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首页> 外文期刊>Yeast >Identification of regulatory elements in the AGT1 promoter of ale and lager strains of brewer's yeast.
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Identification of regulatory elements in the AGT1 promoter of ale and lager strains of brewer's yeast.

机译:确定啤酒酵母的强麦和大菌株的 AGT1 启动子中的调控元件。

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摘要

Agt1 is an interesting alpha-glucoside transporter for the brewing industry, as it efficiently transports maltotriose, a sugar often remaining partly unused during beer fermentation. It has been shown that on maltose the level of expression of AGT1 is much higher in ale strains than in lager strains, and that glucose represses the expression, particularly in the ale strains. In the present study the regulatory elements of the AGT1 promoter of one ale and two lager strains were identified by computational methods. Promoter regions up to 1.9 kbp upstream of the AGT1 gene were sequenced from the three brewer's yeast strains and the laboratory yeast strain CEN.PK-1D. The promoter sequence of the laboratory strain was identical to the AGT1 promoter of strain S288c of the Saccharomyces Genome Database, whereas the promoter sequences of the industrial strains diverged markedly from the S288c strain. The AGT1 promoter regions of the ale and lager strains were for the most part identical to each other, except for one 22 bp deletion and two 94 and 95 bp insertions in the ale strain. Computational analyses of promoter elements revealed that the promoter sequences contained several Mig1- and MAL-activator binding sites, as was expected. However, some of the Mig1 and MAL-activator binding sites were located on the two insertions of the ale strain, and thus offered a plausible explanation for the different expression pattern of the AGT1 gene in the ale strains. Accordingly, functional analysis of A60 ale and A15 lager strain AGT1 promoters fused to GFP (encoding the green fluorescent protein) showed a significant difference in the ability of these two promoters to drive GFP expression. Under the control of the AGT1 promoter of the ale strain the emergence of GFP was strongly induced by maltose, whereas only a low level of GFP was detected with the construct carrying the AGT1 promoter of the lager strain. Thus, the extra MAL-activator binding element, present in the AGT1 promoter of the ale strain, appears to be necessary to reach a high level of induction by maltose. Both AGT1 promoters were repressed by glucose but their derepression was different, possibly due to a distinct distribution of Mig1 elements in these two promoters.
机译:Agt1是酿造业中一种有趣的α-葡萄糖苷转运蛋白,因为它可以有效地转运麦芽三糖,这是一种在啤酒发酵过程中经常部分未使用的糖。已经表明,麦芽糖中 AGT1 的表达水平在啤酒菌株中比在较大的菌株中高得多,并且葡萄糖抑制了表达,特别是在啤酒菌株中。在本研究中,通过计算方法确定了一株啤酒和两株啤酒的 AGT1 启动子的调控元件。从三个啤酒酵母菌株和实验室酵母菌株CEN.PK-1D测序 AGT1 基因上游1.9 kbp的启动子区域。实验室菌株的启动子序列与酿酒酵母基因组数据库的菌株S288c的AGT1启动子序列相同,而工业菌株的启动子序列与S288c菌株明显不同。 。 ale菌株和较大菌株的 AGT1 启动子区域在很大程度上彼此相同,除了ale菌株中有一个22 bp缺失和两个94和95 bp插入。对启动子元件的计算分析表明,启动子序列含有几个Mig1和MAL激活子结合位点,这与预期的一样。但是,一些Mig1和MAL激活因子结合位点位于强麦芽菌株的两个插入片段上,因此为 AGT1 基因在强麦芽菌株中的不同表达模式提供了合理的解释。因此,对融合有 GFP (编码绿色荧光蛋白)的A60 ale和A15较大菌株AiAGT1 启动子的功能分析表明,这两个启动子驱动细胞的能力存在显着差异。 GFP表达。在强麦芽菌株 AGT1 启动子的控制下,麦芽糖强烈诱导GFP的出现,而携带 AGT1 的构建体仅检测到低水平的GFP。较大菌株的启动子。因此,存在于ale菌株的 AGT1 启动子中的额外的MAL-活化剂结合元件似乎对于达到高水平的麦芽糖诱导是必需的。两种 AGT1 启动子都被葡萄糖抑制,但它们的抑制不同,这可能是由于这两个启动子中Mig1元素的分布不同所致。

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