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当在毕赤酵母中表达时,通过破坏该酵母中的YPS1基因,可以减少HSA - AX15(R13K)的降解。

Degradation of HSA-AX15(R13K) when expressed in Pichia pastoris can be reduced via the disruption of YPS1 gene in this yeast.

作者信息

Yao Xue Qin, Zhao Hong Liang, Xue Chong, Zhang Wei, Xiong Xiang Hua, Wang Zhi Wei, Li Xian Yu, Liu Zhi Min

机构信息

Department of Microorganism Engineering, Beijing Institute of Biotechnology, 20 Dongdajie Street, Fengtai District, Beijing 100071, People's Republic of China.

出版信息

J Biotechnol. 2009 Jan 15;139(2):131-6. doi: 10.1016/j.jbiotec.2008.09.006. Epub 2008 Oct 8.

Abstract

Expression of recombinant protein HSA-AX15(R13K) in Pichia pastoris GS115 strain produced both the intact protein and its two degradation products with molecular weights of around 43kDa and 66.2kDa, respectively. To reduce or avoid the degradation, a modified P. pastoris GS115 stain, in which YPS1 gene was disrupted, was constructed via homologous recombination and used as a host strain for the HSA-AX15(R13K) expression. After 60h of induction during culture, it was found that the degradation product of around 66.2kDa was reduced significantly in the supernatant of yps1-disrupted strain compared with that in the supernatant of wild-type strain. By the Western blot analysis of culture supernatants from wild-type and yps1-disrupted strains expressing HSA-AX15(R13K), the significant improvement was also seen in the degradation product of around 43kDa. Comparison of cell growth between the two strains demonstrated a similar growth tendency, thereby indicating that the disruption of YPS1 gene has no effect on the normal physiology of GS115 strain. Following induction for 60h, the yield of intact HSA-AX15(R13K) in the yps1 disruptant was three-fold higher than that in the wild-type strain. Therefore, such a P. pastoris mutant deficient in YPS1 activity is suitable for the high-level expression of recombinant protein HSA-AX15(R13K).

摘要

重组蛋白HSA-AX15(R13K)在毕赤酵母GS115菌株中的表达产生了完整蛋白及其两种降解产物,分子量分别约为43kDa和66.2kDa。为了减少或避免降解,通过同源重组构建了一种YPS1基因被破坏的改良毕赤酵母GS115菌株,并将其用作HSA-AX15(R13K)表达的宿主菌株。在培养诱导60小时后,发现与野生型菌株的上清液相比,YPS1基因破坏菌株的上清液中约66.2kDa的降解产物显著减少。通过对表达HSA-AX15(R13K)的野生型和YPS1基因破坏菌株的培养上清液进行蛋白质免疫印迹分析,还发现约43kDa的降解产物也有显著改善。两种菌株的细胞生长比较显示出相似的生长趋势,从而表明YPS1基因的破坏对GS115菌株的正常生理没有影响。诱导60小时后,YPS1基因破坏菌株中完整HSA-AX15(R13K)的产量比野生型菌株高3倍。因此,这种缺乏YPS1活性的毕赤酵母突变体适合于重组蛋白HSA-AX15(R13K)的高水平表达。

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