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首页> 外文期刊>The Journal of Organic Chemistry >Synthesis of Terminal Ribose Analogues of Adenosine 5 '-Diphosphate Ribose as Probes for the Transient Receptor Potential Cation Channel TRPM2
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Synthesis of Terminal Ribose Analogues of Adenosine 5 '-Diphosphate Ribose as Probes for the Transient Receptor Potential Cation Channel TRPM2

机译:腺苷5' - 二磷酸核糖糖的末端核糖类似物的合成作为瞬态受体电位阳离子通道TRPM2的探针

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摘要

TRPM2 (transient receptor potential cation channel, subfamily M, member 2) is a nonselective cation channel involved in the response to oxidative stress and in inflammation. Its role in autoimmune and neurodegenerative diseases makes it an attractive pharmacological target. Binding of the nucleotide adenosine 5'-diphosphate ribose (ADPR) to the cytosolic NUDT9 homology (NUDT9H) domain activates the channel. A detailed understanding of how ADPR interacts with the TRPM2 ligand binding domain is lacking, hampering the rational design of modulators, but the terminal ribose of ADPR is known to be essential for activation. To study its role in more detail, we designed synthetic routes to novel analogues of ADPR and 2'-deoxy-ADPR that were modified only by removal of a single hydroxyl group from the terminal ribose. The ADPR analogues were obtained by coupling nucleoside phosphorimidazolides to deoxysugar phosphates. The corresponding C2 ''-based analogues proved to be unstable. The C1 ''- and C3 ''-ADPR analogues were evaluated electrophysiologically by patch-clamp in TRPM2-expressing HEK293 cells. In addition, a compound with all hydroxyl groups of the terminal ribose blocked as its 1 ''-beta-O-methyl-2 '',3 ''-O-isopropylidene derivative was evaluated. Removal of either C1" or C3 '' hydroxyl groups from ADPR resulted in loss of agonist activity. Both these modifications and blocking all three hydroxyl groups resulted in TRPM2 antagonists. Our results demonstrate the critical role of these hydroxyl groups in channel activation.
机译:TRPM2(瞬态受体电位阳离子通道,亚家族M,构件2)是涉及对氧化应激和炎症的反应的非选择性阳离子通道。它在自身免疫和神经退行性疾病中的作用使其成为有吸引力的药理学靶标。核苷酸腺苷5'-二磷酸核糖核糖(ADPR)与细胞溶质NUDT9同源性(NUDT9H)结构域的结合激活通道。详细了解ADPR如何与TRPM2配体结合结构域相互作用,阻碍调节剂的合理设计,但已知ADPR的末端核糖是激活的必要条件。为了更详细地研究其作用,我们设计了ADPR和2'-脱氧ADPR新型类似物的合成途径,其仅通过从末端核糖中除去单个羟基来改性。通过将核苷磷咪唑酯偶联至脱氧糖醛磷酸酯来获得ADPR类似物。相应的C2''基数类似物被证明是不稳定的。通过TRPM2表达的HEK293细胞中的膜夹来电生理学评估C1''和C3''ADPR类似物。另外,评价末端核糖核糖的所有羟基的化合物作为其1''-β-O-甲基-2',3''-O-异丙烯衍生物。从ADPR中除去C1“或C3”羟基导致激动剂活性的损失。这些修饰和阻断所有三种羟基导致TRPM2拮抗剂。我们的结果证明了这些羟基在通道活化中的关键作用。

著录项

  • 来源
    《The Journal of Organic Chemistry》 |2019年第10期|共15页
  • 作者单位

    Univ Bath Dept Pharm &

    Pharmacol Wolfson Lab Med Chem Bath BA2 7AY Avon England;

    Univ Oxford Dept Pharmacol Med Chem &

    Drug Discovery Mansfield Rd Oxford OX1 3QT England;

    Univ Med Ctr Hamburg Eppendorf Dept Biochem &

    Mol Cell Biol Calcium Signalling Grp Martinistr 52 D-20246 Hamburg Germany;

    Univ Med Ctr Hamburg Eppendorf Dept Biochem &

    Mol Cell Biol Calcium Signalling Grp Martinistr 52 D-20246 Hamburg Germany;

    Univ Med Ctr Hamburg Eppendorf Dept Biochem &

    Mol Cell Biol Calcium Signalling Grp Martinistr 52 D-20246 Hamburg Germany;

    Univ Oxford Dept Pharmacol Med Chem &

    Drug Discovery Mansfield Rd Oxford OX1 3QT England;

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

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