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Nutrient utilization and transport in the thermoacidophilic archaeon Sulfolobus shibatae

机译:热酸碱硫氨磺酰磺鲁豆畜Shibatae中的营养利用和运输

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Summary: Growth of the thermoacidophilic archaeon Sulfolobus shibatae was tested on a range of carbon and nitrogen sources. Optimal defined and complex growth media were developed and growth conditions in both shake flask and fermenter cultures were optimized. Better growth was observed on maltose in particular and disaccharides in general than on monosaccharides. Moreover, maltose utilization was not repressed in the presence of glucose which suggests that glucose is not the preferred substrate of S. shibatae. Uptake studies putatively identified two saturable, constitutive maltose transport systems, a high-affinity, possible membrane-binding system with a Km of 20 μM and a Vmax of 218 nmol min-1 (mg protein)-1, and a low-affinity, proton-dependent system with a Km of 158 μM and a Vmax of 680 nmol min-1(mg protein)-1. Both systems showed differential responses to treatment with 2,4-dinitrophenol and arsenate, and differed from other maltose transport mechanisms described in being constitutive under all conditions tested and not repressed by glucose.
机译:发明内容:在一系列碳和氮源中测试热酸古氏酸夏磺鲁斯石菖蒲的生长。优化定义和复杂的生长培养基在摇瓶和发酵瓶中的生长条件进行了优化。特别是在麦芽糖上观察到更好的生长,并且一般上糖类比单糖。此外,在葡萄糖存在下没有抑制麦芽糖使用,这表明葡萄糖不是S.Shibatae的优选基质。采用研究鉴定了鉴定了两个可饱和的组成型麦芽糖输送系统,高亲和力,可能的膜结合系统,具有20μm的km,20μm和218nmol min-1(mg蛋白)-1的Vmax,以及低亲和力,质子依赖性系统,km为158μm,vmax为680 nmol min-1(mg蛋白)-1。两种系统显示出用2,4-二硝基苯酚和砷处理的差异反应,并与在所有条件下由葡萄糖抑制的所有条件下描述的麦芽糖传输机制不同。

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