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151.
《Biocatalysis and Biotransformation》2013,31(4):297-304
The effects of organic solvents on the reaction rate and equilibrium of the ribosyl transfer reaction catalyzed by thermostable purine nucleoside phosphorylase and pyrimidine nucleoside phosphorylase from Bacillus stearothermophilus JTS 859 were examined at 60°C. The reaction rate in the presence of 10% acetone was 1.6 times higher than that of the control. Acetone was the best organic solvent among those tested for accelerating the reaction rate without denaturing the enzymes. On the other hand, the reaction rate in the presence of 5% ethyl acetate was 1.5 times higher than that of the control. However the enzymes were denatured completely after 1 h incubation. Consequently, the acceleration was not attributed to the stabilization of the enzymes. The equilibrium constants of the reaction were not influenced by the presence of acetone, methyl or ethyl alcohols. 相似文献
152.
Hydroxyurea, when injected intraperitoneally, exerted marked inhibition on the activity of thymidine kinase in 5 day old postnatal
cerebellum and 15 day old embryonic cerebrum. However, it failed to show any sustained inhibition on thymidine kinase activity
in 5 day old postnatal cerebrum. In this case, the marginal decrease of thymidine kinase activity noticed during early intervals
reversed back to more than normal value at a later time interval. These results along with our earlier findings are taken
to indicate the differential action of this drug on thymidine kinase activity in rapidly and slowly proliferating regions
of rat brain 相似文献
153.
John A. Nicolette Nancy C. Wrocel Adolph J. Ferro 《Biochimica et Biophysica Acta (BBA)/General Subjects》1980,627(2):190-198
The effect of castration and subsequent administration of 17β-estradiol and testosterone propionate on 5′-methylthioadenosine phosphorylase activity in rat target tissues was studied. Castration 34 days earlier resulted in a 95 reduction in ventral prostate 5′-methylthioadenosine phosphorylase activity and 16 days earlier in a 67% reduction in uterine 5′-methylthiodenosine phosphorylase activity. Four days of testosterone propionate administration stimulated ventral prostate 5′-methylhioadenosine phosphorylase activity 32% above castrate levels, which represented more than 50% of the intact control levels. 17β-Estradiol on the other hand stimulated uterine 5′-methylthioadenosine phosphorylase activity of 35% above castrate controls within 24h and with 3 days of continuous hormone treatment to within 97% of the intact control levels. However, castration and subsequent 17β-estradiol administration did not affect 5′-methylthioadenosine phosphorylase activity in rat liver and lung. Both prostate and uterine 5′-methylthioadenosine phosphorylase were shown to metabolize 5′-methylthioadenosine to 5′-methylthioribose through a 5′-methythiribose 1-phosphate intermediate. The data suggest that 5′-methylthioadenosine is not allowed to accumulate in rat target tissues even under conditions which are known to stimulate polyamine synthesis. 相似文献
154.
A. David Purdon James L. Daniel Gwendolyn J. Stewart Holm Holmsen 《Biochimica et Biophysica Acta (BBA)/General Subjects》1984,800(2):178-187
Mechanisms are assumed to exist in the resting platelet which maintain the concentration of cytoplasmic free calcium below that level required to activate cellular responses. To assess such processes the porcine platelet plasma membrane was selectively lysed with digitonin and the uptake (or flux) of free calcium monitored by an extracellular calcium electrode. Lysis resulted in an immediate lowering of the extracellular free calcium, due to the action of intracellular organelle(s) acting on the extracellular space through the permeabilized plasma membrane. In resting platelets, the rate of calcium uptake was first order with respect to the extracellular prelytic calcium concentration, and hence the cytoplasmic free concentration was found to be 1·10?7 M by extrapolation to a point of zero flux (i.e., the null point). This approach could not be used with thrombin-stimulated platelets, as external calcium was required for both secretion of ATP + ADP and aggregation. Nevertheless, evidence for an increase in cytoplasmic free calcium after thromin stimulation was obtained. Metabolic inhibitors and agents known to inhibit calcium uptake by mitochondria had no effect on the calcium flux following lysis, indicating different mechanisms for calcium homeostasis in the platelet when compared with other cell types (e.g., liver). Levels of ionophore A23187, which caused platelet aggregation, gave a massive release of the nonmitochondrial pool of calcium into the cytoplasmic space. Thus, in porcine platelets an intracellular energy-requiring calcium pump, which sequesters calcium in a nonmitochondrial membranous compartment, is crucial for intracellular calcium homeostasis. 相似文献
155.
Sucrose phosphorylase is an interesting biocatalyst that can glycosylate a variety of small molecules using sucrose as a cheap but efficient donor substrate. The low thermostability of the enzyme, however, limits its industrial applications, as these are preferably performed at 60°C to avoid microbial contamination. Cross-linked enzyme aggregates (CLEAs) of the sucrose phosphorylase from Bifidobacterium adolescentis were found to have a temperature optimum that is 17°C higher than that of the soluble enzyme. Furthermore, the immobilized enzyme displays an exceptional thermostability, retaining all of its activity after 1 week incubation at 60°C. Recycling of the biocatalyst allows its use in at least ten consecutive reactions, which should dramatically increase the commercial potential of its glycosylating activity. 相似文献
156.
Artur F. Castro-Rodrigues Yaxian Zhao Fátima Fonseca Guillaume Gabant Martine Cadene Gail A. Robertson João H. Morais-Cabral 《Journal of molecular biology》2018,430(24):5029-5049
The Drosophila EAG (dEAG) potassium channel is the founding member of the superfamily of KNCH channels, which are involved in cardiac repolarization, neuronal excitability and cellular proliferation. In flies, dEAG is involved in regulation of neuron firing and assembles with CaMKII to form a complex implicated in memory formation. We have characterized the interaction between the kinase domain of CaMKII and a 53-residue fragment of the dEAG channel that includes a canonical CaMKII recognition sequence. Crystal structures together with biochemical/biophysical analysis show a substrate–kinase complex with an unusually tight and extensive interface that appears to be strengthened by phosphorylation of the channel fragment. Electrophysiological recordings show that catalytically active CaMKII is required to observe active dEAG channels. A previously identified phosphorylation site in the recognition sequence is not the substrate for this crucial kinase activity, but rather contributes importantly to the tight interaction of the kinase with the channel. The available data suggest that the dEAG channel is a docking platform for the kinase and that phosphorylation of the channel's kinase recognition sequence modulates the strength of the interaction between the channel and the kinase. 相似文献
157.
Michelle Levene Francisco J. Enguita Bridget E. Bax 《Nucleosides, nucleotides & nucleic acids》2018,37(11):618-629
AbstractMitochondrial neurogastrointestinal encephalomyopathy (MNGIE) is a rare and fatal inherited metabolic disorder due to mutations in the nuclear TYMP gene and leads to a deficiency in the enzyme thymidine phosphorylase. This results in an accumulation of the deoxynucleosides, thymidine and deoxyuridine in the cellular and extracellular compartments, ultimately leading to mitochondrial failure. The understanding of the precise molecular mechanisms that underlie the disease pathology is limited, being hampered by the rarity of the disorder. Expression profiling of serum based mircoRNAs and subsequent bioinformatical analyses provide an approach to facilitate the identity of dysregulated genes and signalling pathways potentially involved in the pathogenesis of MNGIE. 相似文献
158.
Richard B. Rivkin 《Journal of phycology》1986,22(2):193-198
The uptake and incorporation of tritiated thymidine (3H-TdR) by axenic laboratory cultures of marine diatoms and dinoflagellates was measured. 3H-TdR was incorporated into nucleic acids by all four algae examined during a two to six hour period prior to cytokinesis and not during other times of the cell cycle. Between 90-95% of the 3H label incorporated into (cold trichloroacetic acid insoluble) nucleic acids was recovered from DNA. Incorporation of 3H-TdR appears to accurately indicate the timing of DNA synthesis. The incorporation of 3H-TdR by eucaryotic algae during long term (24 h) incubations does not generally preclude using 3H-TdR uptake to estimate bacterial production and growth during short term incubations. 相似文献
159.
An isopycnic gradient technique is described by which interstrand cross-linking of DNA in mammalian cells resulting from treatment with difunctional alkylating agents can be quantitated. 相似文献
160.
Attempts at continuous labeling of Crithidia fasciculata DNA with [3H]thymidine led to a pulse-chase situation due to a cell-mediated conversion of thymidine to thymine in the medium. The uptake of thymine was slow compared to that of thymidine. Neither the addition of deoxyadenosine nor the sequential addition of several aliquots of [3H]thymidine had an effect on the pattern of labeling. 相似文献