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P Pan

Publications and source records attributed to P Pan.

At least 37 records · Page 2Linked to original sources

Shift in pH-rate profile and enhanced discrimination between dicarboxylic and aromatic substrates in mitochondrial aspartate aminotransferase Y70H.

Tyr70 of chicken mitochondrial aspartate aminotransferase was replaced with a histidine residue by oligonucleotide-directed mutagenesis. Aspartate aminotransferase Y70H retained at pH 7.5 13% of the activity toward dicarboxylic amino acids, whereas the activity toward aromatic amino acids was only 0.6% of that of the wild-type enzyme, corresponding to a 22-fold increase in the ratio of the activities toward these two types of substrates. In comparison to that of the wild-type enzyme, the low-pH limb of the pH-activity profile of the mutant enzyme was shifted to higher pH values, very likely reflecting the titration curve of the newly introduced histidine residue with a pKa' of 6.3. Apparently, a positively charged residue at position 70 abolishes enzymic activity. The spectrophotometrically determined pKa' value of the internal aldimine formed between pyridoxal 5'-phosphate and Lys258 in the mutant enzyme was 6.0, similar to that in the wild-type enzyme. The rate constant of the dissociation of pyridoxamine 5'-phosphate from the mutant enzyme was increased only 3 times over that of the wild-type enzyme, in contrast to the 80-fold increase in Escherichia coli aspartate aminotransferase Y70F [Toney, M. D., & Kirsch, J. F. (1987) J. Biol. Chem. 262, 12403-12405], suggesting that His70 can replace Tyr70 in forming a hydrogen bond to the coenzyme.

Amino Acid Sequence↗

Reaction of imidazole-citrate-deformed glycogen phosphorylase with amino acids.

Incubation of phosphorylase with L-valine in the presence of 0.4 M imidazole citrate results in a time-dependent decrease in the absorption of the enzyme-bound cofactor pyridoxal 5'-phosphate at 333 nm and the generation of a new absorption maximum at 415 nm which appears to be due to an enzyme-bound coenzyme-amino-acid aldimine adduct. Consequently, the enzyme is inactivated to less than 10% of its initial activity. The formation of the adduct of phosphorylase b with L-valine (0.1 M) proceeds with t1/2 approximately 8 min at pH 6.8 and 25 degrees C and is slightly inhibited by AMP. Phosphorylase a reacts five times more slowly than phosphorylase b. The decrease in enzymic activity is linked to the formation of the coenzyme-amino-acid adduct and is not due to resolution of the enzyme. Both the original absorption spectrum and phosphorylase activity are restored by gel filtration in the absence of L-valine and imidazole citrate. Similar reactions occur with other L-amino acids, an exception being L-cysteine which leads to resolution of the enzyme [Shaltiel, S., Hedrick, J. L. & Fischer, E. H. (1966) Biochemistry 5, 2108-2116]. No reaction is observed with D-amino acids or in the absence of imidazole citrate. Pyridoxal-reconstituted phosphorylase rapidly produces with amino acids not only the aldimine adduct but also a species absorbing at 318 nm. Enzyme-bound pyridoxal 5'-phosphate and pyridoxal exhibit a positive CD signal in the region of 333 nm; in contrast, the absorption bands of the coenzyme-amino-acid adducts at 415 nm and 318 nm are optically inactive. Neither pyridoxal-5'-phosphate-reconstituted nor pyridoxal-reconstituted phosphorylase in imidazole citrate catalyses any of the common pyridoxal-5'-phosphate-mediated reactions of amino acids, e.g. transamination, decarboxylation or racemization, thus testifying to the high degree of reaction specificity of phosphorylase.

Amino Acids↗

Gingivitis, plaque accumulation and plaque composition under long-term use of Meridol.

The effectiveness of amine fluoride and stannous fluoride in the prophylaxis of caries and gingivitis is well-known from the literature. The aim of this study was to assess whether these agents could be recommended for long-term use. Under conditions of a clinical double-blind study, the influence of an amine/stannous fluoride rinse on gingivitis, plaque accumulation and the composition of the supragingival plaque was tested over a period of 7 months. 102 persons with signs of chronic gingivitis participated in the study. Gingival indices (GI, SBI) and plaque indices (PlI, API) were recorded at baseline, after 3.5 and 7 months. The composition of the supragingival plaque was evaluated by dark-field microscopy. During the 7 months, the GI decreased in the test group from 1.36 to 0.95, and the SBI from 52.0% to 29.3%. The PlI fell from 1.17 to 0.68, and the API from 61.3% to 50.6% (p < 0.001). No significant changes were recorded in the control group. In the test group, the proportion of cocci in the plaque increased from 58.4% to 68.9% (p < 0.001) while the proportion of rods and other plaque bacteria underwent a significant decrease (p < 0.001). The microflora was stable in the control group throughout the study period. No side-effects of the drug were reported by the probands. The results suggest that long-term use of the amine/stannous fluoride rinse is of benefit to gingival health.

Adolescent↗

[Nifedipine in preeclampsia for cesarean section].

The patients with preeclampsia undergoing emergent cesarean section is always a challenge to an anesthesiologist, because severe hypertensive response after laryngoscopy and tracheal intubation may result in life-threatening complication such as cerebral hemorrhage. Most of these patients receive magnesium sulfate for the prevention of convulsion. An ideal anti-hypertensive drug for preeclampsia should be effective, limited fall in blood pressure, rapid onset, maintaining uteroplacental blood flow, and less maternal and fetal side effects. We studied the efficacy of 10 mg sublingual nifedipine in attenuating the pressor response to intubation. We were also concerned about whether this calcium antagonist may inhibit uterine contraction and increase intra and postpartum hemorrhage when it is used with magnesium sulfate and general anesthesia. There were thirty-three patients in our study (16 in nifedipine group and 17 in control group). This study revealed that nifedipine attenuate the hypertensive response effectively. Uterine contraction response to oxytocic drugs was quite well in both groups. There was no significant difference in blood loss between nifedipine and control group. And no severe maternal and fetal adverse effect.

Adult↗

Differentiation-related regulation of 1,25-dihydroxyvitamin D3 receptor mRNA in human leukaemia cells HL-60.

Vitamin D receptor (VDR) is a nuclear protein which mediates the physiological actions of its hormone ligand, 1,25-dihydroxyvitamin D3 (1,25(OH)2D3). While it appears that the receptor-hormone complex regulates the expression of hormone-dependent genes involved in mineral homeostasis, its role in induction of differentiation of leukaemic cells is less clear. We have studied the expression of the VDR gene in several sublines of HL-60 leukaemic cells with varying responsiveness to 1,25(OH)2D3. Sublines which rapidly differentiated to monocytic forms were shown to contain elevated steady-state levels of VDR mRNA within 1 h of exposure to high concentration of 1,25(OH)2D3. This up-regulation of the expression of VDR was not apparent in sublines in which monocytic differentiation occurred after a delay of several days. Beginning at approximately 3 h after exposure to 1,25(OH)2D3 in most cases, there was a gradual decline in VDR mRNA levels. Measurement of steady-state levels of mRNA for c-myc and c-fos showed that in sublines of HL-60 cells which respond rapidly to 1,25(OH)2D3, elevation of VDR mRNA is evident prior to the changes in proto-oncogene expression. These data are consistent with the hypothesis that a change in VDR gene expression is one of the steps that promote monocytic differentiation.

Blotting, Northern↗

Immunohistochemical localization of cyclic GMP in aggregating Polysphondylium violaceum.

Using indirect immunofluorescence technique, it has been possible to localize cyclic GMP in Polysphondylium violaceum cells. The bound cyclic nucleotide is localized throughout the cell during early stages, however, this staining increases and there is marked localization of cyclic GMP in the nuclear areas of the cells when aggregation is in full swing. Over 90% of the cells exhibited intense nuclear staining by 6 h and this decreased to less than 10% by 10 h.

Cell Aggregation↗

Inactivation of the chemoattractant folic acid by cellular slime molds and identification of the reaction product.

Enzymes inactivating the chemoattractants folic acid and pterin were detected in extracellular, intracellular, and particulate fractions obtained from Dictyostelium discoideum strains NC4 and AX-2 and Polysphondylium violaceum. The products of the inactivation reaction were analyzed by thin-layer chromatography and UV spectroscopy. Results obtained indicate that folic acid and pterin were deaminated to 2-deamino folic acid and lumazine, respectively.

Aminohydrolases↗

Preliminary characterization of the acrasin of the cellular slime mold Polysphondylium violaceum.

Some species of cellular slime mold do not respond to cyclic AMP as an acrasin, or chemoattractant. In one such species, Polysphondylium violaceum, we have isolated and purified its acrasin and determined some of its chemical properties, which lead us to believe it is a small molecule of less than 1500 daltons. One possibility is that it might be a peptide. The acrasin specifically attracts the amoebae of P. violaceum and P. pallidum and fails to do so for six species of Dictyostelium tested. We also have evidence for a specific acrasinase that inactivates the Polysphondylium acrasin.

Amines↗

Determination of the active portion of the folic acid molecule in cellular slime mold chemotaxis.

From earlier work it is known that folic acid attracts the amoebae of various species of cellular slime molds (11). Here we have tested a wide variety of pteridines, pyrimidines, and pyrazines to determine what part of the folic acid molecule is chemotactically active. It was shown that the activity lies in the pteridine ring itself. Furthermore, the cell-free supernatants of slime mold amoebae contain an enzyme that renders pterin and folic acid chemotactically inactive, which apparently increases the chemotactic sensitivity of the amoebae to those compounds. Despite the fact that slime mold amoebae secrete small amounts of folic acid-related compounds, there is no evidence that folates are acrasins; rather it is postulated that attraction to folates may be a food-seeking device for the amoebae which prey on folate-secreting bacteria in the soil.

Agar↗

Immunofluorescence evidence for the distribution of cyclic AMP in cells and cell masses of the cellular slime molds.

With immunofluorescent techniques it has been possible to show that bound cyclic AMP is uniformly distributed in the nucleus and cytoplasm of a number of species of cellular slime molds. One species (which does not respond to cyclic AMP as an acrasin) is an exception and has its cyclic AMP concentrated in the nucleus during the feeding and aggregation stage. In cell masses of Dictyostelium discoideum that show early signs of differentiation the anterior, prestalk cells contain more cyclic AMP than the posterior, prespore cells.

Animals↗

Growth of obligate autotrophic bacteria on glucose in a continuous flow-through apparatus.

Nitrosomonas europaea, Nitrobacter agilis, Thiobacillus denitrificans, T. neapolitanus, and T. thioparus (all obligate autotrophic bacteria) have been grown in dialysis culture, on glucose salts media, in the absence of their specific inorganic energy source. Metabolic products for N. agilis grown on nitrite salts medium were identified as keto acids. Pyruvic acid inhibited this organism at 5 x 10(-5)m. Keto acids were not inhibitory for the thiobacilli grown on thiosulfate medium. However, when T. denitrificans was grown on glucose with dialysis, addition of 5 x 10(-4)m pyruvate inhibited growth. Thus, it appears pyruvate may be inhibitory for other autotrophs, as has been reported for T. thiooxidans.

Ammonia↗