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发现蜘蛛毒液衍生的 Na1.7 抑制性 JzTx-V 肽 5-Br-Trp24 类似物 AM-6120,可系统阻断组胺诱导的瘙痒。

Discovery of Tarantula Venom-Derived Na1.7-Inhibitory JzTx-V Peptide 5-Br-Trp24 Analogue AM-6120 with Systemic Block of Histamine-Induced Pruritis.

机构信息

Therapeutic Discovery, Amgen Research , Amgen Inc. , 1120 Veterans Blvd , South San Francisco , California 94080 , United States.

出版信息

J Med Chem. 2018 Nov 8;61(21):9500-9512. doi: 10.1021/acs.jmedchem.8b00736. Epub 2018 Oct 22.

Abstract

Inhibitors of the voltage-gated sodium channel Na1.7 are being investigated as pain therapeutics due to compelling human genetics. We previously identified Na1.7-inhibitory peptides GpTx-1 and JzTx-V from tarantula venom screens. Potency and selectivity were modulated through attribute-based positional scans of native residues via chemical synthesis. Herein, we report JzTx-V lead optimization to identify a pharmacodynamically active peptide variant. Molecular docking of peptide ensembles from NMR into a homology model-derived Na1.7 structure supported prioritization of key residues clustered on a hydrophobic face of the disulfide-rich folded peptide for derivatization. Replacing Trp24 with 5-Br-Trp24 identified lead peptides with activity in electrophysiology assays in engineered and neuronal cells. 5-Br-Trp24 containing peptide AM-6120 was characterized in X-ray crystallography and pharmacokinetic studies and blocked histamine-induced pruritis in mice after subcutaneous administration, demonstrating systemic Na1.7-dependent pharmacodynamics. Our data suggests a need for high target coverage based on plasma exposure for impacting in vivo end points with selectivity-optimized peptidic Na1.7 inhibitors.

摘要

电压门控钠离子通道 Na1.7 的抑制剂因其具有强大的人类遗传学证据而被作为疼痛治疗药物进行研究。我们之前从狼蛛毒液筛选中鉴定出了 Na1.7 抑制肽 GpTx-1 和 JzTx-V。通过化学合成,通过基于属性的天然残基定位扫描来调节效力和选择性。在此,我们报告了 JzTx-V 的先导优化,以确定一种具有药效活性的肽变体。通过 NMR 对肽集合的分子对接到同源模型衍生的 Na1.7 结构支持对富二硫键折叠肽疏水面上聚集的关键残基进行衍生化的优先级排序。用 5-Br-Trp24 取代 Trp24 确定了具有工程细胞和神经元细胞中电生理学测定活性的先导肽。含有 5-Br-Trp24 的肽 AM-6120 在 X 射线晶体学和药代动力学研究中进行了表征,并在皮下给药后阻断了小鼠的组胺诱导瘙痒,证明了全身 Na1.7 依赖性药效学。我们的数据表明,需要基于血浆暴露的高靶标覆盖率,才能用选择性优化的肽类 Na1.7 抑制剂影响体内终点。

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