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编码主要内质网伴侣蛋白的基因bipA在黑曲霉中同源和异源蛋白分泌中的作用分析

Analysis of the role of the gene bipA, encoding the major endoplasmic reticulum chaperone protein in the secretion of homologous and heterologous proteins in black Aspergilli.

作者信息

Punt P J, van Gemeren I A, Drint-Kuijvenhoven J, Hessing J G, van Muijlwijk-Harteveld G M, Beijersbergen A, Verrips C T, van den Hondel C A

机构信息

Molecular Genetics and Gene Technology, TNO Nutrition and Food Research Institute, AJ Zeist, The Netherlands.

出版信息

Appl Microbiol Biotechnol. 1998 Oct;50(4):447-54. doi: 10.1007/s002530051319.

Abstract

The function of the endoplasmic-reticulum-localized chaperone binding protein (BiP) in relation to protein secretion in filamentous fungi was studied. It was shown that the overproduction of several homologous and heterologous recombinant proteins by Aspergillus strains induces the expression of bipA, the BiP-encoding gene from Aspergillus niger and Aspergillus awamori. As this result could imply that BiP plays a role in protein overproduction, the effect of modulation of bipA gene expression on protein secretion was studied in several recombinant strains expressing glucoamylase (glaA) fusion genes. For overproduction of BiPA in these strains, extra copies of the bipA gene under the control of an inducible promoter were introduced. To allow analysis of the effect of a decreased bipA expression level on protein secretion, replacement of the wild-type gene for a bipA gene driven by the glaA promoter was attempted. However, this endeavour failed because of the lethality of this replacement. Although the final amount of secreted recombinant protein did not change significantly in strains with increased BiPA levels, increased levels of unprocessed fusion protein were detected in the total protein extracts of these strains.

摘要

研究了内质网定位的伴侣结合蛋白(BiP)在丝状真菌蛋白质分泌中的功能。结果表明,曲霉属菌株过量生产几种同源和异源重组蛋白会诱导bipA的表达,bipA是黑曲霉和泡盛曲霉中编码BiP的基因。由于这一结果可能意味着BiP在蛋白质过量生产中起作用,因此在几种表达糖化酶(glaA)融合基因的重组菌株中研究了bipA基因表达调控对蛋白质分泌的影响。为了在这些菌株中过量生产BiPA,引入了在诱导型启动子控制下的bipA基因的额外拷贝。为了分析降低bipA表达水平对蛋白质分泌的影响,尝试用glaA启动子驱动的bipA基因替换野生型基因。然而,由于这种替换的致死性,这项努力失败了。尽管BiPA水平升高的菌株中分泌的重组蛋白的最终量没有显著变化,但在这些菌株的总蛋白提取物中检测到未加工融合蛋白的水平升高。

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