Madzak Catherine, Otterbein Ludovic, Chamkha Mohamed, Moukha Serge, Asther Marcel, Gaillardin Claude, Beckerich Jean-Marie
UMR Microbiologie et Génétique Moléculaire INRA/CNRS/INAP-G, Centre de Biotechnologie Agro-Industrielle, BP 01, 78850 Thiverval-Grignon, France.
FEMS Yeast Res. 2005 Apr;5(6-7):635-46. doi: 10.1016/j.femsyr.2004.10.009.
Pycnoporus cinnabarinus lac1 gene was expressed in Yarrowia lipolytica. Different secretion signals and culture media were tested. Production was correlated to both culture growth rate and cell morphology (highest at low growth rate, without mycelium). Recombinant laccase was characterized (immunodetection, N-terminal sequencing) and purified. Production was estimated to 20 mgl(-1) in a bioreactor. Thus, complex metalloenzymes can be produced in Yarrowia, assuming some control of host physiology. Lac1p production was compared in Yarrowia, Pichia and Aspergillus: recombinant proteins were active, but host systems differed in transformation efficiency, production, and glycosylation. If not the best producer, Yarrowia offers very high transformation efficiencies, allowing the genetic engineering of laccases for industrial applications.
朱红密孔菌漆酶1基因在解脂耶氏酵母中表达。对不同的分泌信号和培养基进行了测试。产量与培养生长速率和细胞形态均相关(在低生长速率且无菌丝体时产量最高)。对重组漆酶进行了表征(免疫检测、N端测序)并进行了纯化。在生物反应器中产量估计为20 mg l⁻¹。因此,假设对宿主生理学有一定控制,复杂的金属酶可以在解脂耶氏酵母中产生。比较了解脂耶氏酵母、毕赤酵母和曲霉中漆酶1蛋白(Lac1p)的产量:重组蛋白具有活性,但宿主系统在转化效率、产量和糖基化方面存在差异。即使不是最佳生产者,解脂耶氏酵母也具有非常高的转化效率,能够对漆酶进行基因工程改造以用于工业应用。