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曲霉高效分泌蛋白的生产:进展、局限与前景

Efficient production of secreted proteins by Aspergillus: progress, limitations and prospects.

作者信息

Gouka R J, Punt P J, van den Hondel C A

机构信息

TNO Nutrition and Food Research Institute, Department of Molecular Genetics and Gene Technology, Rijswijk, The Netherlands.

出版信息

Appl Microbiol Biotechnol. 1997 Jan;47(1):1-11. doi: 10.1007/s002530050880.

Abstract

Filamentous fungi are widely used for the production of homologous and heterologous proteins but, compared to homologous proteins, the levels of production of heterologous proteins are usually low. During the last 5 years, the levels of production of heterologous proteins have been drastically improved by fusing the corresponding gene to the 3' end of a homologous gene, encoding a well-secreted protein such as glucoamylase. Nevertheless, little research has been carried out to determine the limitations that hamper heterologous protein production. Recently we have carried out a detailed analysis of the levels of production of several proteins and glucoamylase fusion proteins in defined recombinant Aspergillus awamori strains. In this review we will focus on the use of filamentous fungi for the production of heterologous, especially non-fungal proteins. In particular, the effect of gene-fusion strategies will be reviewed. Furthermore, the remaining limitations in heterologous protein production and suggestions for improvement strategies for overproduction of these protein will be discussed.

摘要

丝状真菌被广泛用于同源和异源蛋白的生产,但与同源蛋白相比,异源蛋白的产量通常较低。在过去5年中,通过将相应基因与同源基因的3'末端融合,编码一种分泌良好的蛋白(如葡糖淀粉酶),异源蛋白的产量得到了大幅提高。然而,为确定阻碍异源蛋白生产的限制因素所开展的研究却很少。最近,我们对几种蛋白和葡糖淀粉酶融合蛋白在特定重组泡盛曲霉菌株中的产量水平进行了详细分析。在本综述中,我们将重点关注丝状真菌用于生产异源蛋白,特别是非真菌蛋白的情况。尤其将对基因融合策略的效果进行综述。此外,还将讨论异源蛋白生产中仍然存在的限制因素以及提高这些蛋白过量生产的改进策略建议。

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