Kruszewska J S, Butterweck A H, Kurzatkowski W, Migdalski A, Kubicek C P, Palamarczyk G
Institute of Biochemistry and Biophysics, Polish Academy of Sciences, 02-106 Warsaw, Poland.
Appl Environ Microbiol. 1999 Jun;65(6):2382-7. doi: 10.1128/AEM.65.6.2382-2387.1999.
Production of extracellular proteins plays an important role in the physiology of Trichoderma reesei and has potential industrial application. To improve the efficiency of protein secretion, we overexpressed in T. reesei the DPM1 gene of Saccharomyces cerevisiae, encoding mannosylphosphodolichol (MPD) synthase, under homologous, constitutively acting expression signals. Four stable transformants, each with different copy numbers of tandemly integrated DPM1, exhibited roughly double the activity of MPD synthase in the respective endoplasmic reticulum membrane fraction. On a dry-weight basis, they secreted up to sevenfold-higher concentrations of extracellular proteins during growth on lactose, a carbon source promoting formation of cellulases. Northern blot analysis showed that the relative level of the transcript of cbh1, which encodes the major cellulase (cellobiohydrolase I [CBH I]), did not increase in the transformants. On the other hand, the amount of secreted CBH I and, in all but one of the transformants, intracellular CBH I was elevated. Our results suggest that posttranscriptional processes are responsible for the increase in CBH I production. The carbohydrate contents of the extracellular proteins were comparable in the wild type and in the transformants, and no hyperglycosylation was detected. Electron microscopy of the DPM1-amplified strains revealed amorphous structure of the cell wall and over three times as many mitochondria as in the control. Our data indicate that molecular manipulation of glycan biosynthesis in Trichoderma can result in improved protein secretion.
细胞外蛋白质的产生在里氏木霉的生理学中起着重要作用,并具有潜在的工业应用价值。为了提高蛋白质分泌效率,我们在里氏木霉中,在同源组成型表达信号下,过表达了酿酒酵母的DPM1基因,该基因编码甘露糖基磷酸多萜醇(MPD)合酶。四个稳定转化体,每个都有不同拷贝数的串联整合DPM1,在各自的内质网膜部分中表现出大约两倍的MPD合酶活性。以干重计,它们在乳糖(一种促进纤维素酶形成的碳源)上生长期间分泌的细胞外蛋白质浓度高达七倍。Northern印迹分析表明,编码主要纤维素酶(纤维二糖水解酶I [CBH I])的cbh1转录本的相对水平在转化体中没有增加。另一方面,分泌的CBH I的量以及除一个转化体之外的所有转化体中的细胞内CBH I的量都升高了。我们的结果表明,转录后过程是CBH I产量增加的原因。野生型和转化体中细胞外蛋白质的碳水化合物含量相当,未检测到高糖基化。DPM1扩增菌株的电子显微镜检查显示细胞壁呈无定形结构,线粒体数量是对照的三倍多。我们的数据表明,对里氏木霉中聚糖生物合成的分子操作可以提高蛋白质分泌。