首页> 外文期刊>Journal of the American Chemical Society >Probing the Interaction between Prostacyclin Synthase and Prostaglandin H_2 Analogues or Inhibitors via a Combination of Resonance Raman Spectroscopy and Molecular Dynamics Simulation Approaches
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Probing the Interaction between Prostacyclin Synthase and Prostaglandin H_2 Analogues or Inhibitors via a Combination of Resonance Raman Spectroscopy and Molecular Dynamics Simulation Approaches

机译:通过共振拉曼光谱和分子动力学模拟方法探索前列环素合酶与前列腺素H_2类似物或抑制剂之间的相互作用

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In an aim to probe the structure-function relationship of prostacyclin synthase (PGIS), resonance Raman (RR) spectroscopy and molecular dynamic (MD) simulation approaches have been exploited to characterize the heme conformation and heme-protein matrix interactions for human PGIS (hPGIS) and zebrafish PGIS (zPGIS) in the presence and absence of ligands. The high-frequency RR (1300- 1700 cm~-1) indicates that the heme group is in the ferric, six-coordinate, low-spin state for both resting and ligand-bound hPGIS/zPGIS. The low-frequency RR (300-500 cm"1) and MD simulation reveal a salient difference in propionate-protein matrix interactions between hPGIS and zPGIS, as evident by a predominant propionate bending vibration at 386 cm~-1 in resting hPGIS, but two vibrations near 370 and 387 cm"1 in resting zPGIS. Upon binding of a substrate analogue (U46619, U51605, or U44069), both hPGIS and zPGIS induce a distinctive perturbation of the propionate-protein matrix interactions, resulting in similar Raman shifts to ~381 cm"1. On the contrary, the bending vibration remains unchanged upon binding of inhibitor/ligand (minoxidil, clotrimazole, or miconazole), indicating that these inhibitors/ligands do not interfere with the propionate-protein matrix interactions. These results, together with subtle changes in vinyl bending modes, demonstrate drastically different RR shifts with heme conformational changes in both hPGIS and zPGIS upon different ligand bindings, suggesting that PGIS exhibits a ligand-specific heme conformational change to accommodate the substrate binding. This substrate-induced modulation of the heme conformation may confer high product fidelity upon PGIS catalysis.
机译:为了探究前列环素合酶(PGIS)的结构-功能关系,已利用共振拉曼光谱(RR)和分子动力学(MD)模拟方法来表征人类PGIS(hPGIS)的血红素构象和血红素-蛋白质基质相互作用)和斑马鱼PGIS(zPGIS)在存在和不存在配体的情况下。高频RR(1300-1700 cm〜-1)表明,对于静止和配体结合的hPGIS / zPGIS,血红素基团均处于三坐标,三坐标的低铁状态。低频RR(300-500 cm“ 1)和MD模拟揭示了hPGIS和zPGIS之间的丙酸-蛋白质基质相互作用的显着差异,这在静止的hPGIS中在386 cm〜-1处存在明显的丙酸根弯曲振动中就可以看出,但是在静止的zPGIS中,在370和387 cm“ 1附近发生了两次振动。结合底物类似物(U46619,U51605或U44069)后,hPGIS和zPGIS均引起丙酸酯-蛋白质基质相互作用的显着扰动,导致类似的拉曼位移向〜381 cm“ 1。相反,弯曲振动抑制剂/配体(米诺地尔,克霉唑或咪康唑)结合后仍保持不变,表明这些抑制剂/配体不干扰丙酸酯-蛋白质基质的相互作用,这些结果以及乙烯基弯曲模式的细微变化表明,RR有很大不同。在不同的配体结合下,hPGIS和zPGIS中的血红素构象变化都会发生变化,这表明PGIS表现出特定的配体特异性血红素构象变化,以适应底物的结合,这种底物诱导的血红素构象的调节可赋予PGIS催化较高的产物保真度。

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  • 来源
    《Journal of the American Chemical Society》 |2011年第46期|p.18870-18879|共10页
  • 作者单位

    Graduate Institute of Applied Science and Engineering;

    School of Medicine;

    School of Medicine;

    Department of Chemistry, Fu-Jen Catholic University,New Taipei City 24205, Taiwan, Republic of China;

    Department of Chemistry, Fu-Jen Catholic University,New Taipei City 24205, Taiwan, Republic of China;

    Department of Chemistry, Fu-Jen Catholic University,New Taipei City 24205, Taiwan, Republic of China;

    Department of Chemistry, National Taiwan University, Taipei, Taiwan, Republic of China;

    Department of Chemistry, National Taiwan University, Taipei, Taiwan, Republic of China;

    Division of Hematology, Department of Internal Medicine, University of Texas Health Science Center, Houston, Texas, United States;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 03:14:32

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