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A novel thiol-affinity micropipette tip method using zinc(II)-cyclen-attached agarose beads for enrichment of cysteine-containing molecules

机译:一种新型的硫醇亲和微量移液器吸头方法,使用附着有锌(II)-细胞周期素的琼脂糖珠富集含半胱氨酸的分子

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Cysteine-containing biomolecules are attractive targets in the study of thiol biology. Here we introduce a novel method for the selective enrichment of thiol-containing molecules using a thiol-capture zinc(II) complex of 1,4,7,10-tetraazacyclododecane (Zn2+-cyclen). Recognition of N-acetylcysteine amide by Zn2+-cyclen has been studied by potentiometric pH titration, revealing formation of a 1:1 thiolate-bound Zn2+-cyclen complex with a large thiolate-affinity constant of 10(6.2) M-1 at 25 degrees C and I = 0.10 M (NaCl). The Zn2+-bound thiolate anion is unexpectedly stable in aqueous solution at pH 7.8 under atmospheric conditions for a few days. These findings have contributed to the development of a convenient method for separation of thiol compounds by using a micropipette tip. A 200 mu L micropipette tip containing 10 mu L of hydrophilic cross-linked agarose beads attached to Zn2+-cyclen moieties was prepared. All steps for thiol-affinity separation (binding, washing, and eluting) are conducted using aqueous buffers at room temperature. The entire separation protocol requires less than 15 min per sample. We demonstrate practical example separations of cysteine-containing molecules. This micropipette tip method would be used preferentially as an alternative to existing tools for reliable enrichment of thiol-containing molecules. (C) 2016 Elsevier B.V. All rights reserved.
机译:含半胱氨酸的生物分子是硫醇生物学研究中有吸引力的目标。在这里,我们介绍一种使用1,4,7,10-四氮杂环十二烷(Zn2 + -cycln)的硫醇捕获锌(II)络合物选择性富集含硫醇分子的新方法。已通过电位pH滴定法研究了Zn2 +-环素对N-乙酰半胱氨酸酰胺的识别,发现形成了1:1硫醇键结合的Zn2 +-环素络合物,在25度下具有10(6.2)M-1的大硫醇盐亲和常数。 C和I = 0.10M(NaCl)。 Zn2 +键合的硫醇盐阴离子在大气条件下于pH值为7.8的水溶液中几天内出乎意料地稳定。这些发现有助于开发一种使用微量移液器尖端分离硫醇化合物的简便方法。制备了一个200μL的微量移液器吸头,该吸头包含10μL的亲水性交联琼脂糖珠,该珠附着在Zn2 +-环素部分上。硫醇亲和力分离的所有步骤(结合,洗涤和洗脱)均在室温下使用水性缓冲液进行。整个分离流程每个样品所需的时间少于15分钟。我们展示了含有半胱氨酸的分子的实例分离。该微量移液器吸头方法将优先用作可靠富集含硫醇分子的现有工具的替代方法。 (C)2016 Elsevier B.V.保留所有权利。

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