Tamayo Elsy N, Villanueva Adela, Hasper Alinda A, de Graaff Leo H, Ramón Daniel, Orejas Margarita
Departamento de Biotecnología, Instituto de Agroquímica y Tecnología de Alimentos, Consejo Superior de Investigaciones Científicas, Apartado de Correos 73, 46100 Burjassot, Valencia, Spain.
Fungal Genet Biol. 2008 Jun;45(6):984-93. doi: 10.1016/j.fgb.2008.03.002. Epub 2008 Mar 10.
The Aspergillus nidulans xlnR gene encodes a Zn(2)Cys(6) transcription activator necessary for the synthesis of the main xylanolytic enzymes, i.e. endo-xylanases X(22), X(24) and X(34), and beta-xilosidase XlnD. Expression of xlnR is not sufficient for induction of genes encoding the xylanolytic complex, the presence of xylose is absolutely required. It has been established previously that the wide-domain carbon catabolite repressor CreA indirectly represses xlnA (encodes X(22)) and xlnB (encodes X(24)) genes as well as exerting direct repression on xlnA. This work provides evidence that CreA-mediated indirect repression occurs through repression of xlnR: (i) the xlnR gene promoter is repressed by glucose and this repression is abolished in creA(d)30 mutant strains and (ii) deregulated expression of xlnR completely relieves glucose repression of xlnA and xlnB. Thus, CreA and XlnR form a transcriptional cascade regulating A. nidulans xylanolytic genes.
构巢曲霉xlnR基因编码一种Zn(2)Cys(6)转录激活因子,该因子是合成主要木聚糖分解酶(即内切木聚糖酶X(22)、X(24)和X(34)以及β-木糖苷酶XlnD)所必需的。xlnR的表达不足以诱导编码木聚糖分解酶复合体的基因,木糖的存在是绝对必需的。先前已经确定,广域碳代谢物阻遏蛋白CreA间接抑制xlnA(编码X(22))和xlnB(编码X(24))基因,并对xlnA施加直接抑制作用。这项工作提供了证据表明,CreA介导的间接抑制是通过抑制xlnR发生的:(i) xlnR基因启动子被葡萄糖抑制,而在creA(d)30突变菌株中这种抑制作用被消除;(ii) xlnR的失调表达完全解除了葡萄糖对xlnA和xlnB的抑制。因此,CreA和XlnR形成了一个调节构巢曲霉木聚糖分解基因的转录级联。