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Structure of a natural guanine-responsive riboswitch complexed with the metabolite hypoxanthine

机译:天然鸟嘌呤反应性核糖开关与代谢物次黄嘌呤复合的结构

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Riboswitches are genetic regulatory elements found in the 50 untranslated region of messenger RNA that act in the absence of protein cofactors(1,2). They are broadly distributed across bacteria and account for the regulation of more than 2% of all genes in Bacillus subtilis, underscoring their importance in the control of cellular metabolism(3). The 5' untranslated region of many mRNAs of genes involved in purine metabolism and transport contain a guanine-responsive riboswitch that directly binds guanine, hypoxanthine or xanthine to terminate transcription(3,4). Here we report the crystal structure at 1.95 Angstrom resolution of the purine-binding domain of the guanine riboswitch from the xpt-pbuX operon of B. subtilis bound to hypoxanthine, a prevalent metabolite in the bacterial purine salvage pathway. This structure reveals a complex RNA fold involving several phylogenetically conserved nucleotides that create a binding pocket that almost completely envelops the ligand. Hypoxanthine functions to stabilize this structure and to promote the formation of a downstream transcriptional terminator element, thereby providing a mechanism for directly repressing gene expression in response to an increase in intracellular concentrations of metabolite.
机译:核糖开关是在信使RNA的50个非翻译区中发现的遗传调控元件,在没有蛋白质辅因子的情况下起作用(1,2)。它们广泛分布于细菌中,占枯草芽孢杆菌中所有基因的2%以上的调节,突显了它们在控制细胞代谢中的重要性(3)。参与嘌呤代谢和转运的许多基因的mRNA的5'非翻译区含有鸟嘌呤反应性核糖开关,直接结合鸟嘌呤,次黄嘌呤或黄嘌呤以终止转录(3,4)。在这里,我们报道了从枯草芽孢杆菌的xpt-pbuX操纵子与次黄嘌呤结合的鸟嘌呤核糖开关的嘌呤结合域的嘌呤结合域的晶体结构在1.95埃分辨率,该次黄嘌呤是细菌嘌呤挽救途径中的一种普遍代谢物。这种结构揭示了一个复杂的RNA折叠,涉及几个系统进化上保守的核苷酸,形成了一个几乎完全包围配体的结合袋。次黄嘌呤的功能是稳定该结构并促进下游转录终止子元件的形成,从而提供了一种机制,以响应细胞内代谢物浓度的增加而直接抑制基因表达。

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