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酵母菌落发育过程中羧酸的转运和 Jen1p 转运蛋白的重要作用。

The transport of carboxylic acids and important role of the Jen1p transporter during the development of yeast colonies.

机构信息

Molecular and Environmental Biology Centre (CBMA), Department of Biology, Campus de Gualtar, University of Minho, 4710-057 Braga, Portugal.

出版信息

Biochem J. 2013 Sep 15;454(3):551-8. doi: 10.1042/BJ20120312.

Abstract

On solid substrates, yeast colonies pass through distinct developmental phases characterized by the changes in pH of their surroundings from acidic to nearly alkaline and vice versa. At the beginning of the alkali phase colonies start to produce ammonia, which functions as a quorum-sensing molecule inducing the reprogramming of cell metabolism. Such reprogramming includes, among others, the activation of several plasma membrane transporters and is connected with colony differentiation. In the present study, we show that colony cells can use two transport mechanisms to import lactic acid: a 'saturable' component of the transport, which requires the presence of a functional Jen1p transporter, and a 'non-saturable' component (diffusion) that is independent of Jen1p. During colony development, the efficiency of both transport components changes similarly in central and outer colonial cells. Although the lactate uptake capacity of central cells gradually decreases during colony development, the lactate uptake capacity of outer cells peaks during the alkali phase and is also kept relatively high in the second acidic phase. This lactate uptake profile correlates with the localization of the Jen1p transporter to the plasma membrane of colony cells. Both lactic acid uptake mechanisms are diminished in sok2 colonies where JEN1 expression is decreased. The Sok2p transcription factor may therefore be involved in the regulation of non-saturable lactic acid uptake in yeast colonies.

摘要

在固体基质上,酵母菌落经历不同的发育阶段,其周围环境的 pH 值从酸性变为碱性,反之亦然。在碱相的开始,菌落开始产生氨,氨作为群体感应分子诱导细胞代谢的重新编程。这种重编程包括激活几个质膜转运体,并与菌落分化有关。在本研究中,我们表明,菌落细胞可以使用两种运输机制来吸收乳酸:一种是转运的“饱和”成分,需要有功能的 Jen1p 转运体的存在,另一种是“非饱和”成分(扩散),它独立于 Jen1p。在菌落发育过程中,中央和外周菌落细胞的两种转运成分的效率变化相似。尽管中央细胞的乳酸摄取能力在菌落发育过程中逐渐下降,但外周细胞的乳酸摄取能力在碱相达到峰值,并在第二酸性相也保持相对较高。这种乳酸摄取模式与 Jen1p 转运体在菌落细胞质膜上的定位相关。在 JEN1 表达减少的 sok2 菌落中,两种乳酸摄取机制都减少了。因此,Sok2p 转录因子可能参与酵母菌落中非饱和乳酸摄取的调节。

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