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Different signalling pathways mediate glucose induction of SUC2, HXT1 and pyruvate decarboxylase in yeast

机译:酵母中SUC2,HXT1和丙酮酸脱羧酶的不同信号途径介导葡萄糖诱导

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摘要

The glucose sensors Gpr1, Snf3 and Rgt2 generate the earliest signals produced by glucose in yeast. We showed that a lack of Gpr1 or Snf3/Rgt2 decreased by twofold the glucose induction of SUC2, but had no effect on the induction of pyruvate decarboxylase (Pdc). The induction of HXT1 was not affected by the absence of Gpr1. In an hxk1 hxk2 glk1 strain, high glucose fully induced SUC2, caused partial induction of HXT1 and had no effect on Pdc. In this strain, SUC2 induction was dependent on Gpr1, but HXT1 induction was not. Hxk2, required for the high expression of HXT1, was dispensable for the full induction of SUC2 or Pdc. These results indicate that glucose does not induce transcription through a single signalling pathway, but that several pathways may, in different combinations, regulate the transcription of different genes.
机译:葡萄糖传感器Gpr1,Snf3和Rgt2生成酵母中葡萄糖产生的最早信号。我们表明缺乏Gpr1或Snf3 / Rgt2减少了SUC2的葡萄糖诱导的两倍,但对丙酮酸脱羧酶(Pdc)的诱导没有影响。没有Gpr1不会影响HXT1的诱导。在hxk1 hxk2 glk1菌株中,高葡萄糖完全诱导SUC2,引起HXT1的部分诱导,并且对Pdc无影响。在该菌株中,SUC2诱导依赖于Gpr1,而HXT1诱导则不。 HXT1高表达所必需的Hxk2对于完全诱导SUC2或Pdc是必不可少的。这些结果表明葡萄糖不通过单个信号传导途径诱导转录,但是几种途径可以不同的组合调节不同基因的转录。

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