Department of Pathology, Barbara Ann Karmanos Institute, Wayne State University School of Medicine, Detroit, Michigan, USA.
Institut de Génétique et de Biologie Moléculaire et Cellulaire, INSERM U596/CNRS-UMR7104, Université Louis Pasteur, Strasbourg, France.
Protein Sci. 2022 Nov;31(11):e4468. doi: 10.1002/pro.4468.
The vaccinia virus expression system is known for the efficient production of recombinant proteins with "appropriate" posttranslational modification using desired mammalian cell lines. However, being a replication competent virus, vaccinia virus poses a health threat to immunocompromised individuals and requires biosafety level 2 (BSL2) laboratory precautions, thereby restricting its use by the scientific community. Development of the host range restricted modified vaccinia Ankara (MVA) system has allowed researchers to work with a safer virus even at BSL1. Here, we report on the use of an improved second generation MVA viral system incorporating two selective markers and fluorescent proteins for easier recombinant virus identification. Notably, we demonstrate that this novel system is capable of producing secreted recombinant proteins, a finding not previously reported. Through purification and characterization of wild type and mutant platelet-derived growth factor D (PDGF D) dimer species, we demonstrate this system is capable of producing the latent full-length PDGF D dimer, partially processed intermediate dimer (hemidimer), as well as fully processed growth factor domain dimer that show chemical integrity and biological activity. Importantly, this system is amenable to scaling up for the mass production of recombinant PDGF D (rPDGF D) dimer species.
痘苗病毒表达系统以使用所需的哺乳动物细胞系高效生产具有“适当”翻译后修饰的重组蛋白而闻名。然而,作为一种复制能力强的病毒,痘苗病毒对免疫功能低下的个体构成健康威胁,需要生物安全 2 级(BSL2)实验室预防措施,从而限制了科学界的使用。宿主范围受限的改良安卡拉痘苗病毒(MVA)系统的开发使研究人员即使在 BSL1 下也能使用更安全的病毒。在这里,我们报告了使用改进的第二代 MVA 病毒系统,该系统包含两个选择性标记和荧光蛋白,以便更容易识别重组病毒。值得注意的是,我们证明了该新型系统能够生产分泌型重组蛋白,这是以前未报道过的发现。通过对野生型和突变血小板衍生生长因子 D(PDGF D)二聚体的纯化和表征,我们证明该系统能够产生潜伏的全长 PDGF D 二聚体、部分加工的中间二聚体(半二聚体)以及完全加工的生长因子结构域二聚体,它们具有化学完整性和生物活性。重要的是,该系统适合大规模生产重组 PDGF D(rPDGF D)二聚体。