Allemand F, Haentjens J, Chiaruttini C, Royer C, Springer M
UPR9073 du CNRS, l'Université de Paris VII, Institut de Biologie Physico-chimique, 13 rue Pierre et Marie Curie, 75005, Paris, France.
Nucleic Acids Res. 2007;35(9):3016-31. doi: 10.1093/nar/gkm197. Epub 2007 Apr 16.
Ribosomal protein L20 is crucial for the assembly of the large ribosomal subunit and represses the translation of its own mRNA. L20 mRNA carries two L20-binding sites, the first folding into a pseudoknot and the second into an imperfect stem and loop. These two sites and the L20-binding site on 23S ribosomal RNA are recognized similarly using a single RNA-binding site located on one face of L20. In this work, using gel filtration and fluorescence cross-correlation spectroscopy (FCCS) experiments, we first exclude the possibility that L20 forms a dimer, which would allow each monomer to bind one site of the mRNA. Secondly we show, using affinity purification and FCCS experiments, that only one molecule of L20 binds to the L20 mRNA despite the presence of two potential binding sites. Thirdly, using RNA chemical probing, we show that the two L20-binding sites are in interaction. This interaction provides an explanation for the single occupancy of the mRNA. The two interacting sites could form a single hybrid site or the binding of L20 to a first site may inhibit binding to the second. Models of regulation compatible with our data are discussed.
核糖体蛋白L20对大核糖体亚基的组装至关重要,并抑制其自身mRNA的翻译。L20 mRNA带有两个L20结合位点,第一个折叠成假结,第二个折叠成不完全的茎环结构。利用位于L20一个面上的单个RNA结合位点,这两个位点以及23S核糖体RNA上的L20结合位点被相似地识别。在这项工作中,我们通过凝胶过滤和荧光互相关光谱(FCCS)实验,首先排除了L20形成二聚体的可能性,因为二聚体可能会使每个单体结合mRNA的一个位点。其次,我们通过亲和纯化和FCCS实验表明,尽管存在两个潜在的结合位点,但只有一个L20分子与L20 mRNA结合。第三,利用RNA化学探针技术,我们表明两个L20结合位点相互作用。这种相互作用为mRNA的单占据现象提供了解释。两个相互作用的位点可能形成一个单一的杂交位点,或者L20与第一个位点的结合可能会抑制与第二个位点的结合。文中讨论了与我们的数据相符的调控模型。