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丝裂原活化蛋白激酶信号通路的动力学与组织架构

Dynamics and organization of MAP kinase signal pathways.

作者信息

Errede B, Cade R M, Yashar B M, Kamada Y, Levin D E, Irie K, Matsumoto K

机构信息

Department of Biochemistry and Biophysics, University of North Carolina at Chapel Hill 27599-7260, USA.

出版信息

Mol Reprod Dev. 1995 Dec;42(4):477-85. doi: 10.1002/mrd.1080420416.

Abstract

In the budding yeast, Saccharomyces cerevisiae, four separate but structurally related mitogen-activated protein kinase (MAPK) activation pathways are known. The best understood of these regulates mating. Pheromone binding to receptor informs cells of the proximity of a mating partner and induces differentiation to a mating competent state. The MAPK activation cascade mediating this signal is made up of Ste11 (a MEK kinase [MEKK]), Ste7 (a MAPK/ERK kinase [MEK]), and the redundant MAPK-related Fus3 and Kss1 enzymes. Another MAPK activation pathway is important for cell integrity and regulates cell wall construction. This cascade consists of Bck1 (a MEKK), the redundant Mkk1 and Mkk2 enzymes (MEKs), and Mpk1 (a MAPK). We exploited these two pathways to learn about the coordination and signal transmission fidelity of MAPK activation cascades. Two lines of evidence suggest that the activities of the mating and cell integrity pathways are coordinated during mating differentiation. First, cells deficient in Mpk1 are susceptible to lysis when they make a mating projection in response to pheromone. Second, Mpk1 activation during pheromone induction coincides with projection formation. The mechanism underlying this coordination is still unknown to us. Our working model is that projection formation generates a mobile second messenger for activation of the cell integrity pathway. Analysis of a STE7 mutation gave us some unanticipated but important insights into parameters important for fidelity of signal transmission. The Ste7 variant has a serine to proline substitution at position 368. Ste7-P368 has higher basal activity than the wild-type enzyme but still requires Ste11 for its function. Additionally, the proline substitution enables the variant to transmit the signal from mammalian Raf expressed in yeast. This novel activity suggests that Ste7-P368 is inherently more permissive than Ste7 in its interactions with MEKKs. Yet, Ste7-P368 cross function in the cell integrity pathway occurs only when it is highly overproduced or when Ste5 is missing. This behavior suggests that Ste5, which has been proposed to be a tether for the kinases in the mating pathway, contributes to Ste7 specificity and fidelity of signal transmission.

摘要

在芽殖酵母酿酒酵母中,已知有四条独立但结构相关的丝裂原活化蛋白激酶(MAPK)激活途径。其中研究最透彻的是调节交配的途径。信息素与受体结合会告知细胞交配伙伴的接近程度,并诱导细胞分化为具备交配能力的状态。介导此信号的MAPK激活级联由Ste11(一种MEK激酶[MEKK])、Ste7(一种MAPK/ERK激酶[MEK])以及冗余的与MAPK相关的Fus3和Kss1酶组成。另一条MAPK激活途径对细胞完整性很重要,并调节细胞壁构建。该级联由Bck1(一种MEKK)、冗余的Mkk1和Mkk2酶(MEKs)以及Mpk1(一种MAPK)组成。我们利用这两条途径来了解MAPK激活级联的协调和信号传递保真度。有两条证据表明,交配和细胞完整性途径的活性在交配分化过程中是协调的。首先,缺乏Mpk1的细胞在响应信息素形成交配突起时易发生裂解。其次,信息素诱导过程中Mpk1的激活与突起形成同时发生。我们仍不清楚这种协调背后的机制。我们的工作模型是,突起形成会产生一种可移动的第二信使,用于激活细胞完整性途径。对STE7突变的分析让我们对信号传递保真度的重要参数有了一些意外但重要的见解。Ste7变体在第368位有丝氨酸到脯氨酸的替换。Ste7-P368的基础活性比野生型酶高,但仍需要Ste11发挥其功能。此外,脯氨酸替换使该变体能够传递来自酵母中表达的哺乳动物Raf的信号。这种新活性表明,Ste7-P368在与MEKKs的相互作用中本质上比Ste7更宽松。然而,Ste7-P368在细胞完整性途径中的交叉功能仅在其大量过量表达或Ste5缺失时才会出现。这种行为表明,曾被认为是交配途径中激酶系绳的Ste5,有助于Ste7的特异性和信号传递保真度。

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