Instituto de Ciências Biológicas, Departamento de Biologia Celular, Universidade de Brasília, Brasília, DF, 70910-900, Brazil.
Appl Microbiol Biotechnol. 2018 Mar;102(6):2753-2761. doi: 10.1007/s00253-018-8824-9. Epub 2018 Feb 12.
We have investigated the use of the gene coding for acetamidase (amdS) as a recyclable dominant marker for the methylotrophic yeast Komagataella phaffii in order to broaden its genetic toolbox. First, the endogenous constitutive AMD2 gene (a putative acetamidase) was deleted generating strain LA1. A cassette (amdSloxP) was constructed bearing a codon-optimized version of the Aspergillus nidulans amdS gene flanked by loxP sites for marker excision with Cre recombinase. This cassette was successfully tested as a dominant selection marker for transformation of the LA1 strain after selection on plates containing acetamide as a sole nitrogen source. Finally, amdSloxP was used to sequentially disrupt the K. phaffii ADE2 and URA5 genes. After each disruption event, a Cre-mediated marker recycling step was performed by plating cells on medium containing fluoroacetamide. In conclusion, amdS proved to be a suitable tool for K. phaffii transformation and marker recycling thus providing a new antibiotic-free system for genetic manipulation of this yeast.
我们研究了利用编码乙酰氨酶(amdS)的基因作为甲基营养酵母毕赤酵母 Komagataella phaffii 的可回收显性标记,以拓宽其遗传工具包。首先,删除了内源性组成型 AMD2 基因(一种假定的乙酰氨酶),生成了菌株 LA1。构建了一个带有 amdSloxP 盒的基因,该盒带有经过密码子优化的 Aspergillus nidulans amdS 基因,两侧为 loxP 位点,可通过 Cre 重组酶进行标记切除。该盒在含有乙酰胺作为唯一氮源的平板上进行选择后,成功地用作 LA1 菌株转化的显性选择标记进行了测试。最后,amdSloxP 用于顺序敲除毕赤酵母的 ADE2 和 URA5 基因。在每次破坏事件后,通过在含有氟乙酰氨的培养基上平板培养细胞来进行 Cre 介导的标记回收步骤。总之,amdS 被证明是毕赤酵母转化和标记回收的合适工具,从而为该酵母的遗传操作提供了一种新的无抗生素系统。