium and starved for 5 h; maltose was the optimum inducer tested. During h 1 of induction, formation of both intra- and extracellular alpha-amylases occurred at an almost identical rate (70 to 80 microgram/g of cells-h) without a detectable lag period. After a 1-h induction period, a remarkable increase in the extracellular concentration of the enzyme occurred, and a maximum rate (330 microgram/g of cells-h) was reached after 1.5 h of induction. During h 2 of induction, no significant change in mycelial weight was observed. Purified samples of intra- and extracellular enzymes formed in the induction system showed identical properties as examined by behavior in diethylaminoethyl-cellulose column chromatography, gel filtration, discontinuous gel electrophoresis, electrofocusing, optimal conditions for the reaction, heat stability, and molecular weight.

Amylases↗

Presence of binding site for alpha-amylase and of masking protein for this site on mycelial cell wall of Aspergillus oryzae.

Mycelial cell wall of Aspergillus oryzae M-13 grown in an alpha-amylase-forming medium could not bind alpha-amylase (Taka-amylase A, EC 3.2.1.1). However, by treatment with 1.0 n NaOH at 100 C for 30 min, the wall gained the ability to bind alpha-amylase. This phenomenon was caused by removal of a factor (designated as masking factor) which masked the binding site for alpha-amylase. The masking factor was purified as a preparation giving a single peak in both ultracentrifugation (1.6S) and by gel electrophoresis (M(BPB), 1.0). Approximately 20 mug of the purified factor, bound to 10 mg of the alkali-treated mycelial cell wall, prevented the binding of approximately 100 mug of alpha-amylase or released approximately 100 mug of alpha-amylase which previously was bound to the alkali-treated wall. These findings indicate that the factor has much higher affinity than alpha-amylase for the binding site on the mycelial wall. The masking factor was inducibly formed accompanying the secretion of alpha-amylase.

Amylases↗