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SparcleQC:用于蛋白质-配体复合物QM/MM研究的自动输入文件创建

SparcleQC: Automated Input File Creation for QM/MM Studies of Protein:Ligand Complexes.

作者信息

Glick Caroline S, Berry Isabel P, Sherrill C David

机构信息

Center for Computational Molecular Science and Technology, School of Chemistry and Biochemistry, and School of Computational Science and Engineering, Georgia Institute of Technology, Atlanta, Georgia 30332-0400 United States.

出版信息

J Chem Inf Model. 2025 Jul 14;65(13):6433-6440. doi: 10.1021/acs.jcim.5c00617. Epub 2025 Jun 17.

Abstract

SparcleQC is a Python package that, given a protein:ligand complex in the Protein Data Bank (PDB) file format, can create quantum mechanics/molecular mechanics (QM/MM)-like input files for the electronic structure theory packages Psi4, Q-Chem, and NWChem. The resulting input files include quantum mechanical representations of the ligand and a small section of the protein, surrounded by point charges that represent the rest of the protein. Creation of these QM/MM input files includes cutting and capping the QM subregion, obtaining point charges for the protein, and adjusting charges at the QM/MM boundary; and each of these tasks are automated by the software. In this article, we describe the details of SparcleQC's procedure, show examples of the Python API, and explain additional features that are helpful in protein:ligand interaction studies. Finally, we show that SparcleQC enables automated preparation of input files for QM/MM calculations, which can return can return accurate interaction energies in minutes, while a fully quantum mechanical computation on the protein:ligand complex could take days, if it is even possible.

摘要

SparcleQC是一个Python软件包,它能根据蛋白质数据银行(PDB)文件格式的蛋白质:配体复合物,为电子结构理论软件包Psi4、Q-Chem和NWChem创建类似量子力学/分子力学(QM/MM)的输入文件。生成的输入文件包括配体和一小部分蛋白质的量子力学表示,周围是代表蛋白质其余部分的点电荷。这些QM/MM输入文件的创建包括切割和封端QM子区域、获取蛋白质的点电荷以及调整QM/MM边界处的电荷;并且软件会自动执行这些任务中的每一项。在本文中,我们描述了SparcleQC程序的细节,展示了Python应用程序编程接口(API)的示例,并解释了有助于蛋白质:配体相互作用研究的其他功能。最后,我们表明SparcleQC能够自动准备用于QM/MM计算的输入文件,这种计算可以在几分钟内返回准确的相互作用能,而对蛋白质:配体复合物进行完全量子力学计算即使可行也可能需要数天时间。

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