Zeilinger S, Mach R L, Kubicek C P
Abteilung für Mikrobielle Biochemie, Institut für Biochemische Technologie und Mikrobiologie, Technische Universität Wien, Getreidemarkt 9/1725, A-1060 Wien, Austria.
J Biol Chem. 1998 Dec 18;273(51):34463-71. doi: 10.1074/jbc.273.51.34463.
The cellulase system of the filamentous fungus Hypocrea jecorina (Trichoderma reesei) consists of several cellobiohydrolases, endoglucanases, and beta-glucosidases, encoded by separate genes, which are coordinately expressed in the presence of cellulose or the disaccharide sophorose. Using cell-free extracts from sophorose-induced and noninduced mycelia and various fragments of the cbh2 promoter of H. jecorina in electrophoretic mobility shift assay (EMSA) analysis and performing in vitro and in vivo footprinting analysis, we detected the nucleotide sequence 5'-ATTGGGTAATA-3' (consequently named cbh2-activating element (CAE)) to bind a protein complex with different migration in EMSA of induced and noninduced cell-free extracts. EMSA analysis, employing oligonucleotide fragments containing specifically mutated versions of CAE, revealed that protein binding requires the presence of an intact copy of either one of two adjacent motifs: a CCAAT (=ATTGG) box on the template strand and a GTAATA box on the coding strand, whereas a simultaneous mutation in both completely abolished binding. H. jecorina transformants, containing correspondingly mutated versions of the cbh2 promoter fused to the Escherichia coli hph gene as a reporter, expressed hph in a manner paralleling the efficacy of CAE-protein complex formation in EMSA, suggesting that the presence of either of both motifs is required for induction of cbh2 gene transcription. Antibody supershift experiments with anti-HapC antiserum as well as EMSA competition experiments with CCAAT binding promoter fragments of the Aspergillus nidulans amdS promoter suggest that the H. jecorina CCAAT box binding complex contains a homologue of HapC. The nature of the adjacent, GTAATA-binding protein(s) and its cooperation with the HapC homologue in cbh2 gene induction is discussed.
丝状真菌里氏木霉(Hypocrea jecorina,旧称Trichoderma reesei)的纤维素酶系统由几种纤维二糖水解酶、内切葡聚糖酶和β-葡萄糖苷酶组成,这些酶由不同的基因编码,在纤维素或二糖槐糖存在的情况下协同表达。我们利用槐糖诱导型和非诱导型菌丝体的无细胞提取物以及里氏木霉cbh2启动子的各种片段进行电泳迁移率变动分析(EMSA),并进行体外和体内足迹分析,检测到核苷酸序列5'-ATTGGGTAATA-3'(因此命名为cbh2激活元件(CAE)),该序列可与诱导型和非诱导型无细胞提取物的EMSA中迁移率不同的蛋白质复合物结合。使用含有CAE特异性突变版本的寡核苷酸片段进行EMSA分析表明,蛋白质结合需要两个相邻基序中任意一个完整拷贝的存在:模板链上的CCAAT(=ATTGG)框和编码链上的GTAATA框,而两者同时突变则完全消除结合。里氏木霉转化体含有与大肠杆菌hph基因融合的cbh2启动子的相应突变版本作为报告基因,其hph表达方式与EMSA中CAE-蛋白质复合物形成的效率平行,这表明两个基序中任意一个的存在是诱导cbh2基因转录所必需的。用抗HapC抗血清进行的抗体超迁移实验以及用构巢曲霉amdS启动子的CCAAT结合启动子片段进行的EMSA竞争实验表明,里氏木霉CCAAT框结合复合物包含HapC的同源物。本文讨论了相邻的GTAATA结合蛋白的性质及其与HapC同源物在cbh2基因诱导中的协同作用。