Seiboth Bernhard, Hartl Lukas, Salovuori Noora, Lanthaler Karin, Robson Geoff D, Vehmaanperä Jari, Penttilä Merja E, Kubicek Christian P
Research Area Gene Technology and Applied Biochemistry, Institute of Chemical Engineering, TU Vienna, Getreidemarkt 9/1665, A-1060 Vienna, Austria.
Appl Environ Microbiol. 2005 Feb;71(2):851-7. doi: 10.1128/AEM.71.2.851-857.2005.
Lactose is the only soluble and economically feasible carbon source for the production of cellulases or heterologous proteins regulated by cellulase expression signals by Hypocrea jecorina (Trichoderma reesei). We investigated the role of the major beta-galactosidase of H. jecorina in lactose metabolism and cellulase induction. A genomic copy of the bga1 gene was cloned, and this copy encodes a 1,023-amino-acid protein with a 20-amino-acid signal sequence. This protein has a molecular mass of 109.3 kDa, belongs to glycosyl hydrolase family 35, and is the major extracellular beta-galactosidase during growth on lactose. Its transcript was abundant during growth on l-arabinose and l-arabinitol but was much less common when the organism was grown on lactose, d-galactose, galactitol, d-xylose, and xylitol. Deltabga1 strains grow more slowly and accumulate less biomass on lactose, but the cellobiohydrolase I and II gene expression and the final cellulase yields were comparable to those of the parental strain. Overexpression of bga1 under the control of the pyruvate kinase promoter reduced the lag phase, increased growth on lactose, and limited transcription of cellobiohydrolases. We detected an additional extracellular beta-galactosidase activity that was not encoded by bga1 but no intracellular beta-galactosidase activity. In conclusion, cellulase production on lactose occurs when beta-galactosidase activity levels are low but decreases as the beta-galactosidase activities increase. The data indicate that bga1-encoded beta-galactosidase activity is a critical factor for cellulase production on lactose.
乳糖是唯一可溶且经济可行的碳源,用于由嗜热栖热菌(里氏木霉)通过纤维素酶表达信号调控生产纤维素酶或异源蛋白。我们研究了嗜热栖热菌主要β-半乳糖苷酶在乳糖代谢和纤维素酶诱导中的作用。克隆了bga1基因的基因组拷贝,该拷贝编码一个含20个氨基酸信号序列的1023个氨基酸的蛋白质。该蛋白质分子量为109.3 kDa,属于糖基水解酶家族35,是在乳糖上生长期间的主要细胞外β-半乳糖苷酶。其转录本在以L-阿拉伯糖和L-阿拉伯糖醇为碳源生长时丰富,但当该生物体在乳糖、D-半乳糖、半乳糖醇、D-木糖和木糖醇上生长时则不太常见。缺失bga1的菌株在乳糖上生长更慢且生物量积累更少,但纤维二糖水解酶I和II基因表达以及最终纤维素酶产量与亲本菌株相当。在丙酮酸激酶启动子控制下bga1的过表达缩短了延迟期,增加了在乳糖上的生长,并限制了纤维二糖水解酶的转录。我们检测到一种额外的细胞外β-半乳糖苷酶活性,其不是由bga1编码的,但未检测到细胞内β-半乳糖苷酶活性。总之,在β-半乳糖苷酶活性水平较低时乳糖上可产生纤维素酶,但随着β-半乳糖苷酶活性增加而降低。数据表明bga1编码的β-半乳糖苷酶活性是乳糖上纤维素酶生产的关键因素。