首页> 外文期刊>Journal of Biotechnology >Engineered proteins containing the cohesin and dockerin domains from Clostridium thermocellum provides a reversible, high affinity interaction for biotechnology applications
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Engineered proteins containing the cohesin and dockerin domains from Clostridium thermocellum provides a reversible, high affinity interaction for biotechnology applications

机译:含有热纤梭菌中黏附素和码头蛋白结构域的工程蛋白为生物技术应用提供了可逆的高亲和力相互作用

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The cohesin-dockerin interaction, which is responsible for the formation of the cellulosome complex of cellulolytic bacteria, is a calcium-dependent, high affinity interaction. In this study, the cohesin (Cip7) and dockerin (Doc) domains of Clostridium thermocellum were fused to the cellulose-binding domain (CBD) of C. cellulovorans and the antibody-binding domain, protein LG, respectively, to form CBD-Cip7 and LG-Doc. Immobilised CBD-Cip7 was able to bind LG-Doc and subsequently antibody as determined using surface plasmon resonance. Binding was reversed by the removal of Ca2+ with EDTA. The dockerin containing fusion protein was affinity purified using an immobilised cohesin domain. Elution of the LG-Doc from the cohesin column was with EDTA. This affinity chromatography was repeated using an LG-dockerin column for the purification of cohesin fusion protein. The fusion proteins created in this report have shown that the properties of the cohesin and dockerin domains can be transferred to other protein domains and that the interaction between the cohesin and dockerin is specific, Ca2+ -dependent and reversible. We have shown that the cohesin-dockerin interaction has several properties making it suitable for use in recombinant fusion protein production and purification.
机译:粘胶-dockerin相互作用是钙依赖的高亲和力相互作用,它负责形成纤维素分解细菌的纤维素体复合物。在这项研究中,热纤梭菌的黏附素(Cip7)和dockerin(Doc)结构域与C.cellulovorans的纤维素结合结构域(CBD)和抗体结合结构域蛋白LG融合,形成CBD-Cip7和LG-Doc。固定的CBD-Cip7能够结合LG-Doc,随后结合使用表面等离振子共振测定的抗体。通过用EDTA去除Ca 2+使结合逆转。使用固定的黏附素结构域亲和纯化含有dockerin的融合蛋白。用EDTA从粘着素柱洗脱LG-Doc。使用LG-dockerin柱重复此亲和色谱以纯化粘着蛋白融合蛋白。该报告中创建的融合蛋白显示,粘着蛋白和dockerin结构域的特性可以转移到其他蛋白质结构域,并且粘着蛋白和dockerin之间的相互作用是特定的,Ca2 +依赖性和可逆的。我们已经表明,cohesin-dockerin相互作用具有多种特性,使其适合用于重组融合蛋白的生产和纯化。

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