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Application of QM/MM and QM methods to investigate histone deacetylase 8

机译:QM / MM和QM方法在组蛋白脱乙酰基酶研究中的应用8

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Computational chemistry plays an important supporting role in the early stages of drug discovery research. Such methods are not without flaws, however they can be very useful in the development and testing of hypothesises as well as prioritizing aspects of the exploration process. In this paper we discuss some common issues with employing hybrid quantum mechanical/molecular mechanical (QM/MM) methods in certain drug discovery applications. The QM/MM method provides a means to simulate large biological systems for moderate computational cost. We use the method to assess the metalloproteins, human deacetylases (HDACs), which are targets for a variety of medical conditions including neurodegenerative diseases and HIV infection. Metalloproteins in particular are a challenge to simulate using the rapid empirical methods preferred in the pharmaceutical industry. We report the use of a QM/MM scheme of only moderate computational cost to explore the active site as well as its catalytic reaction. We also demonstrate the value of the method over smaller QM clusters and show that the method is capable of describing the kinetic differences associated with replacing Zn2+ with other metal co-factors.
机译:计算化学在药物发现研究的早期阶段起着重要的辅助作用。这样的方法并非没有缺陷,但是它们对于假设的开发和检验以及对勘探过程的优先级排序非常有用。在本文中,我们讨论了在某些药物发现应用中采用混合量子力学/分子力学(QM / MM)方法的一些常见问题。 QM / MM方法提供了一种以中等计算成本模拟大型生物系统的方法。我们使用该方法评估金属蛋白,人类脱乙酰基酶(HDAC),它们是包括神经退行性疾病和HIV感染在内的多种医学疾病的靶标。特别是金属蛋白是使用制药工业中优选的快速经验方法进行模拟的挑战。我们报告使用仅适度的计算成本的QM / MM方案来探索活性位点及其催化反应。我们还证明了该方法在较小的QM簇上的价值,并表明该方法能够描述与用其他金属辅助因子替代Zn2 +相关的动力学差异。

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