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酿酒酵母MET2基因表达的转录后调控

Posttranscriptional regulation of the expression of MET2 gene of Saccharomyces cerevisiae.

作者信息

Forlani N, Martegani E, Alberghina L

机构信息

Dipartimento di Fisiologia e Biochimica Generali, Sezione di Biochimica Comparata, Milano, Italy.

出版信息

Biochim Biophys Acta. 1991 May 2;1089(1):47-53. doi: 10.1016/0167-4781(91)90083-x.

Abstract

The first step of the specific pathway for methionine biosynthesis in the yeast Saccharomyces cerevisiae is catalyzed by the enzyme L-homoserine-O-acetyltransferase (HSTase) (EC 2.3.1.31), encoded by the MET2 gene. In order to ascertain whether there is a posttranscriptional control on the MET2 gene expression, as suggested by previous results on the expression of the cloned gene, systems for high inducible expression of MET2 gene were constructed. In these constructs the MET2 gene was cloned in yeast expression vectors under the control of an inducible yeast GAL promoter element so that the MET2 was transcribed at very high levels under induced conditions. Measurements of the specific mRNA levels showed a strong stimulation of MET2 gene transcription in yeast transformants grown on galactose as carbon source, corresponding to 50-100-fold the repressed conditions, while only a 2-fold increase of the enzymatic activity was observed. In addition, no evidence of a strong induced polypeptide of appropriate size on two dimensional gel electrophoresis was obtained. To understand the functional role of the non-coding 5' region of MET2 mRNA, we performed either a partial and a complete deletion of the 5' leader sequence, but even with these constructs an elevated mRNA level was not associated to a marked increase of the HSTase activity. These data support the idea of a posttranscriptional regulation of MET2 gene expression and show that the untranslated region of the specific mRNA is not involved in this regulatory mechanism.

摘要

酿酒酵母中甲硫氨酸生物合成特定途径的第一步由L-高丝氨酸-O-乙酰转移酶(HSTase)(EC 2.3.1.31)催化,该酶由MET2基因编码。为了确定如先前关于克隆基因表达的结果所暗示的那样,MET2基因表达是否存在转录后调控,构建了MET2基因高诱导表达系统。在这些构建体中,MET2基因被克隆到酵母表达载体中,置于可诱导的酵母GAL启动子元件的控制下,以便MET2在诱导条件下以非常高的水平转录。对特定mRNA水平的测量表明,在以半乳糖作为碳源生长的酵母转化体中,MET2基因转录受到强烈刺激,相当于在抑制条件下的50至100倍,而酶活性仅观察到2倍的增加。此外,在二维凝胶电泳上未获得适当大小的强诱导多肽的证据。为了了解MET2 mRNA非编码5'区域的功能作用,我们对5'前导序列进行了部分和完全缺失,但即使使用这些构建体,mRNA水平升高也与HSTase活性的显著增加无关。这些数据支持了MET2基因表达存在转录后调控的观点,并表明特定mRNA的非翻译区域不参与这种调控机制。

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