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利用 Cre/loxP 系统对毕赤酵母进行基因敲除的改良方法。

A modified method of gene disruption in Komagataella phaffii with Cre/loxP system.

机构信息

College of Food and Pharmaceutical Engineering, Guizhou Institute of Technology, Guiyang 550000, China.

College of Food and Pharmaceutical Engineering, Guizhou Institute of Technology, Guiyang 550000, China.

出版信息

J Biotechnol. 2022 Mar 10;347:40-48. doi: 10.1016/j.jbiotec.2022.02.007. Epub 2022 Feb 18.

Abstract

To increase protein production, technologies of gene manipulation for engineering the yeast Komagataella phaffii are extensively exploited. In this study, we developed a convenient gene disruption method in the yeast via Cre/loxP system. First, the simple gene disruption cassette [upstream homologous region (UP)-lox71-Sh ble-lox66-downstream homologous region (DW)] was constructed and transformed into the yeast to replace target gene. Second, the Sh ble gene of the cassette integrated in the chromosome was inserted with the auxiliary plasmid pPICZαA/cre/his4, resulting in an expanded cassette of UP-lox71-Sh ble-pPICZαA/cre/his4-lox66-DW. The auxiliary plasmid was generated via sequential insertion of cre and his4 genes into pPICZαA, and linearized with SmaI before its transformation. Finally, for deletion of the sequence between lox71 and lox66 sites in the expanded cassette, CRE protein responsible for Cre/loxP-mediated recombination was produced by methanol induction. Consequently, the corresponding sequence was eliminated permanently, only leaving a scar of lox72 site in the disrupted genes. This strategy was verified by disrupting two genes in the yeast. As the markers were recycled, it was also suitable for multiple gene disruption.

摘要

为了提高蛋白质产量,人们广泛利用基因工程技术对毕赤酵母(Komagataella phaffii)进行基因改造。在本研究中,我们通过 Cre/loxP 系统开发了一种在酵母中进行基因敲除的简便方法。首先,构建了一个简单的基因敲除盒[上下游同源区(UP)-lox71-Sh ble-lox66-下游同源区(DW)],并将其转化到酵母中以取代靶基因。其次,将盒内的 Sh ble 基因与辅助质粒 pPICZαA/cre/his4 整合到染色体上,形成 UP-lox71-Sh ble-pPICZαA/cre/his4-lox66-DW 的扩展盒。辅助质粒是通过将 cre 和 his4 基因依次插入 pPICZαA 中构建的,在转化前用 SmaI 线性化。最后,为了删除扩展盒中lox71 和 lox66 位点之间的序列,通过甲醇诱导产生负责 Cre/loxP 介导重组的 CRE 蛋白,从而永久消除相应序列,在敲除基因中仅留下lox72 位点的疤痕。通过在酵母中敲除两个基因验证了该策略。由于标记被回收,因此该策略也适用于多个基因的敲除。

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