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Yazar "Bakan, E" seçeneğine göre listele

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  • [ X ]
    Öğe
    Effects of some drugs on rat erythrocyte 6-phosphogluconate dehydrogenase
    (Polish Acad Sciences Inst Pharmacology, 2002) Çiftçi, M; Beydemir, S; Yilmaz, H; Bakan, E
    The in vitro and in vivo effects of some drugs on rat erythrocytes 6-phosphogluconate dehydrogenase were investigated in this study. Rat erythrocyte 6-phosphogluconate dehydrogenase was partially purified with ammonium sulfate precipitation. The enzyme activity was determined by Beutler's method. Some drugs such as ampicillin, amikacin sulfate, and netilmicin sulfate inhibited the enzyme activity in in vitro conditions, while metamizole activated it. The I-50 values of the inhibiting drugs were 66.2, 5.836, and 0.963 mM, respectively. For the drugs having low I-50 values (drug concentrations which produce 50% inhibition) (amikacin sulfate and netilmicin sulfate), in vivo studies were performed in rats (Sprague-Dawley). Amikacin sulfate at 64 mg/kg inhibited the enzyme activity significantly (p < 0.05) 2 h after dosing. Netilmicin sulfate at 6.4 mg/kg also inhibited the enzyme significantly (p < 0.05) 4 h after dosing. Amikacin sulfate and netilmicin sulfate inhibited rat erythrocyte 6-phospogluconate dehydrogenase both in vivo and in vitro. The enzyme was inhibited in vitro by ampicillin and activated in vitro by metamizole.
  • [ X ]
    Öğe
    Purification and properties of glucose 6-phosphate dehydrogenase from turkey erythrocytes
    (Natl Inst Science Communication-Niscair, 2003) Yilmaz, H; Çiftçi, M; Beydemir, S; Bakan, E; Küfrevioglu, ÖI
    Glucose 6-phosphate dehydrogenase (G6PD) was purified from turkey erythrocytes by ammonium sulphate precipitation and followed by ADP Sepharose affinity gel chromatography. The yield was 49.71% and specific activity of the enzyme was found to be 4.4.16 EU/mg protein. By gel filtration the molecular mass was found to be 75 kDa. The enzyme had an optimum pH at 9.0, and opt;mum temperature at 50degreesC. K-m and V-max for NADP(+) and glucose 6- phosphate (G6-P) as substrates were also determined and effects of inhibitors such as ATP, NADH and NADPH were examined.
  • [ X ]
    Öğe
    Purification of glucose 6-phosphate dehydrogenase from chicken erythrocytes. Investigation of some kinetic properties
    (Taylor & Francis Inc, 2002) Yilmaz, H; Ciftci, M; Beydemir, S; Bakan, E
    Glucose 6-phosphate dehydrogenase (G6PD) was purified from chicken erythrocytes, and some characteristics of the enzyme were investigated. The purification procedure was composed of three steps: hemolysate preparation, ammonium sulfate precipitation, and 2',5'-ADP Sepharose 4B affinity gel chromatography. Thanks to the three consecutive procedures, the enzyme, having the specific activity of 20.862 EU/mg proteins, was purified with a yield of 54.68% and 9,150-fold. Optimal pH, stable pH, optimal temperature, molecular weight, and K-M and V-max values for NADP(+) and glucose 6- phosphate (G6-P) were also determined for the enzyme. In addition, K-i values and the type of inhibition were determined by means of Line-Weaver-Burk graphs obtained for such inhibitors as ATP, ADP, NADH, and NADPH.
  • [ X ]
    Öğe
    Purification of glucose 6-phosphate dehydrogenase from goose erythrocytes and kinetic properties
    (Tubitak Scientific & Technological Research Council Turkey, 2003) Beydemir, S; Yilmaz, H; Çiftçi, M; Bakan, E; Küfrevioglu, ÖI
    Glucose 6-phosphate dehydrogenase (G6PD) was purified from goose erythrocytes and some characteristics of the enzyme were investigated. The purification procedure was composed of 3 steps: hemolysate preparation, ammonium sulfate precipitation, and 2', 5'-ADP Sepharose 4B affinity gel chromatography. Thanks to the 3 consecutive procedures, the enzyme, having a specific activity of 36.2 EU/mg protein, was purified for a yield of 68.79% and 3892 folds; to ascertain enzyme purity, SDS-PAGE was performed. Optimal pH, stable pH, optimal temperature, molecular weight, and K-m and V-max values for NADP(+) and glucose 5-phosphate (G6-P) substrates were also determined for the enzyme. In addition, K-i values and inhibition type were determined by means of Lineweaver-Burk graphs obtained for such inhibitors as ATP, ADP and NADPH. These materials inhibited the enzyme in a noncompetitive manner.

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