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首页> 外文期刊>Applied and Environmental Microbiology >Low-affinity, high-capacity system of glucose transport in the ruminal bacterium Streptococcus bovis: evidence for a mechanism of facilitated diffusion.
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Low-affinity, high-capacity system of glucose transport in the ruminal bacterium Streptococcus bovis: evidence for a mechanism of facilitated diffusion.

机译:瘤胃细菌牛链球菌中葡萄糖转运的低亲和力,高容量系统:促进扩散机制的证据。

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摘要

The glucose phosphotransferase system (PTS) of Streptococcus bovis could not account for the glucose consumption of exponential cultures, and the kinetics of glucose transport were biphasic. A PTS-deficient mutant lost the high-affinity, low-capacity system but retained its ability to take up glucose at high substrate concentrations. The low-affinity, high-capacity system did not require a proton motive force or ATP and could not be driven by an artificial membrane potential in the presence or absence of sodium. Since low-affinity transport was directly proportional to the external substrate concentration and exhibited counterflow kinetics, it appeared that a facilitated-diffusion mechanism was responsible for glucose transport at high substrate concentrations.
机译:牛链球菌的葡萄糖磷酸转移酶系统(PTS)不能解释指数培养物的葡萄糖消耗,并且葡萄糖运输的动力学是双相的。缺乏PTS的突变体失去了高亲和力,低容量的系统,但保留了其在高底物浓度下吸收葡萄糖的能力。低亲和力,高容量系统不需要质子动力或ATP,并且在存在或不存在钠的情况下,都无法由人造膜电位驱动。由于低亲和力转运与外部底物浓度成正比,并表现出逆流动力学,因此似乎促进扩散机制是高底物浓度下葡萄糖转运的原因。

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