首页> 外国专利> FE-S FUSION PROTEIN ACTING AS ELECTRON TRANSFER CHAIN, NOVEL CARBON MONOXIDE FORMATE REDOX ENZYME MEDIATED THROUGH FES FUSION PROTEIN, NOVEL STRAIN BCF12 DERIVED FROM THERMOCOCCUS WHEREIN ENZYME IS TRANSFORMED, AND USE THEREOF

FE-S FUSION PROTEIN ACTING AS ELECTRON TRANSFER CHAIN, NOVEL CARBON MONOXIDE FORMATE REDOX ENZYME MEDIATED THROUGH FES FUSION PROTEIN, NOVEL STRAIN BCF12 DERIVED FROM THERMOCOCCUS WHEREIN ENZYME IS TRANSFORMED, AND USE THEREOF

机译:用作电子转移链的FE-S融合蛋白,通过FES融合蛋白介导的新型一氧化碳甲酸酯氧化还原酶,源自转化了酶的热球菌的新菌株BCF12,并使用了它们

摘要

The present invention relates to a Fe-S fusion protein acting as an electron transfer chain, a novel carbon monoxide formate redox enzyme mediated through a FeS fusion protein, a novel strain BCF12 derived from Thermococcus wherein an enzyme is transformed, and use thereof. The Fe-S fusion protein of the present invention, by mediating itself, physically directly binds two different enzymes, so that electrons generated in either of the enzymes can be directly transferred to the other enzyme through a Fe-S cluster of the Fe-S fusion protein. Thus, by directly supplying the electrons necessary for the production of a target substance, a high-efficiency production reaction of the target substance without leakage of electrons generated by either of the enzymes is possible. In addition, the present invention has the advantages that the overall enzyme reaction rate and yield can be significantly improved by using a new electron transfer reaction that did not previously exist, and the stability of each enzyme can also be ensured by allowing the enzymes to be physically fixed within a cell.
机译:本发明涉及作为电子转移链的Fe-S融合蛋白,通过FeS融合蛋白介导的新型一氧化碳甲酸氧化还原酶,衍生自热球菌的新型菌株BCF12及其酶的用途。通过自身介导,本发明的Fe-S融合蛋白物理上直接结合两种不同的酶,使得在任一种酶中产生的电子可以通过Fe-S的Fe-S簇直接转移到另一种酶上。融合蛋白。因此,通过直接提供产生目标物质所必需的电子,可以实现目标物质的高效生产反应而不会泄漏任何一种酶产生的电子。另外,本发明的优点在于,通过使用以前不存在的新的电子转移反应,可以显着提高总的酶反应速率和产率,并且还可以通过允许酶被加入来确保每种酶的稳定性。物理上固定在一个单元内。

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