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New insights into trehalose metabolism by Saccharomyces cerevisiae: NTH2 encodes a functional cytosolic trehalase, and deletion of TPS1 reveals Ath1p-dependent trehalose mobilization

机译:酿酒酵母对海藻糖代谢的新见解:NTH2编码功能性胞质海藻糖酶,而TPS1的缺失揭示了依赖Ath1p的海藻糖动员

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摘要

In the yeast Saccharomyces cerevisiae, the synthesis of endogenous trehalose is catalyzed by a trehalose synthase complex, TPS, and its hydrolysis relies on a cytosolic/neutral trehalase encoded by NTH1. In this work, we showed that NTH2, a paralog of NTH1, encodes a functional trehalase that is implicated in trehalose mobilization. Yeast is also endowed with an acid trehalase encoded by ATH1 and an H+/trehalose transporter encoded by AGT1, which can together sustain assimilation of exogenous trehalose. We showed that a tps1 mutant defective in the TPS catalytic subunit cultivated on trehalose, or on a dual source of carbon made of galactose and trehalose, accumulated high levels of intracellular trehalose by its Agt1p-mediated transport. The accumulated disaccharide was mobilized as soon as cells entered the stationary phase by a process requiring a coupling between its export and immediate extracellular hydrolysis by Ath1p. Compared to what is seen for classical growth conditions on glucose, this mobilization was rather unique, since it took place prior to that of glycogen, which was postponed until the late stationary phase. However, when the Ath1p-dependent mobilization of trehalose identified in this study was impaired, glycogen was mobilized earlier and faster, indicating a fine-tuning control in carbon storage management during periods of carbon and energy restriction.
机译:在酵母酿酒酵母中,内源海藻糖的合成由海藻糖合酶复合物TPS催化,其水解依赖于NTH1编码的胞质/中性海藻糖酶。在这项工作中,我们表明NTH2,NTH1的一个旁系同源物,编码一个与海藻糖动员有关的功能性海藻糖酶。酵母还具有由ATH1编码的酸性海藻糖酶和由AGT1编码的H + /海藻糖转运蛋白,它们可以共同维持外源海藻糖的同化作用。我们表明,在海藻糖或半乳糖和海藻糖构成的碳的双重来源上培养的TPS催化亚基中的tps1突变体缺陷,通过其Agt1p介导的运输积累了高水平的细胞内海藻糖。一旦细胞进入固定相,就需要动员积累的二糖,这一过程需要其输出与Ath1p的立即细胞外水解之间的耦合。与经典的葡萄糖生长条件相比,这种动员是相当独特的,因为它发生在糖原之前,后者被推迟到静止后期。但是,当本研究中确定的海藻糖依赖Ath1p的动员受到损害时,糖原就被更快,更早地动员,这表明在碳和能量限制期间碳存储管理的微调控制。

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