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Structural insights into ligand recognition by a sensing domain of the cooperative glycine riboswitch.

机译:合作甘氨酸核糖带的感测结构域的结构见解识别配子。

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摘要

Glycine riboswitches regulate gene expression by feedback modulation in response to cooperative binding to glycine. Here, we report on crystal structures of the second glycine-sensing domain from the Vibrio cholerae riboswitch in the ligand-bound and unbound states. This domain adopts a three-helical fold that centers on a three-way junction and accommodates glycine within a bulge-containing binding pocket above the junction. Glycine recognition is facilitated by a pair of bound Mg(2+) cations and governed by specific interactions and shape complementarity with the pocket. A conserved adenine extrudes from the binding pocket and intercalates into the junction implying that glycine binding in the context of the complete riboswitch could impact on gene expression by stabilizing the riboswitch junction and regulatory P1 helix. Analysis of riboswitch interactions in the crystal and footprinting experiments indicates that adjacent glycine-sensing modules of the riboswitch could form specific interdomain interactions, thereby potentially contributing to the cooperative response.
机译:甘氨酸核糖接口通过反馈调节调节基因表达,响应于与甘氨酸的合作结合。在此,我们报告来自弧形霍乱核糖干线的第二甘氨酸传感结构域的晶体结构,在配体结合和未结合的状态下。该领域采用三螺旋折叠,在三通交叉点上以三通交界处的折叠,并在交界处上方含凸起的粘合剂袋内容纳甘氨酸。甘氨酸识别由一对结合的Mg(2+)阳离子促进,并通过特定的相互作用和与口袋的形状互补。一种保守的腺嘌呤从结合口袋挤出并插入到暗示完全核磷开关的上下文中的甘氨酸结合可以通过稳定核糖开关结和调节P1螺旋来影响基因表达。晶体和脚印实验中的核糖开关相互作用分析表明,核糖行为的相邻甘氨酸感测模块可以形成特定的互补相互作用,从而可能导致合作响应。

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