Long Chuannan, Cheng Yijin, Gan Lihui, Liu Jian, Long Minnan
School of Energy Research, Xiamen University, Xiamen 361102, China.
Int J Mol Sci. 2013 Apr 17;14(4):8479-90. doi: 10.3390/ijms14048479.
A high concentration of glucose in the medium could greatly inhibit the expression of cellulase in filamentous fungi. The aspartic protease from fungus Hypocrea orientalis EU7-22 could efficiently express under both induction condition and glucose repression condition. Based on the sequence of structure gene of aspartic protease, the upstream sequence harboring the putative promoter proA for driving the expression of aspartic protease was obtained by genome walking. The upstream sequence contained the typical promoter motifs "TATA" and "CAAT". The β-glucosidase gene (Bgl1) from H. orientalis was cloned and recombined with promoter proA and terminator trpC. The expression cassette was ligated to the binary vector to form pUR5750-Bgl1, and then transferred into the host strain EU7-22 via Agrobacterium tumefaciens mediated transformation (ATMT), using hygromycin B resistance gene as the screening marker. Four transformants Bgl-1, Bgl-2, Bgl-3 and Bgl-4 were screened. Compared with the host strain EU7-22, the enzyme activities of filter paper (FPA) and β-glucosidase (BG) of transformant Bgl-2 increased by 10.6% and 19.1% under induction condition, respectively. The FPA and BG activities were enhanced by 22.2% and 700% under 2% glucose repression condition, respectively, compared with the host strain. The results showed that the putative promoter proA has successfully driven the over-expression of Bgl1 gene in H. orientalis under glucose repression condition.
培养基中高浓度的葡萄糖可极大地抑制丝状真菌中纤维素酶的表达。来自东方绿僵菌EU7-22的天冬氨酸蛋白酶在诱导条件和葡萄糖阻遏条件下均能高效表达。基于天冬氨酸蛋白酶结构基因的序列,通过基因组步移获得了包含推定启动子proA的上游序列,该启动子用于驱动天冬氨酸蛋白酶的表达。上游序列包含典型的启动子基序“TATA”和“CAAT”。克隆了来自东方绿僵菌的β-葡萄糖苷酶基因(Bgl1),并将其与启动子proA和终止子trpC重组。将表达盒连接到二元载体上形成pUR5750-Bgl1,然后通过根癌农杆菌介导的转化(ATMT)将其转入宿主菌株EU7-22,使用潮霉素B抗性基因作为筛选标记。筛选出四个转化子Bgl-1、Bgl-2、Bgl-3和Bgl-4。与宿主菌株EU7-22相比,在诱导条件下,转化子Bgl-2的滤纸酶活(FPA)和β-葡萄糖苷酶(BG)活性分别提高了10.6%和19.1%。在2%葡萄糖阻遏条件下,与宿主菌株相比,FPA和BG活性分别提高了22.2%和700%。结果表明,推定的启动子proA已成功驱动东方绿僵菌中Bgl1基因在葡萄糖阻遏条件下的过表达。