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将环状十八肽的构象行为与其离子载体性质和膜通透性联系起来。

Connecting the conformational behavior of cyclic octadepsipeptides with their ionophoric property and membrane permeability.

机构信息

Department of Chemistry and Applied Biosciences, ETH Zurich, Vladimir-Prelog-Weg 1-5, 8093 Zurich, Switzerland.

Veterinary Medicine Research & Development, Zoetis, 333 Portage Street, Bldg. 300, Kalamazoo, Michigan 49007, USA.

出版信息

Org Biomol Chem. 2020 Sep 23;18(36):7110-7126. doi: 10.1039/d0ob01447h.

Abstract

Cyclic octadepsipeptides such as PF1022A and its synthetic derivative emodepside exhibit anthelmintic activity with the latter sold as a commercial drug treatment against gastrointestinal nematodes for animal health use. The structure-permeability relationship of these cyclic depsipeptides that could ultimately provide insights into the compound bioavailability is not yet well understood. The fully N-methylated amide backbone and apolar sidechain residues do not allow for the formation of intramolecular hydrogen bonds, normally observed in the membrane-permeable conformations of cyclic peptides. Hence, any understanding gained on these depsipeptides would serve as a prototype for future design strategies. In previous nuclear magnetic resonance (NMR) studies, two macrocyclic core conformers of emodepside were detected, one with all backbone amides in trans-configuration (hereon referred as the symmetric conformer) and the other with one amide in cis-configuration (hereon referred as the asymmetric conformer). In addition, these depsipeptides were also reported to be ionophores with a preference of potassium over sodium. In this study, we relate the conformational behavior of PF1022A, emodepside, and closely related analogs with their ionophoric characteristic probed using NMR and molecular dynamics (MD) simulations and finally evaluated their passive membrane permeability using PAMPA. We find that the equilibrium between the two core conformers shifts more towards the symmetric conformer upon addition of monovalent cations with selectivity for potassium over sodium. Both the NMR experiments and the theoretical Markov state models based on extensive MD simulations indicate a more rigid backbone for the asymmetric conformation, whereas the symmetric conformation shows greater flexibility. The experimental results further advocate for the symmetric conformation binding the cation. The PAMPA results suggest that the investigated depsipeptides are retained in the membrane, which may be advantageous for the likely target, a membrane-bound potassium channel.

摘要

环状十八肽,如 PF1022A 及其合成衍生物埃莫德昔,具有驱虫活性,后者作为一种商业药物,用于动物健康,治疗胃肠道线虫。这些环状二肽的结构-通透性关系,可能最终提供关于化合物生物利用度的深入了解,但目前还不太清楚。完全 N-甲基酰胺骨架和非极性侧链残基不允许形成分子内氢键,而通常在环状肽的膜通透性构象中观察到氢键。因此,对这些二肽的任何理解都将成为未来设计策略的原型。在之前的核磁共振(NMR)研究中,检测到埃莫德昔的两种大环核心构象,一种是所有骨架酰胺处于反式构型(下文称为对称构象),另一种是一种酰胺处于顺式构型(下文称为不对称构象)。此外,这些二肽还被报道为具有优先选择钾离子而不是钠离子的离子载体。在这项研究中,我们将 PF1022A、埃莫德昔及其密切相关的类似物的构象行为与其离子载体特性相关联,使用 NMR 和分子动力学(MD)模拟进行研究,并最终使用 PAMPA 评估它们的被动膜通透性。我们发现,在添加单价阳离子后,两种核心构象之间的平衡更倾向于对称构象,对钾离子的选择性大于钠离子。NMR 实验和基于广泛 MD 模拟的理论 Markov 状态模型都表明,不对称构象的骨架更僵硬,而对称构象则具有更大的灵活性。实验结果进一步证明了对称构象与阳离子的结合。PAMPA 结果表明,研究中的二肽被保留在膜中,这可能对其可能的靶标,即膜结合的钾通道有利。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23f6/7796559/be83955189cd/nihms-1659706-f0002.jpg

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