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81.
Early effects of various prostaglandins on the production of hexosamine-containing substances by cultured fibroblasts, which were derived from a rat carrageenin granuloma, were studied. At the stationary phase, the cells were exposed for 6 h to one of the prostaglandin A1 (PGA1), A2, B1, B2, D2, F, F, E1, E2 or arachidonic acid in various concentrations ranging from 0.01 to 10 μg/ml for all the stimuli and from 10 pg to 10 μg/ml for PGF. The activity of the cells in incorporating 3H-glucosamine into hexosamine-containing substances (acidic) glycosaminoglycans and glycoproteins) during this period was compared with that of control cells. All the stimuli tested showed more or less stimulative effect on the synthesis of hexosamine-containing substances at their specific concentrations. PGF was found to be the most potent stimulant and its stimulative effect was found significant even at the low concentration of 100 pg/ml. PGD2, F and E2 were the next potent stimuli. Their optimum dose were around 1 μg/ml but they still had significant stimulation at the concentration of 0.01 μg/ml. Effect of PGE2 was rather mild. Stimulation by PGA1, A2, B1 and B2 or arachidonic acid was seen at high dose, and its seemed to be non-specific. The results suggested that these prostaglandins such as PGF, D2, F and E2 play some important role on regulating the production of intercellular ground substances.  相似文献   
82.
The effect of PGF2α on the synthesis of hexosamine-containing substances (acidic glycosaminoglycans and glycoproteins) was studied in cultured fibroblasts derived from a rat carrageenin granuloma. Treatment with PGF2α ranging from 0.01 μg/ml to 20 μg/ml resulted in a significant increase of the production of these macromolecules by the cells. The stimulatory effect was found significant even at the low concentration of 10 ng/ml, and could be seen as early as 3h after exposure to PGF2α. The hexosamine-containing substances increased by PGF2α revealed that 80% of the increase was due to acidic glycosaminoglycans and the rest was due to glycoproteins.  相似文献   
83.
84.
T Y Chang  C C Chang 《Biochemistry》1982,21(21):5316-5323
A highly efficient selection procedure was developed for isolating revertants of Chinese hamster ovary (CHO) cell mutants resistant to suppression by 25-hydroxy-cholesterol. The procedure is based on the fact that the specific polyene antibiotic amphotericin B caused a lethal porous complex formation with membrane cholesterol only in cholesterol-rich cells. The wild-type cells and the revertant cells switched to grow from fetal calf serum medium to delipidated fetal calf serum medium for approximately 1 day became deficient in cellular cholesterol content. These cells, unlike the cholesterol-rich mutant cells, became much less sensitive to amphotericin B cytotoxicity. The spontaneous reversion frequency of a previously reported 25-hydroxycholesterol-resistant cell clone, 25-RA [Chang, T.-Y., & Limanek, J.S. (1980) J. Biol. Chem. 255, 7787-7795], was found to be approximately 3 X 10(-6), a frequency comparable to other single gene mutations of CHO cells. Biochemical analyses of three of these revertants showed that all defects manifested in 25-RA cells reverted back in parallel, a result suggesting that these observed defects in 25-RA cells are due to a single mutation event, thus supporting the hypothesis (Chang & Limanek, 1980) that a common controlling factor may be involved in mediating the suppressive action(s) of the cholesterol analogue on various cholesterogenic enzyme activities. The function of this common controlling factor is rendered abnormal in 25-RA cells by mutation.  相似文献   
85.
A systematic structural comparison of several carp gamma-crystallins with high methionine contents was made by the secondary-structure prediction together with computer model-building based on the established X-ray structure of calf gamma-II crystallin. The overall surface hydrophilicity profile and the distribution of helices, beta-sheets, and beta-turns along the polypeptide chains are very similar among these carp gamma-crystallins. In addition, their general polypeptide packing is close to the characteristic 2 domain/4 motif Greek key three-dimensional conformation depicted for the calf gamma-II crystallin. Interestingly, most hydrophobic methionine residues are located on the protein surface with only a few buried inside the protein surface or in the interface between two motifs of each domain. The exposed hydrophobic and polarizable methionine cluster on the protein surface may have a bearing on the crystallin stability and dense packing in the piscine species, and probably also provides a malleable nonpolar surface for the interaction with other crystallin components for the maintenance of a clear and transparent lens.  相似文献   
86.
Periodic backflushing was introduced to a membrane separation process to improve the performance. Hemoglobin (M.W. = 62,500) and dextran (M.W. = 10,000) were used as model compounds. Filtration performance of an ultrafiltration membrane system (Amicon hollow fiber membrane, H1P30-43, molecular weight cutoff = 30,000) was measured in terms of apparent permeability and retention coefficient of dextran to determine the effects of backflushing frequency and duration of one cycle. An optimum frequency around 0.2 min-1 existed to give a maximum permeability while the retention of dextran decreased with increasing frequencies. The improvement in permeability by periodic backflush was more than doubled. The retention of dextran decreased as backflushing duration was increased in one cycle. With the duration of 33.75 s, the retention of dextran was less than 50% and dextran output was 1.14 g/h, which was 1.3 times the value without backflushing. Also, periodic backflush made possible the long-term filtration of yeast cells for more than 20 h.  相似文献   
87.
Six different types of materials including PVC, chitosan, chitin, agarose, Sepharose, and Trisacryl were evaluated for their lipase-coupling efficiencies. Among those tested, chitosan yielded the highest amount of lipase (79 mg/mL packed gel) immobilized but with lowest oil hydrolytic activity (0.03 mg eq/mL gel). The amount of lipase immobilized was affected by the length of the hydrocarbon chain attached to the PVC matrix but not by the pore size of the supports used. On the other hand, the specific activity of the immobilized lipase was affected by the pore size but not by the chain length of the hydrocarbon attached to the support. After immobilization, the optimal reaction pH was shifted from 7.5 to 8.5 and the optimal reaction temperature from 35 to 45-55 degrees C. Lipase immobilized on PVC exhibited higher thermal stability than that on agarose. The half-life of the PVC immobilized lipase operating at 30 degrees C in a packed-bed reactor was estimated to be about 400 h.  相似文献   
88.
Plant cell cultures of Lithospermum erythrorhizon were carried out to produce shikonin by in situ extraction and cell immobilization in calcium alginate bead in shake flask cultures. In situ product extraction and cell immobilization enhanced shikonin production and facilitated product recovery. In situ extraction by n-hexadecane and cell immobilization by calcium alginate gave higher specific shikonin productivities of 7.4 and 2.5 times, respectively, than those from the cultures of free cells without extraction. Simultaneous use of both techniques increased specific and volumetric productivities of shikonin 25- and 15-fold, respectively. In calcium alginate immobilized cell cultures, n-hexadecane addition at an early stage (before 15 days) was effective for shikonin production, and solvent addition after 15 days of the culture significantly reduced shikonin production. Higher numbers of plant cell immobilized bead inoculation did not increase shikonin production and sucrose consumption. Most of the produced shikonin was dissolved in the solvent layer.  相似文献   
89.
90.
Metabolism ofl-[U-14C]lysine was studied in the human autopsy tissues and the intact monkeys through intracerebroventricular and intravenous injections. The human tissues were more active in the metabolism ofl-[14C]lysine to [14C]pipecolate than the rat tissues previously reported. This metabolism was equally active in the phosphate (pH 7) and the glycyl-glycine (pH 8.6) buffers with the brain and the kidney having higher activity than the liver. Besides [14C]pipecolate, traces of [14C]saccharopine and -[14C]aminoadipate were also detected in the liver incubation. Twenty-four hr after intraventricular injection ofl-[14C]lysine to the monkey, substantial labeling of pipecolate and -aminoadipate was observed in the brain and spinal cord, with the kidney, liver and the plasma having much reduced levels. Radioactivity levels of these two compounds were found low in the organs and plasma of the intravenously injected monkey. The urine of both monkeys contained only traces of [14C]pipecolate, even though it contained high levels ofl-[14C]lysine and -[14C]aminoadipate. It was concluded thatl-lysine is actively metabolized to pipecolate and -aminoadipate in the human and the monkey, that this reaction is most active in the brain whenl-lysine is intraventricularly administered, and that in contrast to the rat, the monkey may have an effective renal reabsorption for pipecolate which is similar to the human.  相似文献   
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