Tschiggerl Helga, Breitwieser Andreas, de Roo Guy, Verwoerd Theo, Schäffer Christina, Sleytr Uwe B
Center for NanoBiotechnology, University of Natural Resources and Applied Life Sciences, Gregor-Mendel-Strasse 33, A-1180 Vienna, Austria.
J Biotechnol. 2008 Feb 1;133(3):403-11. doi: 10.1016/j.jbiotec.2007.09.018. Epub 2007 Oct 5.
A fusion protein based on the S-layer protein SbpA from Bacillus sphaericus CCM 2177 and the enzyme laminarinase (LamA) from Pyrococcus furiosus was designed and overexpressed in Escherichia coli. Due to the construction principle, the S-layer fusion protein fully retained the self-assembly capability of the S-layer moiety, while the catalytic domain of LamA remained exposed at the outer surface of the formed protein lattice. The enzyme activity of the S-layer fusion protein monolayer obtained upon recrystallization on silicon wafers, glass slides and different types of polymer membranes was determined colorimetrically and related to the activity of sole LamA that has been immobilized with conventional techniques. LamA aligned within the S-layer fusion protein lattice in a periodic and orientated fashion catalyzed twice the glucose release from the laminarin polysaccharide substrate in comparison to the randomly immobilized enzyme. In combination with the good shelf-life and the high resistance towards temperature and diverse chemicals, these novel composites are regarded a promising approach for site-directed enzyme immobilization.
设计了一种基于球形芽孢杆菌CCM 2177的S层蛋白SbpA和激烈热球菌的酶海带多糖酶(LamA)的融合蛋白,并在大肠杆菌中进行了过量表达。基于构建原理,S层融合蛋白完全保留了S层部分的自组装能力,而LamA的催化结构域则暴露在形成的蛋白质晶格的外表面。通过比色法测定了在硅片、载玻片和不同类型聚合物膜上重结晶后获得的S层融合蛋白单层的酶活性,并将其与用传统技术固定的单一LamA的活性进行了比较。与随机固定的酶相比,以周期性和定向方式排列在S层融合蛋白晶格中的LamA催化从海带多糖底物中释放的葡萄糖量增加了一倍。结合良好的保质期以及对温度和多种化学物质的高耐受性,这些新型复合材料被认为是一种有前途的定点酶固定方法。