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Structural Aspects for the Recognition of ATP by Ribonucleopeptide Receptors

机译:核糖核苷酸受体识别ATP的结构方面。

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摘要

A modular structure of ribonucleopeptide (RNP) affords a framework to construct macromolecular receptors and fluorescent sensors. We have isolated ATP-binding RNP with the minimum of nucleotides for ATP binding, in which the RNA consensus sequence is different from those reported for RNA aptamers against the ATP analogues. The three-dimensional structure of the substrate-binding complex of RNP was studied to understand the ATP-binding mechanism of RNP. A combination of NMR measurements, enzymatic and chemical mapping, and nucleotide mutation studies of the RNP-adeno-sine complex show that RNP interacts with the adenine ring of adenosine by forming a U:A:U triple with two invariant U nucleotides. The observed recognition mode for the adenine ring is different from those of RNA aptamers for ATP derivatives reported previously. The RNP-adenosine complex is folded into a particular structure by formation of the U:A:U triple and a Hoogsteen type A:U base pair. This recognition mechanism was successfully utilized to convert the substrate-binding specificity of RNP from ATP- to GTP-binding with a C~+:G:C triple recognition mode.
机译:核糖核苷酸肽(RNP)的模块化结构提供了构建大分子受体和荧光传感器的框架。我们已经分离出具有最少的ATP结合核苷酸的ATP结合RNP,其中RNA共有序列与针对ATP类似物的RNA适体报道的序列不同。研究了RNP的底物结合复合物的三维结构,以了解RNP的ATP结合机理。核磁共振测量,酶和化学作图以及RNP-腺苷复合物的核苷酸突变研究的结合表明,RNP通过与两个不变的U核苷酸形成一个U:A:U三元组与腺苷的腺嘌呤环相互作用。观察到的腺嘌呤环的识别模式与先前报道的针对ATP衍生物的RNA适体的识别模式不同。通过形成U:A:U三元组和Hoogsteen型A:U碱基对,将RNP-腺苷复合物折叠成特定结构。该识别机制已成功地利用C〜+:G:C三重识别模式将RNP的底物结合特异性从ATP-转换为GTP结合。

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  • 来源
    《Journal of the American Chemical Society》 |2011年第12期|p.4567-4579|共13页
  • 作者单位

    Institute of Advanced Energy, Kyoto University;

    Institute of Advanced Energy, Kyoto University;

    Department of Supramolecular Biology, Graduate School of Nanobioscience, Yokohama City University, 1-7-29 Suehiro-cho,Tsurumi-ku, Yokohama 230-0045, Japan;

    Institute of Advanced Energy, Kyoto University;

    Institute of Advanced Energy, Kyoto University;

    Institute of Advanced Energy, Kyoto University,CREST, JST, Uji, Kyoto 611-0011, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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