Rashid H, Ali M K, Tayyab S
Interdisciplinary Biotechnology Unit, Aligarh Muslim University, Aligarh 202 002, India.
J Biosci. 2000 Jun;25(2):157-61.
Effect of pH and temperature on the binding of bilirubin to human erythrocyte membranes was studied by incubating the membranes at different pH and temperatures and determining the bound bilirubin. At all pH values, the amount of membrane-bound bilirubin increased with the increase in bilirubin-to-albumin molar ratios (B/As), being highest at lower pH values in all cases. Further, linear increase in bound bilirubin with the increase in bilirubin concentration in the incubate was observed at a constant B/A and at all pH values. However, the slope value increased with the decrease in pH suggesting more bilirubin binding to membranes at lower pH values. Increase in bilirubin binding at lower pH can be explained on the basis of increased free bilirubin concentration as well as more conversion of bilirubin dianion to monoanion. Temperature dependence of bilirubin binding to membranes was observed within the temperature range of 7 degrees -60 degrees C, showing minimum binding at 27 degrees C and 37 degrees C which increased on either side. Increase in bilirubin binding at temperatures lower than 20 degrees C and higher than 40 degrees C can be ascribed to the change in membrane topography as well as bilirubin-albumin interaction.
通过在不同pH值和温度下孵育人红细胞膜并测定结合的胆红素,研究了pH值和温度对胆红素与人红细胞膜结合的影响。在所有pH值下,膜结合胆红素的量均随胆红素与白蛋白摩尔比(B/A)的增加而增加,在所有情况下,在较低pH值时最高。此外,在恒定的B/A和所有pH值下,观察到孵育液中结合胆红素随胆红素浓度的增加呈线性增加。然而,斜率值随pH值的降低而增加,表明在较低pH值时更多的胆红素与膜结合。较低pH值下胆红素结合增加可基于游离胆红素浓度的增加以及胆红素二价阴离子向一价阴离子的更多转化来解释。在7℃至60℃的温度范围内观察到胆红素与膜结合的温度依赖性,在27℃和37℃时结合最少,在两侧均增加。低于20℃和高于40℃时胆红素结合增加可归因于膜拓扑结构的变化以及胆红素 - 白蛋白相互作用。