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Oxidative folding and preparation of α-conotoxins for use in high-throughput structure-activity relationship studies

机译:高通量结构-活性关系研究中α-芋螺毒素的氧化折叠及其制备

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摘要

α-Conotoxins are peptide neurotoxins that selectively inhibit various subtypes of nicotinic acetylcholine receptors. They are important research tools for studying numerous pharmacological disorders, with profound potential for developing drug leads for treating pain, tobacco addiction, and other conditions. They are characterized by the presence of two disulfide bonds connected in a globular arrangement, which stabilizes a bioactive helical conformation. Despite extensive structure-activity relationship studies that have produced α-conotoxin analogs with increased potency and selectivity towards specific nicotinic acetylcholine receptor subtypes, the efficient production of diversity-oriented α-conotoxin combinatorial libraries has been limited by inefficient folding and purification procedures. We have investigated the optimized conditions for the reliable folding of α-conotoxins using simplified oxidation procedures for use in the accelerated production of synthetic combinatorial libraries of α-conotoxins. To this end, the effect of co-solvent, redox reagents, pH, and temperature on the proportion of disulfide bond isomers was determined for α-conotoxins exhibiting commonly known Cys loop spacing frameworks. In addition, we have developed high-throughput 'semi-purification' methods for the quick and efficient parallel preparation of α-conotoxin libraries for use in accelerated structure-activity relationship studies. Our simplified procedures represent an effective strategy for the preparation of large arrays of correctly folded α-conotoxin analogs and permit the rapid identification of active hits directly from high-throughput pharmacological screening assays.
机译:α-芋螺毒素是肽神经毒素,可选择性抑制烟碱样乙酰胆碱受体的各种亚型。它们是研究众多药理学疾病的重要研究工具,具有开发治疗疼痛,烟草成瘾和其他疾病的药物线索的巨大潜力。它们的特征在于存在以球形排列连接的两个二硫键,其稳定了生物活性螺旋构象。尽管广泛的结构-活性关系研究已经产生了α-芋螺毒素类似物,其对特定的烟碱乙酰胆碱受体亚型具有增强的效力和选择性,但是由于折叠和纯化效率低下,限制了多样性导向的α-芋螺毒素组合文库的有效生产。我们已经使用简化的氧化程序研究了α-芋螺毒素可靠折叠的最佳条件,该程序用于加速生产α-芋螺毒素的合成组合文库。为此,对于表现出众所周知的Cys环间隔构架的α-芋螺毒素,测定了助溶剂,氧化还原试剂,pH和温度对二硫键异构体比例的影响。此外,我们还开发了高通量“半纯化”方法,用于快速有效地并行制备α-芋螺毒素文库,用于加速结构-活性关系研究。我们简化的程序代表了制备大量正确折叠的α-芋螺毒素类似物的有效策略,并可以直接从高通量药理筛选分析中快速鉴定活性成分。

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