Department of Bioinformatics and Genetics, Faculty of Engineering and Natural Sciences, Kadir Has University, Istanbul, Turkey.
J Biomol Struct Dyn. 2023 May;41(8):3607-3629. doi: 10.1080/07391102.2022.2054471. Epub 2022 Mar 24.
NO, or nitric oxide, is produced by a family of enzymes called nitric oxide synthase (NOS) from L-arginine. NO regulates many physiological functions such as smooth muscle relaxation, immune defense, and memory function. The overproduction of NO by the neuronal isoform of nitric oxide synthase (nNOS) is implicated in neurodegeneration and neuropathic pain, making nNOS inhibition a promising therapeutic approach. Many developed nNOS inhibitors, generally L-arginine mimetics, have some issues in selectivity and bioavailability. According to earlier studies, targeting nNOS has the advantage of decreasing excess NO in the brain while avoiding the negative consequences of inhibiting the two isozymes: endothelial NOS (eNOS) and inducible NOS (iNOS). This study applied structure-based virtual screening, molecular docking, and molecular dynamics simulations to design potent and selective inhibitors against nNOS over related isoforms (eNOS and iNOS) using human X-ray crystal structures of the NOS isoforms. It was discovered that some compounds displayed a very good inhibitory potency for hnNOS and moderate selectivity for the other isozymes, eNOS and iNOS, in addition to good solubility and desirable physiochemical properties. The compounds which showed good stability and selectivity with nNOS, such as ZINC000013485422, can be interesting and informative guidance for designing more potent human nNOS inhibitors.Communicated by Ramaswamy H. Sarma.
NO,即一氧化氮,是由一氧化氮合酶(NOS)家族从 L-精氨酸中产生的。NO 调节许多生理功能,如平滑肌松弛、免疫防御和记忆功能。神经元型一氧化氮合酶(nNOS)产生的过量 NO 与神经退行性变和神经病理性疼痛有关,因此抑制 nNOS 是一种很有前途的治疗方法。许多已开发的 nNOS 抑制剂,通常是 L-精氨酸类似物,在选择性和生物利用度方面存在一些问题。根据早期的研究,靶向 nNOS 的优点是可以减少大脑中过量的 NO,同时避免抑制两种同工酶(内皮型一氧化氮合酶[eNOS]和诱导型一氧化氮合酶[iNOS])的负面后果。本研究应用基于结构的虚拟筛选、分子对接和分子动力学模拟,使用人 NOS 同工酶的 X 射线晶体结构,设计针对 nNOS 的有效且选择性抑制剂,以对抗相关同工酶(eNOS 和 iNOS)。研究发现,除了具有良好的溶解度和理想的物理化学性质外,一些化合物对 hnNOS 具有非常好的抑制活性,对其他同工酶 eNOS 和 iNOS 具有中等选择性。与 nNOS 表现出良好稳定性和选择性的化合物,如 ZINC000013485422,可以为设计更有效的人 nNOS 抑制剂提供有趣和有益的指导。由 Ramaswamy H. Sarma 传达。