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Singlet glycine riboswitches bind ligand as well as tandem riboswitches

机译:单线态甘氨酸核糖开关结合配体以及串联核糖开关

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The glycine riboswitch often occurs in a tandem architecture, with two ligand-binding domains (aptamers) followed by a single expression platform. Based on previous observations, we hypothesized that "singlet" versions of the glycine riboswitch, which contain only one aptamer domain, are able to bind glycine if appropriate structural contacts are maintained. An initial alignment of 17 putative singlet riboswitches indicated that the single consensus aptamer domain is flanked by a conserved peripheral stem loop structure. These singlets were sorted into two subtypes based on whether the active aptamer domain precedes or follows the peripheral stem loop, and an example of each subtype of singlet riboswitch was characterized biochemically. The singlets possess glycine-binding affinities comparable to those of previously published tandem examples, and the conserved peripheral domains form A-minor interactions with the single aptamer domain that are necessary for ligand-binding activity. Analysis of sequenced genomes identified a significant number of singlet glycine riboswitches. Based on these observations, we propose an expanded model for glycine riboswitch gene control that includes singlet and tandem architectures.
机译:甘氨酸核糖开关通常以串联结构存在,具有两个配体结合结构域(适体),后接一个表达平台。基于以前的观察,我们假设甘氨酸核糖开关的“单一”版本仅包含一个适体结构域,如果保持适当的结构接触,便能够结合甘氨酸。 17个推定的单线态核糖开关的初步比对表明,单个共有适体结构域的侧翼是保守的外周茎环结构。根据活性适体结构域是在外周茎环之前还是之后,将这些单线态分为两个亚型,并对每个单线态核糖开关亚型的一个实例进行生物化学表征。单线态具有与先前公开的串联实例相当的甘氨酸结合亲和力,并且保守的外围结构域与配体结合活性所必需的单个适体结构域形成A-次要相互作用。测序基因组的分析确定了大量单线态甘氨酸核糖开关。基于这些观察,我们提出了包括单线和串联结构的甘氨酸核糖开关基因控制的扩展模型。

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