Belozersky Institute of Physico-Chemical Biology, M.V. Lomonosov Moscow State University, Leninskie Gory 1/40, 119991, Moscow, Russia.
Institute of Microbiology, Dresden University of Technology, Hedda Vogel, 01062, Dresden, Germany.
J Biotechnol. 2021 Sep 20;339:42-52. doi: 10.1016/j.jbiotec.2021.07.012. Epub 2021 Jul 29.
New Yarrowia lipolytica strains for the co-expression of steroidogenic mammalian proteins were obtained in this study. For this purpose, a two-step approach for constructing recombinant strains that permits the simple introduction of several expression cassettes encoding heterologous proteins into the yeast genome was successfully applied. This study tested two series of integrative multi-copy expression vectors containing cDNAs for the mature forms of P450scc system components (cytochrome P450scc (CYP11A1), adrenodoxin reductase, adrenodoxin, or fused adrenodoxin-P450scc) or for P45017α (CYP17A1) under the control of the isocitrate lyase promoter pICL1, which were constructed using the basic plasmids p64PT or p67PT (rDNA or the long terminal repeat (LTR) zeta of Ylt1 as integration targeting sequences and ura3d4 as a multi-copy selection marker). This study demonstrated the integration of up to three expression vectors containing different heterologous cDNA via their simultaneous transformation into haploid recipient strains. Additionally, further combinations of the different expression cassettes in one strain were obtained by subsequent diploidisation using selected haploid multi-copy transformants. Thus, recombinant strains containing three to five different expression cassettes were obtained, as demonstrated by Southern blotting. Expression of P450scc system proteins was identified by western blotting. The presented method for recombinant strain construction is a useful tool for the heterologous expression of multi-component enzyme systems in Y. lipolytica.
本研究获得了能够共表达类固醇生成哺乳动物蛋白的新型解脂耶氏酵母菌株。为此,成功应用了两步法构建重组菌株,该方法允许简单地将多个编码异源蛋白的表达盒引入酵母基因组。本研究测试了两个系列的整合型多拷贝表达载体,其中包含 P450scc 系统成分(细胞色素 P450scc(CYP11A1)、肾上腺皮质酮还原酶、肾上腺皮质酮或融合的肾上腺皮质酮-P450scc)或 P45017α(CYP17A1)的成熟形式的 cDNA,这些载体受异柠檬酸裂解酶启动子 pICL1 的控制,该启动子使用基本质粒 p64PT 或 p67PT(rDNA 或 Ylt1 的长末端重复(LTR)zeta 作为整合靶向序列和 ura3d4 作为多拷贝选择标记)构建。本研究表明,通过将多达三个含有不同异源 cDNA 的表达载体同时转化到单倍体受体菌株中,可实现其整合。此外,通过使用选定的单倍体多拷贝转化子进行后续二倍化,可在一个菌株中获得不同表达盒的进一步组合。因此,通过 Southern 印迹证实获得了含有三到五个不同表达盒的重组菌株。通过 Western 印迹鉴定了 P450scc 系统蛋白的表达。所提出的重组菌株构建方法是在解脂耶氏酵母中异源表达多组分酶系统的有用工具。