首页> 美国卫生研究院文献>Journal of Bacteriology >Binding affinity and functional significance of NIT2 and NIT4 binding sites in the promoter of the highly regulated nit-3 gene which encodes nitrate reductase in Neurospora crassa.
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Binding affinity and functional significance of NIT2 and NIT4 binding sites in the promoter of the highly regulated nit-3 gene which encodes nitrate reductase in Neurospora crassa.

机译:NIT2和NIT4结合位点在高度调控的nit-3基因启动子中的结合亲和力和功能重要性该基因在crus Neurospora crassa中编码硝酸盐还原酶。

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摘要

In the filamentous fungus Neurospora crassa, both the global-acting regulatory protein NIT2 and the pathway-specific regulatory protein NIT4 are required to turn on the expression of the nit-3 gene, which encodes nitrate reductase, the first enzyme in the nitrate assimilatory pathway. Three NIT2 binding sites and two NIT4 binding sites have been identified in the 1.3-kb nit-3 promoter region via mobility shift and footprinting experiments with NIT2-beta-galactosidase and NIT4-beta-Gactosidase fusion proteins. Quantitative mobility shift assays were used to examine the affinity of individual NIT2 binding sites for the native NIT2 protein present in N. crassa nuclear extracts. In vivo analysis of nit-3 promoter 5' deletion constructs and individual NIT2 and NIT4 binding-site deletions or mutations revealed that all of the NIT2 and NIT4 binding sites are required for the full level of expression of the nit-3 gene. A cluster of two NIT2 and two NIT4 binding sites located more than 1 kb upstream of the translational start site is required for nit-3 expression, and one NIT2 binding site and one NIT4 site, which are immediately adjacent to each other, are of particular functional importance. A significant NIT2-NIT4 protein-protein interaction might occur upon their binding to nearby sites.
机译:在丝状真菌Neurospora crassa中,需要全局作用的调节蛋白NIT2和通路特异性调节蛋白NIT4来启动nit-3基因的表达,该基因编码硝酸还原酶,这是硝酸盐吸收途径中的第一个酶。 。通过使用NIT2-β-半乳糖苷酶和NIT4-β-半乳糖苷酶融合蛋白的迁移率迁移和足迹实验,已在1.3-kb nit-3启动子区域中确定了三个NIT2结合位点和两个NIT4结合位点。定量迁移率变动分析用于检查单个NIT2结合位点与景天猪笼草核提取物中天然NIT2蛋白的亲和力。 nit-3启动子5'缺失构建体以及单个NIT2和NIT4结合位点缺失或突变的体内分析显示,nit-3基因的完整表达需要所有NIT2和NIT4结合位点。 nit-3表达需要位于翻译起始位点上游1 kb以上的两个NIT2和两个NIT4结合位点的簇,并且一个NIT2结合位点和一个NIT4位点彼此紧邻非常特别功能上的重要性。 NIT2-NIT4蛋白质与蛋白质的相互作用可能会在它们与附近位点结合后发生。

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