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首页> 外文期刊>Journal of molecular recognition: JMR >Characterization of a dockerin-based affinity tag: application for purification of a broad variety of target proteins.
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Characterization of a dockerin-based affinity tag: application for purification of a broad variety of target proteins.

机译:基于dockerin的亲和标签的表征:用于纯化多种靶蛋白的应用。

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Cellulose, a major component of plant matter, is degraded by a cell surface multiprotein complex called the cellulosome produced by several anaerobic bacteria. This complex coordinates the assembly of different glycoside hydrolases, via a high-affinity Ca(2+)-dependent interaction between the enzyme-borne dockerin and the scaffoldin-borne cohesin modules. In this study, we characterized a new protein affinity tag, DeltaDoc, a truncated version (48 residues) of the Clostridium thermocellum Cel48S dockerin. The truncated dockerin tag has a binding affinity (K(A)) of 7.7 x 10(8)M(-1), calculated by a competitive enzyme-linked assay system. In order to examine whether the tag can be used for general application in affinity chromatography, it was fused to a range of target proteins, including Aequorea victoria green fluorescent protein (GFP), C. thermocellum beta-glucosidase, Escherichia coli thioesterase/protease I (TEP1), and the antibody-binding ZZ-domain from Staphylococcus aureus protein A. The results of this study significantly extend initial studies performed using the Geobacillus stearothermophilus xylanase T-6 as a model system. In addition, the enzymatic activity of a C. thermocellum beta-glucosidase, purified using this approach, was tested and found to be similar to that of a beta-glucosidase preparation (without the DeltaDoc tag) purified using the standard His-tag. The truncated dockerin derivative functioned as an effective affinity tag through specific interaction with a cognate cohesin, and highly purified target proteins were obtained in a single step directly from crude cell extracts. The relatively inexpensive beaded cellulose-based affinity column was reusable and maintained high capacity after each cycle. This study demonstrates that deletion into the first Ca(2+)-binding loop of the dockerin module results in an efficient and robust affinity tag that can be generally applied for protein purification.
机译:纤维素是植物的主要成分,被多种厌氧细菌产生的称为纤维素的细胞表面多蛋白复合物降解。该复合物通过酶携带的dockerin和支架素附着的cohesin模块之间的高亲和力Ca(2+)依赖相互作用,协调不同糖苷水解酶的组装。在这项研究中,我们表征了一种新的蛋白质亲和标签DeltaDoc,这是热纤梭菌Cel48S dockerin的截短版本(48个残基)。截短的dockerin标签具有7.7 x 10(8)M(-1)的结合亲和力(K(A)),由竞争性酶联测定系统计算得出。为了检查该标签是否可在亲和色谱中通用,将其与一系列靶蛋白融合,包括维多利亚水母绿色荧光蛋白(GFP),嗜热梭状芽孢杆菌β-葡萄糖苷酶,大肠杆菌硫酯酶/蛋白酶I (TEP1),以及来自金黄色葡萄球菌蛋白A的抗体结合ZZ结构域。这项研究的结果大大扩展了使用嗜热脂肪地芽孢杆菌木聚糖酶T-6作为模型系统进行的初始研究。另外,测试了使用这种方法纯化的热纤梭菌β-葡萄糖苷酶的酶活性,发现与使用标准His-标签纯化的β-葡萄糖苷酶制剂(无DeltaDoc标签)相似。截短的dockerin衍生物通过与同源凝聚素的特异性相互作用起有效的亲和标签的作用,并且一步一步直接从粗细胞提取物中获得了高度纯化的靶蛋白。相对便宜的珠状纤维素基亲和柱可重复使用,并在每个循环后保持高容量。这项研究表明,删除到dockerin模块的第一个Ca(2+)绑定环会导致有效和强大的亲和力标签,该标签通常可用于蛋白质纯化。

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