首页> 美国卫生研究院文献>Journal of Virology >Characterization of RNA Determinants Recognized by the Arginine- and Proline-Rich Region of Us11 a Herpes Simplex Virus Type 1-Encoded Double-Stranded RNA Binding Protein That Prevents PKR Activation
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Characterization of RNA Determinants Recognized by the Arginine- and Proline-Rich Region of Us11 a Herpes Simplex Virus Type 1-Encoded Double-Stranded RNA Binding Protein That Prevents PKR Activation

机译:Us11的精氨酸和脯氨酸丰富的区域公认的RNA决定簇的表征这是一种单纯疱疹病毒类型1编码的双链RNA结合蛋白可防止PKR激活。

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摘要

The herpes simplex virus Us11 gene product inhibits activation of the cellular PKR kinase and associates with a limited number of unrelated viral and cellular RNA molecules via a carboxyl-terminal 68-amino-acid segment rich in arginine and proline. To characterize the determinants underlying the recognition of an RNA target by Us11, we employed an in vitro selection technique to isolate RNA ligands that bind Us11 with high affinity from a population of molecules containing an internal randomized segment. Binding of Us11 to these RNA ligands is specific and appears to occur preferentially on conformational isoforms that possess a higher-order structure. While the addition of unlabeled poly(I · C) reduced binding of Us11 to a selected radiolabeled RNA, single-stranded homopolymers were not effective competitors. Us11 directly associates with poly(I · C), and inclusion of an unlabeled selected RNA in the reaction reduces poly(I · C) binding, while single-stranded RNA homopolymers have no effect. Finally, Us11 binds to defined, double-stranded RNA (dsRNA) molecules that exhibit greater sequence complexity. Binding to these dsRNA perfect duplexes displays a striking dependence on length, as 39-bp or shorter duplexes do not bind efficiently. Furthermore, this interaction is specific for dsRNA as opposed to dsDNA, implying that the Us11 RNA binding domain can distinguish nucleic acid duplexes containing 2′ hydroxyl groups from those that do not. These results establish that Us11 is a dsRNA binding protein. The arginine- and proline-rich Us11 RNA binding domain is unrelated to known dsRNA binding elements and thus constitutes a unique recognition motif that interacts with dsRNA. The ability of Us11 to bind dsRNA may be important for inhibiting activation of the cellular PKR kinase in response to dsRNA.
机译:单纯疱疹病毒Us11基因产物可抑制细胞PKR激酶的活化,并通过富含精氨酸和脯氨酸的羧基末端68个氨基酸区段与有限数量的无关病毒和细胞RNA分子缔合。为了表征由Us11识别RNA靶标的决定因素,我们采用了一种体外选择技术,从包含内部随机区段的分子中分离出以高亲和力结合Us11的RNA配体。 Us11与这些RNA配体的结合是特异性的,并且似乎优先出现在具有较高顺序结构的构象同工型上。尽管加入未标记的聚(I C)降低了Us11与选定的放射性标记的RNA的结合,但是单链均聚物并不是有效的竞争者。 Us11与聚(I·C)直接缔合,反应中包含未标记的选定RNA降低了聚(I·C)的结合,而单链RNA均聚物则没有作用。最后,Us11与确定的双链RNA(dsRNA)分子结合,这些分子表现出更高的序列复杂性。与这些dsRNA完美双链体的结合表现出对长度的显着依赖性,因为39 bp或更短的双链体无法有效结合。此外,这种相互作用对dsRNA特异于dsDNA,这与dsDNA相反,这意味着Us11 RNA结合结构域可以区分含有2'羟基的核酸双链体和不含核酸的双链体。这些结果证明Us11是dsRNA结合蛋白。富含精氨酸和脯氨酸的Us11 RNA结合域与已知的dsRNA结合元件无关,因此构成了与dsRNA相互作用的独特识别基序。 Us11结合dsRNA的能力对于抑制响应dsRNA的细胞PKR激酶的激活可能很重要。

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