van Peij N N, Visser J, de Graaff L H
Section Molecular Genetics of Industrial Microorganisms, Wageningen Agricultural University, The Netherlands.
Mol Microbiol. 1998 Jan;27(1):131-42. doi: 10.1046/j.1365-2958.1998.00666.x.
Complementation by transformation of an Aspergillus niger mutant lacking xylanolytic activity led to the isolation of the xlnR gene. The xlnR gene encodes a polypeptide of 875 amino acids capable of forming a zinc binuclear cluster domain with similarity to the zinc clusters of the GAL4 superfamily of transcription factors. The XlnR-binding site 5'-GGCTAAA-3' was deduced after electrophoretic mobility shift assays, DNase I footprinting and comparison of various xylanolytic promoters. The importance of the second G within the presumed XlnR binding site 5'-GGCTAAA-3' was confirmed in vitro and in vivo. The 5'-GGCTAAA-3' consensus sequence is found within several xylanolytic promoters of various Aspergillus species and Penicillium chrysogenum. Therefore, this sequence may be an important and conserved cis-acting element in induction of xylanolytic genes in filamentous fungi. Our results indicate that XlnR is a transcriptional activator of the xylanolytic system in A. niger.
通过转化缺乏木聚糖酶活性的黑曲霉突变体实现互补,从而分离出了xlnR基因。xlnR基因编码一个由875个氨基酸组成的多肽,该多肽能够形成一个锌双核簇结构域,与转录因子GAL4超家族的锌簇具有相似性。通过电泳迁移率变动分析、DNase I足迹法以及对各种木聚糖酶启动子的比较,推导得出XlnR结合位点5'-GGCTAAA-3'。在体外和体内均证实了假定的XlnR结合位点5'-GGCTAAA-3'中第二个G的重要性。在多种曲霉属物种和产黄青霉的几个木聚糖酶启动子中都发现了5'-GGCTAAA-3'共有序列。因此,该序列可能是丝状真菌中诱导木聚糖酶基因表达的一个重要且保守的顺式作用元件。我们的结果表明,XlnR是黑曲霉木聚糖酶系统的转录激活因子。