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首页> 外文期刊>Small >Novel biocatatysts based on S-Layer self-assembly of Geobacillus Stearothermophilus NRS 2004/3a: A nano biotech nologicat approach
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Novel biocatatysts based on S-Layer self-assembly of Geobacillus Stearothermophilus NRS 2004/3a: A nano biotech nologicat approach

机译:基于嗜热脂肪热地芽孢杆菌NRS 2004 / 3a的S层自组装的新型生物催化剂:一种纳米生物技术常规方法

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The crystalline cell-surface (S) layer sgsE of Geobacillus stearothermo -philus NRS 200413a represents a natural Protein self-assembly system with nanometer-scale periodicity that is evaluated as a combined carrier/ patterning element for the conception of novel types of biocatalyst aiming at the controllable display of biocatalytic epitopes, storage stability, and reuse. The glucose-1-phosphate thymidylyltransferase RmlA is used as a model enzyme and chimeric proteins are constructed by translational fusion of rmlA to the C-terminus of truncated forms of sgsE (rSgsE(131-903), rSgsE(331-903)) and used for the construction of three principal types of biocatalysts: soluble (monomeric), self-assembled in aqueous solution, and recrystallized on negatively charged liposomes. Enzyme activity of the biocatalysts reaches up to 100% compared to sole RmlA cloned from the same bacterium. The S-layer portion of the biocatalysts confers significantly improved shelf life to the fused enzyme without loss of activity over more than three months, and also enables biocatalyst recycling. These nanopatterned composites may open up new functional concepts for biocatalytic applications in nanobiotechnology.
机译:嗜热脂肪芽孢杆菌-NRS 200413a的结晶细胞表面(s)层sgsE代表具有纳米级周期性的天然蛋白质自组装系统,该系统被评估为结合载体/构图元素,用于新型生物催化剂的构想。可控制的生物催化表位显示,储存稳定性和再利用。将葡萄糖-1-磷酸胸苷基转移酶RmlA用作模型酶,并通过rmlA与sgsE(rSgsE(131-903),rSgsE(331-903)和用于构建三种主要类型的生物催化剂:可溶性(单体),在水溶液中自组装并在带负电荷的脂质体上重结晶。与从同一细菌克隆的唯一RmlA相比,生物催化剂的酶活性高达100%。生物催化剂的S层部分可大大延长融合酶的保质期,并且在超过三个月的时间内不会失去活性,并且还可以实现生物催化剂的循环利用。这些纳米图案的复合材料可能会为纳米生物技术中的生物催化应用开辟新的功能概念。

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