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Pyranose Ring Transition State Is Derived from Cellobiohydrolase I Induced Conformational Stability and Glycosidic Bond Polarization

机译:吡喃糖环的过渡态源自纤维二糖水解酶I诱导的构象稳定性和糖苷键极化

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摘要

Understanding carbohydrate ring pucker is critical to rational design in materials and Pharmaceuticals. Recently we have generalized our adaptive reaction coordinate force biasing method to perform calculations on multidimensional reaction coordinates. We termed this the Free Energies from Adaptive Reaction Coordinate Forces (FEARCF) method. Using FEARCF in SCC-DFTB QM/MM non-Boltzmann simulations, we are able to calculate multidimensional ring pucker free energies of conformation. Here we apply this to the six-membered glucopyranose ring located in an eight-membered β 1-4 linked octaose oli-gosaccharide (cellooctaose). The cellooctaose was built following the conformation of the saccharides bound to cellobiohydrolase I (CBHI) of Trichoderma reesei as reported in the 7CEL crystal structure obtained from the PDB. We calculate the free energy of ring puckering of the glucopyranose ring at the -1 position in vacuum, in water, and bound to the protein. We find that the protein induces ~4E and ~4H_3 conformations that are much more stable than the usually preferred ~4C_1 conformer. Furthermore, for the ~4H_3 conformation in the catalytic binding domain, there is significant electronic rearrangement that drives the structure toward the transition state of the glycosylation reaction.
机译:了解碳水化合物环皱对于材料和药物的合理设计至关重要。最近,我们已经推广了自适应反作用力坐标偏向法,以便对多维反作用力坐标进行计算。我们称其为“自适应反作用力的自由能”(FEARCF)方法。在SCC-DFTB QM / MM non-Boltzmann模拟中使用FEARCF,我们能够计算构象的多维环褶皱自由能。在这里,我们将此方法应用于位于八元β1-4连接八糖寡糖(纤维八糖)中的六元吡喃葡萄糖环。如从PDB获得的7CEL晶体结构中所述,遵循结合里氏木霉的纤维二糖水解酶I(CBHI)的糖的构象构建纤维八糖。我们计算在真空中,在水中和与蛋白质结合的-1位置处吡喃葡萄糖环的起皱的自由能。我们发现该蛋白质诱导〜4E和〜4H_3构象,它们比通常首选的〜4C_1构象异构体稳定得多。此外,对于催化结合结构域中的〜4H_3构象,存在显着的电子重排,将结构推向糖基化反应的过渡态。

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  • 来源
    《Journal of the American Chemical Society》 |2010年第37期|p.12800-12803|共4页
  • 作者单位

    Scientific Computing Research Unit and Department of Chemistry, University of Cape Town,Rondebosch 7701, South Africa;

    rnScientific Computing Research Unit and Department of Chemistry, University of Cape Town,Rondebosch 7701, South Africa;

    rnScientific Computing Research Unit and Department of Chemistry, University of Cape Town,Rondebosch 7701, South Africa;

  • 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
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  • 入库时间 2022-08-18 03:15:51

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