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101.
D. W. Johnson G. S. Henderson D. D. Huff S. E. Lindberg D. D. Richter D. S. Shriner D. E. Todd J. Turner 《Oecologia》1982,54(2):141-148
Summary Sulfur (S) cycling in a chestnut oak forest on Walker Branch Watershed, Tennessee, was dominated by geochemical processes involving sulfate. Even though available SO
4
2-
was present far in excess of forest nutritional requirements, the ecosystem as a whole accumulated 60% of incoming SO4–S. Most (90%) of this accumulation occurred by SO
4
2-
adsorption in sesquioxide-rich subsurface soils, with a relatively minor amount accumulating and cycling as SO
4
2-
within vegetative components. Organic sulfates are thought to constitute a large proportion of total S in surface soils, also, and to provide a pool of readily mineralized available S within the ecosystem.Research sponsored by Division of Biomedical and Environmental Research, U.S. Department of Energy, under contract W-7405-eng-26 with Union Carbide Corporation. Soil ester sulfate work sponsored by contract RP-1813-1 with the Electric Power Research Institute. Publication No. 1990, Environmental Sciences Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37830 相似文献
102.
Oscillations and efficiency in glycolysis 总被引:6,自引:0,他引:6
We suggest that temporal oscillations of concentrations of intermediates in biochemical reaction systems may enhance the efficiency of free energy conversion (reduce dissipation) in those reactions. Experiments on glycolysis are used to estimate the Gibbs free energy changes along the glycolysis mechanism, and to postulate a construct for the glycolysis "machine" which involves: the PFK reaction as the primary oscillophor; the GAPDH reaction as a phase-shifting device; and the PK reaction with the property of intrinsic oscillatory response at resonance with the driving frequency. Analysis of a simple reaction mechanism with these postulated properties shows that the conversion of free energy from reactants to products is more efficient in an oscillatory than a steady state operation. The efficiency of free energy conversion in glycolysis from glucose + ADP to products + ATP is estimated to be increased by 5--10% due to oscillations. This may have been relevant for the evolutionary development of oscillations such as in glycolysis, especially in anaerobic cells. 相似文献
103.
Anke M. Mans Julien F. Biebuyck Stuart J. Saunders Ralph E. Kirsch Richard A. Hawkins 《Journal of neurochemistry》1979,33(2):409-418
Abstract— Tryptophan transport across the blood-brain barrier was studied using a single injection dual isotope label technique, in the following three conditions: normal rats, rats with portacaval shunts, and rats with portacaval shunts followed 65 h later by hepatic artery ligation. In both normal rats and those with acute hepatic failure the tryptophan transport system was found to be comprised of two kinetically distinct components. One component was saturable and obeyed Michaelis-Menten kinetics (normal: Vmax= 19.5 nmol.min?1.g?1. Km= 113 μM; hepatic failure: Vmax, = 33.8 nmol.min?1.g?1, Km= 108 μM), and the second was a high capacity system which transported tryptophan in direct proportion to concentration over the range tested (normal: K= 0.026 ml.min?1.g?1; hepatic failure: K= 0.067 ml.min?1.g?1). Since the saturable low capacity component transports several neutral amino acids, and their collective plasma concentration is high in relation to the individual Kms, tryptophan transport by this component is reduced by competitive inhibition under physiological conditions. Thus it was calculated that in normal rats approx 40% of tryptophan influx occurs via the high capacity system. During acute hepatic failure transport via both components was increased substantially, approximately doubling the rate of tryptophan penetration of the blood-brain barrier at all concentrations tested. The contribution by the high capacity component became even more significant than in normal rats, accounting for about 75% of all tryptophan passage from plasma to brain. Brain tryptophan content was 29.9 nmol/g in normal rats and rose to 45.2 nmol/g in rats with portacaval shunts and 50.5 nmol/g in those with acute hepatic failure, correlating with the increased rate of tryptophan transport. In a previous study we found that plasma competing amino acids were greatly increased during acute hepatic failure. Calculations predict that these increased concentrations would cause a reduction in tryptophan transport by the low capacity system. However, because of the increase in the rate of transport by the high capacity component, net tryptophan entry across the blood-brain barrier was actually increased. This increased rate of transport clearly contributes to the increased content of brain tryptophan found during hepatic failure. 相似文献
104.
Questioning of reported evidence for guanosine tetraphosphate synthesis in a ribosome system from mouse embryos. 总被引:2,自引:0,他引:2
In 1974, Irr, Kaulenas and Unsworth reported that ppGpp is synthesized by cytosolic ribosomes from mouse embryos and proposed a role for ppGpp in the process of differentiation. This proposal is being challenged because ribosomes of mouse embryos from various stages of development and of mouse embryoid bodies were completely inactive in ppGpp formation. 相似文献
105.
Summary On a soil rich in CaCO3 in a semiaride climate in Algeria a hard soil layer, impermeable for plant roots, was formed in a depth of 20–40 cm after
farmyard manure application and irrigation.
To find the reason soil samples of this field were taken and leaching experiments were carried out in the laboratory, with
the result that much more Caions and HCO3-ions were leached out of the soils with farmyard manure application than from the soils without manure.
Probably the high amount of CO2, being liberated by the organic matter, and the irrigation water dissolved the CaCO3 in the soil, and the formed Ca- and HCO3-ions followed the movement of water in the soil. Where the Ca(HCO3)2 reached soil layers with a less amount of CO2, CaCO3 precipitated and formed the hard soil layer.
In order to avoid the formation of such calcareous crusts on irrigated, limy soils in a dry climate it is recommended to fertilize
rather often small quantities instead of rarely big quantities of farmyard manure. 相似文献
106.
The term monophagy is applied to animal species which are linked to a single plant-reprospecies at least during part of their ontogeny. Aspects of subsequent evolution of monophagous animal species and their plant host species are discussed. 相似文献
107.
108.
R S Phillips I Richter P Gollnick P Brzovic M F Dunn 《The Journal of biological chemistry》1991,266(28):18642-18648
Lysine 269 in Escherichia coli tryptophan indole-lyase (tryptophanase) has been changed to arginine by site-directed mutagenesis. The resultant K269R mutant enzyme exhibits kcat values about 10% those of the wild-type enzyme with S-(o-nitrophenyl)-L-cysteine, L-tryptophan, and S-benzyl-L-cysteine, while kcat/Km values are reduced to 2% or less. The pH profile of kcat/Km for S-benzyl-L-cysteine for the mutant enzyme exhibits two pK alpha values which are too close to separate, with an average value of 7.6, while the wild-type enzyme exhibits pK alpha values of 6.0 and 7.8. The pK alpha for the interconversion of the 335 and 412 nm forms of the K269R enzyme is 8.3, while the wild-type enzyme exhibits a pK alpha of 7.4. Steady-state kinetic isotope effects on the reaction of [alpha-2H]S-benzyl-L-cysteine with the K269R mutant enzyme (Dkcat = 2.0; D(kcat/Km) = 3.9) are larger than those of the wild-type enzyme (Dkcat = 1.4; D(kcat/Km) = 2.9). Rapid scanning stopped-flow kinetic studies demonstrate that the K269R mutant enzyme does not accumulate quinonoid intermediates with L-alanine, L-tryptophan, or S-methyl-L-cysteine, but does form quinonoid absorption peaks in complexes with S-benzyl-L-cysteine and oxidolyl-L-alanine, whereas wild-type enzyme forms prominent quinonoid bands with all these amino acids. Single wavelength stopped-flow kinetic studies demonstrate that the alpha-deprotonation of S-benzyl-L-cysteine is 6-fold slower in the K269R mutant enzyme, while the intrinsic deuterium kinetic isotope effect is less for the K269R enzyme (Dk = 4.2) than for the wild-type (Dk = 7.9). The decay of the K269R quinonoid intermediate in the presence of benzimidazole is 7.1-fold slower than that of the wild-type enzyme. These results demonstrate that Lys-269 plays a significant role in the conformational changes or electrostatic effects obligatory to the formation and decomposition of the quinonoid intermediate, although it is not an essential basic residue. 相似文献
109.
Atrial natriuretic peptide (ANP) is a high-affinity substrate for rat insulin-degrading enzyme. 总被引:2,自引:0,他引:2
A cytosolic protein specifically binding to and degrading atrial natriuretic peptide (ANP) was purified from rat brain homogenate. Based on partial amino acid sequences and enzymatic properties, this protein with an apparent molecular mass of 112 kDa has been identified as the rat insulin-degrading enzyme (IDE). In addition to the known substrates, insulin and transforming-growth-factor alpha IDE binds also with high affinity (apparent Kd 60 nM) to ANP. Competition studies with structural variants of ANP demonstrate that both the C terminus and the disulfide loop of the molecule are essential for high-affinity binding. The data suggest that IDE might be involved in the cellular processing and/or metabolic clearance of ANP. 相似文献
110.
Effects of electroconductive heat treatment and electrical pretreatment on thermal death kinetics of selected microorganisms 总被引:2,自引:0,他引:2
Suspensions of yeast cell (zygo Saccharomyces bailii) in a phosphate buffer solution were subjected to conventional (hot water) and ohmic (electric current) heating under identical temperature histories. Experiments were also conducted with cells of Escherichia coli to compare the lethal effect of combination of sublethal electrical preteatment and conventional heating with conventional heating. The kinetic parameters (D,Z,K and E(a)) were determined for both organisms during different treatments. There was no significant difference in the death rate of yeast cells during conventional and ohmic heating at the voltage range used in this study. Results of electrical pretreatment and conventional heating on E. coli indicated differences under certain conditions when compared with pure conventional heating. Thus it is concluded that microbial death during ohmic heating was due primarily to thermal effects with no significant effect of electric current per se. Sublethal electrical pretreatment appears to offer potential for increased bacterial inactivation in certain cases. 相似文献