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Crystal structure of the bacteriophage qβ coat protein in complex with the rna operator of the replicase gene

机译:与复制酶基因的rna操纵子复合的噬菌体qβ外壳蛋白的晶体结构

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The coat proteins of single-stranded RNA bacteriophages specifically recognize and bind to a hairpin structure in their genome at the beginning of the replicase gene. The interaction serves to repress the synthesis of the replicase enzyme late in infection and contributes to the specific encapsidation of phage RNA. While this mechanism is conserved throughout the Leviviridae family, the coat protein and operator sequences from different phages show remarkable variation, serving as prime examples for the co-evolution of protein and RNA structure. To better understand the protein-RNA interactions in this virus family, we have determined the three-dimensional structure of the coat protein from bacteriophage Qβ bound to its cognate translational operator. The RNA binding mode of Qβ coat protein shares several features with that of the widely studied phage MS2, but only one nucleotide base in the hairpin loop makes sequence-specific contacts with the protein. Unlike in other RNA phages, the Qβ coat protein does not utilize an adenine-recognition pocket for binding a bulged adenine base in the hairpin stem but instead uses a stacking interaction with a tyrosine side chain to accommodate the base. The extended loop between β strands E and F of Qβ coat protein makes contacts with the lower part of the RNA stem, explaining the greater length dependence of the RNA helix for optimal binding to the protein. Consequently, the complex structure allows the proposal of a mechanism by which the Qβ coat protein recognizes and discriminates in favor of its cognate RNA.
机译:单链RNA噬菌体的外壳蛋白在复制酶基因开始时特异性识别并结合其基因组中的发夹结构。相互作用用于在感染后期抑制复制酶的合成,并有助于噬菌体RNA的特异性衣壳化。尽管该机制在整个Leviviridae家族中都得到了保留,但来自不同噬菌体的外壳蛋白和操纵基因序列却表现出显着的变异,是蛋白质和RNA结构共同进化的主要例证。为了更好地了解该病毒家族中的蛋白质-RNA相互作用,我们从噬菌体Qβ与其同源翻译操纵子结合后确定了外壳蛋白的三维结构。 Qβ外壳蛋白的RNA结合模式与被广泛研究的噬菌体MS2具有几个特征,但是发夹环中只有一个核苷酸碱基与该蛋白发生序列特异性接触。与其他RNA噬菌体不同,Qβ外壳蛋白不利用腺嘌呤识别袋来结合发夹茎中膨大的腺嘌呤碱基,而是利用与酪氨酸侧链的堆积相互作用来容纳该碱基。 Qβ外壳蛋白的β链E和F之间的延伸环与RNA茎的下部接触,这说明RNA螺旋对蛋白质的最佳结合具有更大的长度依赖性。因此,复杂的结构允许提出一种机制,通过该机制,Qβ外壳蛋白可以识别和区分有利于其同源RNA的蛋白质。

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