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81.
Hornyák M Kele Z Kovács L Forgó P Howarth NM 《Nucleosides, nucleotides & nucleic acids》2006,25(8):867-870
The effect of the media (achiral and chiral ionic liquids) on the stereochemistry of intramolecular 1,3-dipolar cycloaddition reactions of D-galactose-derived omega-unsaturated nitrones, leading to bicyclic isoxazolidines, has been investigated. 相似文献
82.
Howarth Frank Christopher Qureshi Anwar Singh Jaipaul 《Molecular and cellular biochemistry》2004,261(1):227-233
We have investigated the effects of acute acidosis on ventricular myocyte shortening and intracellular Ca2+ in streptozotocin (STZ)-induced diabetic rat. Shortening and intracellular Ca2+ were measured in electrically stimulated myocytes superfused with either normal Tyrode solution pH adjusted to either 7.4 (control solution) or 6.4 (acid solution). Experiments were performed at 35–36°C. At 8–12 weeks after treatment, the rats that received STZ had lower body and heart weights compared to controls, and blood glucose was characteristically increased. Contractile defects in myocytes from diabetic rat were characterized by prolonged time to peak shortening. Superfusion of myocytes from control and diabetic rats with acid solution caused a significant reduction in the amplitude of shortening; however, the magnitude of the response was not altered by STZ treatment. Acid solution also caused significant and quantitatively similar reductions in the amplitude of Ca2+ transients in myocytes from control and diabetic rats. Effects of acute acidosis on amplitude of myocyte contraction and Ca2+ transient were not significantly altered by STZ treatment. Altered myofilament sensitivity to Ca2+ and altered mechanisms of sarcoplasmic reticulum Ca2+ transport might partly underlie the acidosis-evoked reduction in amplitude of shortening in myocytes from control and STZ-induced diabetic rat. (Mol Cell Biochem 261: 227–233, 2004) 相似文献
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L A Kraft C W Foley B Howarth M S Blum A D Johnson 《Comparative biochemistry and physiology. B, Comparative biochemistry》1978,60(3):233-238
1. The patterns of 14CO2 evolution from specifically labeled glucose substrates by washed bull, ram, boar, rabbit, dog, rooster and turkey spermatozoa were similar and indicated the Embden-Meyerhof and Kreb's cycle pathways as the major route of energy metabolism. 2. Honey bee spermatozoa metabolized glucose-3,4-[14C], glucose-[U-14C] or fructose-[U-14C], but not glucose-1-[14C], glucose-2-[14C]or glucose-6-[14C], indicating the presence of the glycolytic pathway, but the absence of respiration via the Kreb's cycle. 3. The rate of glycolysis exceeded the rate of respiration in the spermatozoa of all the species studied. 4. A preferential utilization of glucose-1-[14C] over glucose-6-[14C] was evident in some sperm samples, but no consistent indication of pentose cycle metabolism was observed, due to considerable variability between samples within each group. 5. Fructose metabolism was greater than glucose metabolism in the rooster, less in the dog, boar and turkey, and similar in the spermatozoa from the other species examined. 6. Only ram and bull spermatozoa metabolized acetate-1-[14C] to any extent. 相似文献
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Abstract A new menaquinone has been isolated from the Gram-negative bacterium, Thermoleophilum album , an organism obligate for thermophily and n -alkane substrates. On the basis of mass spectrometry and proton nuclear magnetic resonance (1 H-NMR) spectrometry the novel quinone is shown to correspond to 2-methyl-3-VI,VII-tetrahydroheptaprenyl-1,4-naphthoquinone. 相似文献
88.
Laible Philip D. Zhang Yuenian Morris Andrea L. Snyder Seth W. Ainsworth Clint Greenfield Scott R. Wasielewski Michael R. Parot Pierre Schoepp Barbara Schiffer Marianne Hanson Deborah K. Thurnauer Marion C. 《Photosynthesis research》1997,52(2):93-103
Site-specific mutations in the quinone binding sites of the photosynthetic reaction center (RC) protein complexes of Rhodobacter (R.) capsulatus caused pronounced effects on sequential electron transfer. Conserved residues that break the twofold symmetry in this region of the RC – M246Ala and M247Ala in the QA binding pocket, and L212Glu and L213Asp in the QB binding pocket – were targeted. We constructed a QB-site mutant, L212Glu-L213Asp Ala-Ala, and a QA-site mutant, M246Ala–M247Ala Glu-Asp, to partially balance the differences in charge distribution normally found between the two quinone binding sites. In addition, two photocompetent revertants were isolated from the photosynthetically-incompetent M246Glu-M247Asp mutant: M246Ala–M247Asp and M246Gly–M247Asp. Sequential electron transfer was investigated by continuous light excitation and time-resolved electron paramagnetic resonance (EPR), and time-resolved optical techniques. Several lines of EPR evidence suggested that the forward electron transfer rate to QA, kQ, was slowed in those strains containing altered QA sites. The slower rates of secondary electron transfer were confirmed by time-resolved optical results with the M246Glu-M247Asp mutations in the QA site resulting in a dramatically lowered secondary electron transfer efficiency [kQ < (2 ns)-1] in comparison with either the native R. capsulatus RC or the QB site mutant [kQ (200 ps)-1]. Secondary electron transfer in the two revertants was intermediate between that of the native RC and the QA mutant. The P+ QA- PQA charge recombination rates were also changed in the strains that carried altered QA sites. We show that local mutations in the QA site, presumably through local electrostatic changes, significantly alter binding and electron transfer properties of QA. 相似文献
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