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计算机模拟方法预测用于抑制犬尿氨酸3-单加氧酶的新型血脑屏障可渗透结构。

In silico methods predict new blood-brain barrier permeable structure for the inhibition of kynurenine 3-monooxygenase.

作者信息

Özkılıç Yılmaz, Tüzün Nurcan Ş

机构信息

Department of Chemistry, Faculty of Science and Letters, Istanbul Technical University, Maslak, Istanbul, 34469, Turkey.

Department of Chemistry, Faculty of Science and Letters, Istanbul Technical University, Maslak, Istanbul, 34469, Turkey.

出版信息

J Mol Graph Model. 2020 Nov;100:107701. doi: 10.1016/j.jmgm.2020.107701. Epub 2020 Aug 4.

Abstract

Kynurenine 3-monooxygenase (KMO) regulates the levels of bioactive substances in the kynurenine pathway of tryptophan catabolism and its activity is tied to so many diseases that finding an appropriate inhibitor for KMO has become an urgent task. This especially proved to be difficult for the central nervous system related diseases due to the requirement that the supposed inhibitor should be both blood brain barrier permeable and should not cause hydrogen peroxide as a harmful side product. In this in silico study, we present our step-wise approach, whose starting point is based on the important experimental observations. To tackle the problem, a library of 7561938 structures was obtained from Zinc15 database utilizing the tranche browser. From this library, a subset of 501777 structures was determined with the considerations of their functional groups that constrain their applicability. Then, the binding affinity ranking of this set of structures was determined via virtual screening. Starting from the structures whose affinities are the highest among this subset, the ADMET properties were checked through in silico methods and the binding properties of the selected inhibitor candidates were further investigated via molecular dynamics simulations and MM/GBSA calculations. According to the computational results of this study, ZINC_71915355 has passed all the evaluations and is a potentially BBB permeable structure that can inhibit KMO. Additionally, ZINC_19827377 was identified as a new potential KMO inhibitor which may be more suitable for peripheral administration. From the in silico study presented herein, ZINC_71915355 and ZINC_19827377 structures, which showed high binding affinity without harmful HO production, along with the tailored properties can now serve as powerful candidates for KMO inhibition and these hits are worth of further experimental validation.

摘要

犬尿氨酸3-单加氧酶(KMO)调节色氨酸分解代谢的犬尿氨酸途径中生物活性物质的水平,其活性与多种疾病相关,因此寻找合适的KMO抑制剂已成为一项紧迫任务。对于中枢神经系统相关疾病而言,这一任务尤其困难,因为理想的抑制剂需要具备血脑屏障通透性,且不会产生有害的副产物过氧化氢。在这项计算机模拟研究中,我们展示了逐步进行的方法,该方法始于重要的实验观察结果。为解决这一问题,利用批处理浏览器从Zinc15数据库中获取了包含7561938个结构的库。从该库中,基于其官能团对适用性的限制,确定了501777个结构的子集。然后,通过虚拟筛选确定这组结构的结合亲和力排名。从该子集中亲和力最高的结构开始,通过计算机模拟方法检查其ADMET性质,并通过分子动力学模拟和MM/GBSA计算进一步研究所选抑制剂候选物的结合性质。根据本研究的计算结果,ZINC_71915355通过了所有评估,是一种潜在的可透过血脑屏障的能够抑制KMO的结构。此外,ZINC_19827377被鉴定为一种新的潜在KMO抑制剂,可能更适合外周给药。从本文介绍的计算机模拟研究来看,ZINC_71915355和ZINC_19827377结构显示出高结合亲和力且不产生有害的HO,同时具备特定性质,现在可作为KMO抑制的有力候选物,这些命中物值得进一步的实验验证。

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