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Expression of a synthetic gene encoding canine milk lysozyme in Escherichia coli and characterization of the expressed protein.

机译:编码犬乳溶菌酶的合成基因在大肠杆菌中的表达和表达蛋白的表征。

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摘要

A high-expression plasmid of the canine milk lysozyme, which belongs to the family of calcium-binding lysozymes, was constructed in order to study its physico-chemical properties. Because the cDNA sequence of the protein has not yet been determined, a 400 base-pair gene encoding canine milk lysozyme was first designed on the basis of the known amino acid sequence. The gene was constructed by an enzymatic assembly of 21 chemically synthesized oligonucleotides and inserted into an Escherichia coli expression vector by stepwise ligation. The expression plasmid thus constructed was transformed into BL21(DE3)/pLysS cells. The gene product accumulated as inclusion bodies in an insoluble fraction. Recombinant canine milk lysozyme was obtained by purification and refolding of the product and showed the same characteristics in terms of bacteriolytic activity and far- and near-UV circular dichroism spectra as the authentic protein. The NMR spectra of refolded lysozyme were also characteristic of a native globular protein. It was concluded that recombinant canine milk lysozyme was folded into the correct native structure. Moreover, the thermal unfolding profiles of the refolded recombinant lysozyme showed a stable equilibrium intermediate, indicating that the molten globule state of this protein was extraordinarily stable. This expression system of canine milk lysozyme will enable biophysical and structural studies of this protein to be extended.
机译:为了研究犬乳溶菌酶的理化性质,构建了一种高表达质粒,属于钙结合溶菌酶家族。由于尚未确定蛋白质的cDNA序列,因此首先根据已知的氨基酸序列设计了编码犬乳溶菌酶的400个碱基对基因。通过酶促组装21个化学合成的寡核苷酸构建基因,并通过逐步连接将其插入大肠杆菌表达载体。将如此构建的表达质粒转化到BL21(DE3)/ pLysS细胞中。基因产物以不溶级分的形式作为包涵体积累。通过纯化和重折叠产品获得了重组犬牛奶溶菌酶,并在细菌分解活性以及远紫外和近紫外圆二色性光谱方面显示出与真实蛋白质相同的特征。重新折叠的溶菌酶的NMR谱图也是天然球形蛋白的特征。结论是重组犬乳溶菌酶被折叠成正确的天然结构。此外,重新折叠的重组溶菌酶的热解折叠曲线显示出稳定的平衡中间体,表明该蛋白质的熔融小球状态非常稳定。犬乳溶菌酶的这种表达系统将使该蛋白质的生物物理和结构研究得以扩展。

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