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首页> 外文期刊>Journal of Molecular Biology >Saccharomyces cerevisiae Ste50 binds the MAPKKK Ste11 through a head-to-tail SAM domain interaction
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Saccharomyces cerevisiae Ste50 binds the MAPKKK Ste11 through a head-to-tail SAM domain interaction

机译:酿酒酵母Ste50通过头尾SAM域相互作用来结合MAPKKK Ste11

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In Saccharomyces cerevisiae, signal transduction through pathways governing mating, osmoregulation, and nitrogen starvation depends upon a direct interaction between the sterile alpha motif (SAM) domains of the Ste11 mitogen-activated protein kinase kinase kinase (MAPKKK) and its regulator Ste50. Previously, we solved the NMR structure of the SAM domain from Ste11 and identified two mutants that diminished binding to the Ste50 SAM domain. Building upon the Ste11. study, we present the NMR structure of the monomeric Ste50 SAM domain and a series of mutants bearing substitutions at surface-exposed hydrophobic amino acid residues. The mid-loop (ML) region of Ste11-SAM, defined by helices H3 and H4 and the end-helix (EH) region of Ste50-SAM, defined by helix H5, were sensitive to substitution, indicating that these two surfaces contribute to the high-affinity interaction. The combination of two mutants, Ste11-SAM-L72R and Ste50-SAM-L69R, formed a high-affinity heterodimer unencumbered by competing homotypic interactions that had prevented earlier NMR studies of the wild-type complex. Yeast bearing mutations that prevented the heterotypic Ste11-Ste50 association in vitro presented signaling defects in the mating and high-osmolarity growth pathways. (c) 2005 Elsevier Ltd. All rights reserved.
机译:在酿酒酵母中,通过控制交配,渗透调节和氮饥饿的途径进行的信号转导取决于Ste11丝裂原活化的蛋白激酶激酶(MAPKKK)的无菌α模体(SAM)域与其调节剂Ste50之间的直接相互作用。以前,我们从Ste11解析了SAM结构域的NMR结构,并确定了两个与Ste50 SAM结构域结合减少的突变体。在Ste11上构建。在研究中,我们提出了Ste50 SAM单体域的NMR结构以及一系列在表面暴露的疏水氨基酸残基处带有取代基的突变体。由螺旋H3和H4定义的Ste11-SAM的中环(ML)区和由螺旋H5定义的Ste50-SAM的末端螺旋(EH)区对取代敏感,表明这两个表面有助于高亲和力互动。 Ste11-SAM-L72R和Ste50-SAM-L69R这两个突变体的组合形成了高亲和力的异二聚体,不受竞争同型相互作用的阻碍,这阻止了早期对野生型复合物的NMR研究。在体外阻止异型Ste11-Ste50关联的带有酵母的突变在交配和高渗透压生长途径中表现出信号缺陷。 (c)2005 Elsevier Ltd.保留所有权利。

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