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Generation of Metal-Binding Staphylococci through Surface Display of Combinatorially Engineered Cellulose-Binding Domains

机译:通过表面展示的组合工程改造的纤维素结合域生成金属结合的葡萄球菌。

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摘要

Ni2+-binding staphylococci were generated through surface display of combinatorially engineered variants of a fungal cellulose-binding domain (CBD) from Trichoderma reesei cellulase Cel7A. Novel CBD variants were generated by combinatorial protein engineering through the randomization of 11 amino acid positions, and eight potentially Ni2+-binding CBDs were selected by phage display technology. These new variants were subsequently genetically introduced into chimeric surface proteins for surface display on Staphylococcus carnosus cells. The expressed chimeric proteins were shown to be properly targeted to the cell wall of S. carnosus cells, since full-length proteins could be extracted and affinity purified. Surface accessibility for the chimeric proteins was demonstrated, and furthermore, the engineered CBDs, now devoid of cellulose-binding capacity, were shown to be functional with regard to metal binding, since the recombinant staphylococci had gained Ni2+-binding capacity. Potential environmental applications for such tailor-made metal-binding bacteria as bioadsorbents in biofilters or biosensors are discussed.
机译:通过对来自里氏木霉纤维素酶Cel7A的真菌纤维素结合域(CBD)的组合工程改造的变体进行表面展示,产生了Ni 2 + 结合葡萄球菌。通过组合蛋白质工程,通过随机选择11个氨基酸位置生成了新的CBD变异体,并通过噬菌体展示技术选择了8个潜在的与Ni 2 + 结合的CBD。随后将这些新变体遗传导入嵌合表面蛋白中,以在肉葡萄球菌细胞上进行表面展示。由于可以提取全长蛋白并进行亲和纯化,因此表明表达的嵌合蛋白可以正确地靶向肉食链球菌的细胞壁。证明了嵌合蛋白的表面可及性,此外,由于重组葡萄球菌获得了Ni 2 + -结合能力。讨论了量身定制的金属结合细菌(如生物过滤器或生物传感器中的生物吸附剂)的潜在环境应用。

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