Centre for Neuroscience and Cell Biology, Coimbra, Portugal.
Appl Environ Microbiol. 2014 Jan;80(1):86-96. doi: 10.1128/AEM.03151-13. Epub 2013 Oct 11.
Typical plant aspartic protease zymogens comprise a characteristic and plant-specific insert (PSI). PSI domains can interact with membranes, and a role as a defensive weapon against pathogens has been proposed. However, the potential of PSIs as antimicrobial agents has not been fully investigated and explored yet due to problems in producing sufficient amounts of these domains in bacteria. Here, we report the development of an expression platform for the production of the PSI domain of cirsin in the generally regarded as safe (GRAS) yeast Kluyveromyces lactis. We successfully generated K. lactis transformants expressing and secreting significant amounts of correctly processed and glycosylated PSI, as well as its nonglycosylated mutant. A purification protocol with protein yields of ∼4.0 mg/liter was established for both wild-type and nonglycosylated PSIs, which represents the highest reported yield for a nontagged PSI domain. Subsequent bioactivity assays targeting phytopathogenic fungi indicated that the PSI of cirsin is produced in a biologically active form in K. lactis and provided clear evidence for its antifungal activity. This yeast expression system thereby emerges as a promising production platform for further exploring the biotechnological potential of these plant saposin-like proteins.
典型的植物天冬氨酸蛋白酶前体包含一个特征性的、植物特有的插入序列(PSI)。PSI 结构域可以与膜相互作用,因此有人提出它可能作为一种防御性武器来对抗病原体。然而,由于在细菌中大量生产这些结构域存在问题,PSI 作为抗菌剂的潜力尚未得到充分研究和探索。在这里,我们报告了在被普遍认为安全(GRAS)的酵母乳酸克鲁维酵母中生产黎豆蛋白酶 PSI 结构域的表达平台的开发。我们成功地生成了表达和分泌大量正确加工和糖基化的 PSI 结构域以及其非糖基化突变体的乳酸克鲁维酵母转化体。建立了一种针对野生型和非糖基化 PSI 的纯化方案,其蛋白产量约为 4.0 毫克/升,这是报道的非标签 PSI 结构域的最高产量。针对植物病原真菌的后续生物活性测定表明,黎豆蛋白酶的 PSI 在乳酸克鲁维酵母中以生物活性形式产生,并为其抗真菌活性提供了明确证据。因此,该酵母表达系统是进一步探索这些植物类枯草蛋白酶蛋白的生物技术潜力的有前途的生产平台。