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从广泛的自由能计算中研究人嘌呤核苷磷酸化酶抑制剂复合物的结合热力学和相互作用模式。

Binding thermodynamics and interaction patterns of human purine nucleoside phosphorylase-inhibitor complexes from extensive free energy calculations.

机构信息

State Key Laboratory of Precision Spectroscopy, School of Physics and Electronic Science, East China Normal University, Shanghai, 200062, China.

College of Engineering, Hebei Normal University, Shijiazhuang, 050024, China.

出版信息

J Comput Aided Mol Des. 2021 May;35(5):643-656. doi: 10.1007/s10822-021-00382-w. Epub 2021 Mar 24.

Abstract

Human purine nucleoside phosphorylase (hPNP) plays a significant role in the catabolism of deoxyguanosine. The trimeric protein is an important target in the treatment of T-cell cancers and autoimmune disorders. Experimental studies on the inhibition of the hPNP observe that the first ligand bound to one of three subunits effectively inhibits the protein, while the binding of more ligands to the subsequent sites shows negative cooperativities. In this work, we performed extensive end-point and alchemical free energy calculations to determine the binding thermodynamics of the trimeric protein-ligand system. 13 Immucillin inhibitors with experimental results are under calculation. Two widely accepted charge schemes for small molecules including AM1-BCC and RESP are adopted for ligands. The results of RESP are in better agreement with the experimental reference. Further investigations of the interaction networks in the protein-ligand complexes reveal that several residues play significant roles in stabilizing the complex structure. The most commonly observed ones include PHE200, GLU201, MET219, and ASN243. The conformations of the protein in different protein-ligand complexes are observed to be similar. We expect these insights to aid the development of potent drugs targeting hPNP.

摘要

人嘌呤核苷磷酸化酶(hPNP)在脱氧鸟苷的分解代谢中起着重要作用。三聚体蛋白是治疗 T 细胞癌和自身免疫性疾病的重要靶点。对 hPNP 抑制作用的实验研究表明,第一个配体与三个亚基中的一个有效结合可有效抑制该蛋白,而更多配体与后续结合位点的结合则表现出负协同性。在这项工作中,我们进行了广泛的终点和变分自由能计算,以确定三聚体蛋白-配体系统的结合热力学。13 种具有实验结果的 Immucillin 抑制剂正在计算中。两种广泛接受的小分子电荷方案,包括 AM1-BCC 和 RESP,被用于配体。RESP 的结果与实验参考值更吻合。对蛋白-配体复合物中相互作用网络的进一步研究表明,有几个残基在稳定复合物结构方面起着重要作用。最常见的残基包括 PHE200、GLU201、MET219 和 ASN243。观察到不同蛋白-配体复合物中的蛋白构象相似。我们期望这些见解能有助于开发针对 hPNP 的有效药物。

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