首页> 外文期刊>Journal of bacteriology >Facilitated Diffusion of Monosaccharides in Saccharomyces cerevisiae: Experimental Investigation of Kinetic Parameters Without the Assumptions of Symmetry
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Facilitated Diffusion of Monosaccharides in Saccharomyces cerevisiae: Experimental Investigation of Kinetic Parameters Without the Assumptions of Symmetry

机译:促进酿酒酵母中单糖的扩散:动力学参数的实验研究不对称的假设。

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Until the question of symmetry or asymmetry in the facilitated diffusion of monosaccharides by Saccharomyces cerevisiae is resolved, attempts to study the transport process cannot be based on assumptions of symmetry, such as equal concentrations at equilibrium or kinetic parameters that are equal in opposite directions. The assumptions of symmetry may be circumvented by measuring efflux against water and against various external concentrations of sugar. The measurement of efflux against water eliminates any involvement of influx, and the separate determinations of influx and efflux parameters do not require that the parameters be equal. Furthermore, the use of relative internal concentrations eliminates any necessity of assuming that the equilibrium concentrations are equal. Since the influx and efflux parameters are to be compared, the measurement of influx on effluxing cells allows both sets of parameters to be determined on cells which are physiologically the same. This procedure has been tested by obtaining the kinetic parameters of l-sorbose transport. The validity of these parameters was demonstrated by using them to generate theoretical efflux curves that fit the experimental data and by showing that they give the best fit curve to the relationship of velocity and permeant concentration. Although the question of symmetry remains unanswered, this procedure has opened the way for experimental evaluation of the situation and further investigation of the transport process in yeast.
机译:在解决了酿酒酵母促进单糖扩散的对称性或不对称性问题之前,研究转运过程的尝试不能基于对称性假设,例如在平衡状态下的等浓度或动力学参数在相反的方向上相等。可以通过测量针对水和针对各种外部糖浓度的流出量来绕开对称性的假设。相对于水的流出量的测量消除了流入量的任何参与,并且流入量和流出量参数的单独确定不需要参数相等。此外,使用相对内部浓度消除了假设平衡浓度相等的任何必要。因为要比较流入和流出参数,所以对流出细胞的流入的测量允许在生理上相同的细胞上确定两组参数。已经通过获得1-山梨糖转运的动力学参数测试了该程序。通过使用这些参数生成适合实验数据的理论流出曲线,并显示它们对速度和渗透物浓度的关系给出了最佳拟合曲线,从而证明了这些参数的有效性。尽管对称性问题尚未得到解答,但该程序为实验评估情况和进一步研究酵母中的转运过程开辟了道路。

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