首页> 外文期刊>Science in China, Series C. Life science >Construction of a host range-expanded hybrid baculovirus of BmNPV and AcNPV, and knockout of cysteinase gene for more efficient expression
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Construction of a host range-expanded hybrid baculovirus of BmNPV and AcNPV, and knockout of cysteinase gene for more efficient expression

机译:BmNPV和AcNPV宿主范围扩大的杂交杆状病毒的构建,并敲除半胱氨酸酶基因以更有效地表达

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AcNPV (Autographa californica nuclear polyhedrosis virus) and BmNPV(Bombyx mori nuclear polyhedrosis virus) are two principal insect-baculovirus expression systems, each having different characteristics. AcNPV has a wider host range and can infect a series of cell lines thus making it suitable for cell suspension culture expression, but the small size of the host insect, A. californica, makes AcNPV less suitable for large scale protein synthesis. In contrast, BmNPV can only infect the silkworm, Bombyx mori, which is well-known for its easy rearing and large size. These characteristics make the BmNPV system especially suitable for large-scale industrial expression. To utilize the advantages of both AcNPV and BmNPV, we tried to expand their host rangethrough homologous recombination and successfully constructed a hybrid baculovirus of AcNPV and BmNPV, designated as HyNPV. The hybrid baculovirus can infect the hosts of both AcNPV and BmNPV. Taking the human basic fibroblast growth factor (bFGF) geneas an application example, we constructed a recombinant, HyNPV-bFGF. This construct is able to express the bFGF protein both in silkworm larvae and in common-use cell lines, sf21, sf9 and High-five. Moreover, to reduce the loss of recombinant protein dueto degradation by proteases that are simultaneously expressed by the baculovirus, we knocked out the cysteinase gene coding for one of the most important baculovirus proteases. This knockout mutation improves the production efficiency of the bFGF recombinant protein.
机译:AcNPV(加利福尼亚州的Autographa californica核多角体病毒)和BmNPV(Bombyx mori核多角体病毒)是两个主要的昆虫杆状病毒表达系统,每个系统都有不同的特征。 AcNPV具有更广泛的宿主范围,可以感染一系列细胞系,因此使其适合细胞悬浮培养表达,但是宿主昆虫小圆叶曲霉的体积小,使得AcNPV不适合大规模蛋白质合成。相比之下,BmNPV仅能感染家蚕,该家蚕以易于饲养和大尺寸着称。这些特性使BmNPV系统特别适合大规模工业表达。为了利用AcNPV和BmNPV的优势,我们尝试通过同源重组扩大其宿主范围,并成功构建了AcNPV和BmNPV的混合杆状病毒,称为HyNPV。混合杆状病毒可以感染AcNPV和BmNPV的宿主。以人类碱性成纤维细胞生长因子(bFGF)基因为应用实例,我们构建了重组HyNPV-bFGF。该构建体能够在蚕幼虫和常用细胞系sf21,sf9和High-five中表达bFGF蛋白。而且,为了减少由于杆状病毒同时表达的蛋白酶降解引起的重组蛋白的损失,我们敲除了编码最重要的杆状病毒蛋白酶之一的半胱氨酸酶基因。该敲除突变提高了bFGF重组蛋白的生产效率。

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