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首页> 外文期刊>Protein Science: A Publication of the Protein Society >A novel method of affinity-purifying proteins using a bis-arsenical fluorescein.
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A novel method of affinity-purifying proteins using a bis-arsenical fluorescein.

机译:一种使用双砷荧光素亲和纯化蛋白的新方法。

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摘要

Genetically-encoded affinity tags constitute an important strategy for purifying proteins. Here, we have designed a novel affinity matrix based on the his-arsenical fluorescein dye FlAsH, which specifically recognizes short alpha-helical peptides containing the sequence CCXXCC (Griffin BA, Adams SR, Tsien RY, 1998, Science 281:269-272). We find that kinesin tagged with this cysteine-containing helix binds specifically to FlAsH resin and can be eluted in a fully active form. This affinity tag has several advantages over polyhistidine, the only small affinity tag in common use. The protein obtained with this single chromatographic step from crude Escherichia coli lysates is purer than that obtained with nickel affinity chromatography of 6xHis tagged kinesin. Moreover, unlike nickel affinity chromatography, which requires high concentrations of imidazole or pH changes for elution, protein bound to the FlAsH column can be completely eluted by dithiothreitol. Because of these mild elution conditions, FlAsH affinity chromatography is ideal for recovering fully active protein and for the purification of intact protein complexes.
机译:遗传编码的亲和标签构成了纯化蛋白质的重要​​策略。在这里,我们基于组氨酸荧光素染料FlAsH设计了一种新型亲和基质,该基质特异性识别包含序列CCXXCC的短α螺旋肽(Griffin BA,Adams SR,Tsien RY,1998,Science 281:269-272)。 。我们发现用这种含半胱氨酸的螺旋标记的驱动蛋白特异性结合FlAsH树脂,并可以完全活性的形式洗脱。该亲和标签具有优于聚组氨酸的几个优点,聚组氨酸是常用的唯一小亲和标签。通过该单一色谱步骤从粗制大肠杆菌裂解物中获得的蛋白质比通过6xHis标记的驱动蛋白的镍亲和层析获得的蛋白质要纯。此外,与镍亲和色谱法不同,镍亲和色谱法需要高浓度的咪唑或改变pH值进行洗脱,而结合到FlAsH柱上的蛋白质可以被二硫苏糖醇完全洗脱。由于这些温和的洗脱条件,FlAsH亲和色谱是回收完全活性蛋白和纯化完整蛋白复合物的理想选择。

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