首页> 外文OA文献 >The yeast MOT2 gene encodes a putative zinc finger protein that serves as a global negative regulator affecting expression of several categories of genes, including mating-pheromone-responsive genes.
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The yeast MOT2 gene encodes a putative zinc finger protein that serves as a global negative regulator affecting expression of several categories of genes, including mating-pheromone-responsive genes.

机译:酵母MOT2基因编码一个假定的锌指蛋白,该蛋白可作为全局负调控子,影响几种基因的表达,包括交配信息素反应性基因。

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摘要

The STE4 gene encodes the beta subunit of a heterotrimeric G protein that is an essential component of the pheromone signal transduction pathway. To identify downstream component(s) of Ste4, we sought pseudo-revertants that restored mating competence to ste4 mutants. The suppressor mot2 was isolated as a recessive mutation that restored conjugational competence to a temperature-sensitive ste4 mutant and simultaneously conferred a temperature-sensitive growth phenotype. The MOT2 gene encodes a putative zinc finger protein, the deletion of which resulted in temperature-sensitive growth, increased expression of FUS1 in the absence of pheromones, and suppression of a deletion of the alpha-factor receptor. On the other hand, sterility resulting from deletion of STE4 was not suppressed by the mot2 deletion. These phenotypes are similar to those associated with temperature-sensitive mutations in CDC36 and CDC39, which are proposed to encode general negative regulators of transcription rather than factors involved in the pheromone response pathway. Deletion of MOT2 also caused increased transcription of unrelated genes such as GAL7 and PHO84. Overexpression of MOT2 suppresses the growth defect of temperature-sensitive mutations in CDC36 and CDC39. These observations suggest that Mot2 functions as a general negative regulator of transcription in the same processes as Cdc36 and Cdc39.
机译:STE4基因编码异三聚体G蛋白的β亚基,它是信息素信号转导途径的重要组成部分。为了确定Ste4的下游成分,我们寻求伪逆转体,以恢复与ste4突变体的交配能力。抑制子mot2被分离为隐性突变,可恢复对温度敏感的ste4突变体的结合能力,并同时赋予温度敏感的生长表型。 MOT2基因编码一个假定的锌指蛋白,该蛋白的缺失导致温度敏感型生长,在没有信息素的情况下FUS1的表达增加,并抑制α因子受体的缺失。另一方面,由mot4缺失不能抑制由STE4缺失引起的不育。这些表型与CDC36和CDC39中与温度敏感的突变相关的表型相似,这些表型被提议为编码一般的转录负调节子,而不是信息素应答途径中涉及的因子。 MOT2的缺失也引起无关基因例如GAL7和PHO84的转录增加。 MOT2的过表达抑制CDC36和CDC39中温度敏感突变的生长缺陷。这些观察结果表明,Mot2在与Cdc36和Cdc39相同的过程中充当转录的一般负调控因子。

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