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Long-range pseudoknot interactions dictate the regulatory response in the tetrahydrofolate riboswitch

机译:远程假结相互作用决定了四氢叶酸核糖开关中的调节反应

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摘要

Tetrahydrofolate (THF), a biologically active form of the vitamin folate (B9), is an essential cofactor in one-carbon transfer reactions. In bacteria, expression of folate-related genes is controlled by feedback modulation in response to specific binding of THF and related compounds to a riboswitch. Here, we present the X-ray structures of the THF-sensing domain from the Eubacterium sir-aeum riboswitch in the ligand-bound and unbound states. The structure reveals an "inverted" three-way junctional architecture, most unusual for riboswitches, with the junction located far from the regulatory helix P1 and not directly participating in helix P1 formation. Instead, the three-way junction, stabilized by binding to the ligand, aligns the riboswitch stems for long-range tertiary pseudoknot interactions that contribute to the organization of helix P1 and therefore stipulate the regulatory response of the riboswitch. The pterin moiety of the ligand docks in a semiopen pocket adjacent to the junction, where it forms specific hydrogen bonds with two moderately conserved pyrimidines. The amino-benzoate moiety stacks on a guanine base, whereas the glutamate moiety does not appear to make strong interactions with the RNA. In contrast to other riboswitches, these findings demonstrate that the THF riboswitch uses a limited number of available determinants for ligand recognition. Given that modern antibiotics target folate metabolism, the THF riboswitch structure provides insights on mechanistic aspects of riboswitch function and may help in manipulating THF levels in pathogenic bacteria.
机译:四氢叶酸(THF)是维生素叶酸(B9)的生物活性形式,是一碳转移反应中必不可少的辅助因子。在细菌中,响应于THF和相关化合物与核糖开关的特异性结合,通过反馈调节来控制叶酸相关基因的表达。在这里,我们介绍了来自Eubacterium sir-aeum核糖开关的THF感应域在配体结合和未结合状态下的X射线结构。该结构揭示了一种“倒置”三向连接结构,这对于核糖开关来说是最不常见的,其连接位置远离调节螺旋P1,并且不直接参与螺旋P1的形成。取而代之的是,通过与配体结合而稳定的三向连接使核糖开关的茎对准长距离的第三级假结相互作用,这有助于螺旋P1的组织,因此规定了核糖开关的调节反应。配体的蝶呤部分在与连接处相邻的半开放口袋中停靠,在其中与两个中度保守的嘧啶形成特定的氢键。氨基苯甲酸酯部分堆叠在鸟嘌呤碱基上,而谷氨酸部分似乎并未与RNA产生强相互作用。与其他核糖开关相反,这些发现表明,THF核糖开关使用有限数量的可用决定簇进行配体识别。鉴于现代抗生素靶向叶酸代谢,因此THF核糖开关结构提供了有关核糖开关功能机制方面的见识,并可能有助于操纵致病细菌中的THF水平。

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  • 作者单位

    Structural Biology Program, Memorial Sloan-Kettering Cancer Center, 1275 York Avenue, New York, NY, 10065;

    Structural Biology Program, Memorial Sloan-Kettering Cancer Center, 1275 York Avenue, New York, NY, 10065;

    Structural Biology Program, Memorial Sloan-Kettering Cancer Center, 1275 York Avenue, New York, NY, 10065;

    Structural Biology Program, Memorial Sloan-Kettering Cancer Center, 1275 York Avenue, New York, NY, 10065,Present address: Department of Biochemistry, New York University School of Medicine,New York, NY 10016;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    rna structure; vitamin b9; tetrahydrobiopterin; coenzyme;

    机译:RNA结构维生素b9;四氢生物蝶呤辅酶;
  • 入库时间 2022-08-18 00:40:54

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