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首页> 外文期刊>Molecular and Cellular Biology >Characterization of a serum response factor-like protein in Saccharomyces cerevisiae, Rlm1, which has transcriptional activity regulated by the Mpk1 (Slt2) mitogen-activated protein kinase pathway.
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Characterization of a serum response factor-like protein in Saccharomyces cerevisiae, Rlm1, which has transcriptional activity regulated by the Mpk1 (Slt2) mitogen-activated protein kinase pathway.

机译:酿酒酵母,Rlm1中的血清反应因子样蛋白的表征,其转录活性受Mpk1(Slt2)丝裂原激活的蛋白激酶途径调节。

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The Mpk1 (Slt2) mitogen-activated protein (MAP) kinase has been implicated in several biological processes in Saccharomyces cerevisiae. The Rlm1 protein, a member of the MADS box family of transcription factors, functions downstream of Mpk1 in the pathway. To characterize the role of Rlm1 in mediating the transcriptional activation by the Mpk1 pathway, we constructed a LexA-Rlm1 deltaN chimera in which sequences, including the MADS box domain of the Rlm1 protein, were replaced by the LexA DNA binding domain and tested the ability of this chimera to activate a LexA operator-controlled reporter gene. In this assay, the Rlm1 protein was found to activate transcription in a manner regulated by the Mpk1 pathway. The Mpk1 protein kinase phosphorylated Rlm1 deltaN in vitro and the LexA-Rlm1 deltaN chimera protein was phosphorylated in vivo in a Mpk1-dependent manner. These results suggest that Mpk1 regulates the transcriptional activity of Rlm1 by directly phosphorylating it. We identified a Mpk1-like protein kinase, Mlp1, as an Rlm1-associated protein by using the yeast two-hybrid system. Overexpression of MLP1 suppresses the caffeine-sensitive phenotype of the bck1 delta mutation. The additivity of the mlp1 delta defect with the Mpk1 delta defect with regard to the caffeine sensitivity, combined with the results of genetic epistasis experiments, suggested that the activity of Rlm1 is regulated independently by Mpk1 MAP kinase and the Mlp1 MAP kinase-like kinase.
机译:Mpk1(Slt2)丝裂原激活的蛋白(MAP)激酶已牵涉到酿酒酵母中的几个生物学过程。 Rlm1蛋白是MADS盒转录因子家族的成员,在该途径中Mpk1的下游起作用。为了表征Rlm1在通过Mpk1途径介导转录激活中的作用,我们构建了LexA-Rlm1 deltaN嵌合体,其中的序列(包括Rlm1蛋白的MADS盒结构域)被LexA DNA结合结构域取代,并测试了该功能嵌合体激活LexA操纵子控制的报道基因。在该测定中,发现Rlm1蛋白以受Mpk1途径调控的方式激活转录。 Mpk1蛋白激酶在体外磷酸化Rlm1 deltaN和LexA-Rlm1 deltaN嵌合蛋白在体内以Mpk1依赖性方式磷酸化。这些结果表明,Mpk1通过直接磷酸化Rlm1来调节其转录活性。我们通过使用酵母双杂交系统将Mpk1样蛋白激酶Mlp1鉴定为Rlm1相关蛋白。 MLP1的过表达抑制了bck1 delta突变的咖啡因敏感表型。 mlp1δ缺陷与Mpk1δ缺陷在咖啡因敏感性上的可加性,再结合遗传上位实验的结果,表明Rlm1的活性受Mpk1 MAP激酶和Mlp1 MAP激酶样激酶独立调节。

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