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粟酒裂殖酵母的Spc1丝裂原活化蛋白激酶对Mts1-Mts2依赖的ade6-M26减数分裂重组热点及发育决定的调控

Regulation of the Mts1-Mts2-dependent ade6-M26 meiotic recombination hot spot and developmental decisions by the Spc1 mitogen-activated protein kinase of fission yeast.

作者信息

Kon N, Schroeder S C, Krawchuk M D, Wahls W P

机构信息

Departments of Biochemistry, Vanderbilt University School of Medicine, Nashville, Tennessee 37232-0146, USA.

出版信息

Mol Cell Biol. 1998 Dec;18(12):7575-83. doi: 10.1128/MCB.18.12.7575.

Abstract

The M26 meiotic recombination hot spot in the ade6 gene of Schizosaccharomyces pombe is activated by the heterodimeric M26 binding protein Mts1-Mts2. The individual Mts1 (Atf1, Gad7) and Mts2 (Pcr1) proteins are also transcription factors involved in developmental decisions. We report that the Mts proteins are key effectors of at least two distinct classes of developmental decisions regulated by the mitogen-activated protein (MAP) kinase cascade. The first class (osmoregulation, spore viability, and spore quiescence) requires the Spc1 MAP kinase and the Mts1 protein but does not require the Mts2 protein. The second class (mating, meiosis, and recombination hot spot activation) requires the Spc1 kinase and the Mts1-Mts2 heterodimer. Northern and Western blotting eliminated any significant role for the Spc1 kinase in regulating the expression levels of the Mts proteins. Gel mobility shift experiments indicated that the Mts1-Mts2 heterodimer does not need to be phosphorylated to bind to ade6-M26 DNA in vitro. However, in vivo dimethyl sulfate footprinting demonstrated that protein-DNA interaction within cells is dependent upon the Spc1 MAP kinase, which phosphorylates the Mts1 protein. Thus, the Spc1 kinase helps regulate the effector activities of the Mts1-Mts2 heterodimer in part by modulating its ability to occupy the M26 DNA site in vivo. Meiotic recombination hot spot function is likely the result of DNA conformational changes imparted by binding of the Mts1-Mts2 meiotic transcription factor.

摘要

粟酒裂殖酵母ade6基因中的M26减数分裂重组热点由异源二聚体M26结合蛋白Mts1 - Mts2激活。单个的Mts1(Atf1,Gad7)和Mts2(Pcr1)蛋白也是参与发育决策的转录因子。我们报道,Mts蛋白是由丝裂原活化蛋白(MAP)激酶级联调节的至少两类不同发育决策的关键效应因子。第一类(渗透调节、孢子活力和孢子静止)需要Spc1 MAP激酶和Mts1蛋白,但不需要Mts2蛋白。第二类(交配、减数分裂和重组热点激活)需要Spc1激酶和Mts1 - Mts2异源二聚体。Northern印迹和Western印迹排除了Spc1激酶在调节Mts蛋白表达水平方面的任何显著作用。凝胶迁移率变动实验表明,Mts1 - Mts2异源二聚体在体外结合ade6 - M26 DNA时不需要磷酸化。然而,体内硫酸二甲酯足迹法表明,细胞内的蛋白质 - DNA相互作用依赖于Spc1 MAP激酶,它可使Mts1蛋白磷酸化。因此,Spc1激酶部分地通过调节其在体内占据M26 DNA位点的能力来帮助调节Mts1 - Mts2异源二聚体的效应器活性。减数分裂重组热点功能可能是由Mts1 - Mts2减数分裂转录因子结合所赋予的DNA构象变化的结果。

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