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再探克鲁伊弗效应。

The Kluyver effect revisited.

作者信息

Fukuhara Hiroshi

机构信息

Institut Curie, Section de Recherche, Centre Universitaire, Batiment 110, 91405, Orsay, France.

出版信息

FEMS Yeast Res. 2003 Jun;3(4):327-31. doi: 10.1016/S1567-1356(03)00112-0.

Abstract

Yeast species can grow on various sugars. However, in many cases the growth on certain sugars (especially oligosaccharides) occurs only under aerobic conditions, and not in anaerobiosis or in the absence of respiration. Fermentation is blocked under these conditions. This apparent dependence of sugar utilization on the respiration has been called Kluyver effect, and such 'respiration-dependent' species are called Kluyver effect positive. A yeast may be Kluyver effect positive for some sugars and not for others. The physiological meaning and the molecular basis of the phenomenon are not clear. It has recently been reported that Kluyveromyces lactis, which is Kluyver effect positive for galactose and a few other sugars, could be converted into a Kluyver effect-negative form by introduction of relevant sugar transporter genes. Such results offer for the first time a direct support to the hypothesis that the immediate cause of the Kluyver effect may be the low level of sugar transporter activities which is not sufficient to sustain the high substrate flow necessary for fermentative growth, whereas the energy-efficient respiratory growth does not require a high rate of sugar uptake. We examined to what extent this sugar transporter theory of the Kluyver effect can be generalized.

摘要

酵母菌种能够在多种糖类上生长。然而,在许多情况下,在某些糖类(尤其是寡糖)上的生长仅在有氧条件下发生,而在无氧或无呼吸作用的情况下则不会发生。在这些条件下发酵会受阻。糖类利用对呼吸作用的这种明显依赖性被称为克鲁维效应,而这种“呼吸作用依赖性”的菌种被称为克鲁维效应阳性。一种酵母可能对某些糖类是克鲁维效应阳性,而对其他糖类则不是。该现象的生理意义和分子基础尚不清楚。最近有报道称,对半乳糖和其他几种糖类呈克鲁维效应阳性的乳酸克鲁维酵母,通过导入相关的糖转运蛋白基因可转化为克鲁维效应阴性形式。这些结果首次直接支持了这样一种假说,即克鲁维效应的直接原因可能是糖转运蛋白活性水平较低,不足以维持发酵生长所需的高底物流量,而高效的呼吸生长并不需要高糖摄取率。我们研究了这种关于克鲁维效应的糖转运蛋白理论能够在多大程度上具有普遍性。

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