Jasra N, Sanyal S N, Khera S
Department of Zoology, Panjab University, Chandigarh, India.
J Helminthol. 1990 Sep;64(3):248-54. doi: 10.1017/s0022149x00012232.
14C-glucose uptake by adult Trichuris globulosa is found to be a non-linear function of time and limiting substrate concentration. The uptake is a two component process, an initial rapid burst is followed by a lower steady state, implying a mediated process. The uptake is dependent on Na+ ions which cannot be replaced by K+, Li+ or choline. The uptake is also dependent on pH, being maximal at pH 7.4. 14C-glucose absorption is markedly inhibited by glucose, phlorizin, ouabain and to a smaller extent by a number of monosaccharides and other sugar-phosphates, nucleosides and metabolic inhibitors like p-nitrophenyl phosphate and iodoacetate. The inhibition constant for glucose, phlorizin and ouabain has been found to be 8 mM, 5 mM and 7 mM, respectively. A modified Dixon-plot shows that glucose is a completely competitive inhibitor for 14C-glucose uptake while the nature of competitive inhibition of phlorizin and ouabain are found to be partial.
研究发现,成年球形鞭虫对14C-葡萄糖的摄取是时间和底物浓度限制的非线性函数。摄取是一个双组分过程,初始快速摄取后是较低的稳态,这意味着是一个介导过程。摄取依赖于Na+离子,K+、Li+或胆碱无法替代。摄取也依赖于pH值,在pH 7.4时达到最大值。葡萄糖、根皮苷、哇巴因可显著抑制14C-葡萄糖的吸收,多种单糖、其他糖磷酸盐、核苷以及对硝基苯磷酸盐和碘乙酸等代谢抑制剂在较小程度上也有抑制作用。已发现葡萄糖、根皮苷和哇巴因的抑制常数分别为8 mM、5 mM和7 mM。修正的Dixon图表明,葡萄糖是14C-葡萄糖摄取的完全竞争性抑制剂,而根皮苷和哇巴因的竞争性抑制性质为部分竞争性。