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The structure of the SAM/SAH-binding riboswitch

机译:SAM / SAH结合riboswitch的结构

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摘要

S-adenosylmethionine (SAM) is a central metabolite since it is used as a methyl group donor in many different biochemical reactions. Many bacteria control intracellular SAM concentrations using riboswitch-based mechanisms. A number of structurally different riboswitch families specifically bind to SAM and mainly regulate the transcription or the translation of SAM-biosynthetic enzymes. In addition, a highly specific riboswitch class recognizes S-adenosylhomocysteine (SAH)the product of SAM-dependent methyl group transfer reactionsand regulates enzymes responsible for SAH hydrolysis. High-resolution structures are available for many of these riboswitch classes and illustrate how they discriminate between the two structurally similar ligands SAM and SAH. The so-called SAM/SAH riboswitch class binds both ligands with similar affinities and is structurally not yet characterized. Here, we present a high-resolution nuclear magnetic resonance structure of a member of the SAM/SAH-riboswitch class in complex with SAH. Ligand binding induces pseudoknot formation and sequestration of the ribosome binding site. Thus, the SAM/SAH-riboswitches are translational OFF'-switches. Our results establish a structural basis for the unusual bispecificity of this riboswitch class. In conjunction with genomic data our structure suggests that the SAM/SAH-riboswitches might be an evolutionary late invention and not a remnant of a primordial RNA-world as suggested for other riboswitches.
机译:S-腺苷甲基硫氨酸(SAM)是中央代谢物,因为它在许多不同的生物化学反应中用作甲基供体。许多细菌使用基于核糖开关的机制控制细胞内的SAM浓度。许多结构不同的核糖家族特异性结合SAM,主要调节SAM-生物合成酶的转录或翻译。此外,高度特异性的Riboswitch类别识别S-腺眼囊肌细胞(SAH)SAM依赖性甲基转移反应的产物调节负责SAH水解的酶。高分辨率结构可用于许多这些Riboswitch类,并说明它们如何区分两个结构类似的配体SAM和SAH。所谓的Sam / Sah Riboswitch类与具有类似亲和力的配体结合,并且在结构上尚未表征。在这里,我们展示了SAM / SAH-RIBOSWITCH类成员的高分辨率核磁共振结构,其与SAH复合物。配体结合诱导核糖瘤结合位点的伪核不形成和螯合。因此,SAM / SAH-RIBOSWITCHS是平移的开关。我们的结果为此Riboswitch课程的不寻常的双特异性建立了结构依据。与基因组数据相结合,我们的结构表明Sam / Sah-Riboswitch可能是一种进化的晚期发明,而不是对其他核糖开关的原始RNA世界的遗留物。

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  • 来源
    《Nucleic Acids Research》 |2019年第5期|共12页
  • 作者单位

    Goethe Univ Frankfurt Inst Mol Biosci Max von Laue Str 9 D-60438 Frankfurt Germany;

    Goethe Univ Frankfurt Inst Mol Biosci Max von Laue Str 9 D-60438 Frankfurt Germany;

    Goethe Univ Frankfurt Inst Mol Biosci Max von Laue Str 9 D-60438 Frankfurt Germany;

    Univ Innsbruck Ctr Mol Biosci CMBI Inst Organ Chem Innrain 80-82 A-6020 Innsbruck Austria;

    Univ Innsbruck Ctr Mol Biosci CMBI Inst Organ Chem Innrain 80-82 A-6020 Innsbruck Austria;

    Univ Innsbruck Ctr Mol Biosci CMBI Inst Organ Chem Innrain 80-82 A-6020 Innsbruck Austria;

    Univ Leipzig Inst Informat Bioinformat Grp Dept Comp Sci Hartelstr 16-18 D-04107 Leipzig Germany;

    Univ Innsbruck Ctr Mol Biosci CMBI Inst Organ Chem Innrain 80-82 A-6020 Innsbruck Austria;

    Goethe Univ Frankfurt Inst Mol Biosci Max von Laue Str 9 D-60438 Frankfurt Germany;

    Goethe Univ Frankfurt Inst Mol Biosci Max von Laue Str 9 D-60438 Frankfurt Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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