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Selective optimization of the Rev-binding element of HIV-1.

机译:选择性优化HIV-1的Rev结合元件。

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摘要

RNA molecules that can bind to the Rev protein of HIV-1 have been isolated from random sequence nucleic acid pools based on a minimal Rev-binding element (RBE) found within the Rev Responsive Element (RRE). While the selected sequences are related to the wild-type element, they also contain substitutions that allow them to bind Rev up to 10-fold better in vitro. A hypothesized homopurine pairing at G48:G71 is generally replaced by A48:A71; the occasional selection of C48:A71 suggests that R71 may be in a syn conformation. These data support the structural model for the RBE originally proposed by Bartel et al. (1). Additional interactions with the Rev protein are promoted by the sequence CUC ... UYGAG, found in one class of high-affinity aptamers, but absent from the wild-type element. Within each class of aptamers different residues and substructures covary with one another to generate optimal Rev-binding surfaces. The interdependencies of different nucleotide substitutions suggest structural models for both the wild-type RBE and the selected high-affinity aptamers.
机译:基于在Rev响应元件(RRE)中发现的最小Rev结合元件(RBE),已从随机序列核酸库中分离出可与HIV-1 Rev蛋白结合的RNA分子。虽然选定的序列与野生型元件有关,但它们还包含取代基,使它们在体外结合Rev的能力提高了10倍。假设的G48:G71高嘌呤配对通常被A48:A71取代; C48:A71的偶尔选择表明R71可能处于syn构象。这些数据支持了Bartel等人最初提出的RBE的结构模型。 (1)。在一类高亲和力适体中发现但在野生型元件中不存在的序列CUC ... UYGAG促进了与Rev蛋白的其他相互作用。在每一类适体中,不同的残基和亚结构彼此共存以产生最佳的Rev结合表面。不同核苷酸取代的相互依赖性提示了野生型RBE和所选高亲和力适体的结构模型。

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