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木糖浓度依赖性水解酶表达谱及 CreA 和 XlnR 在黑曲霉中的功能。

d-Xylose concentration-dependent hydrolase expression profiles and the function of CreA and XlnR in Aspergillus niger.

机构信息

Fungal Systems Biology, Laboratory of Systems and Synthetic Biology, Wageningen University, Wageningen, The Netherlands.

出版信息

Appl Environ Microbiol. 2012 May;78(9):3145-55. doi: 10.1128/AEM.07772-11. Epub 2012 Feb 17.

Abstract

Aspergillus niger is an important organism for the production of industrial enzymes such as hemicellulases and pectinases. The xylan-backbone monomer, d-xylose, is an inducing substance for the coordinate expression of a large number of polysaccharide-degrading enzymes. In this study, the responses of 22 genes to low (1 mM) and high (50 mM) d-xylose concentrations were investigated. These 22 genes encode enzymes that function as xylan backbone-degrading enzymes, accessory enzymes, cellulose-degrading enzymes, or enzymes involved in the pentose catabolic pathway in A. niger. Notably, genes encoding enzymes that have a similar function (e.g., xylan backbone degradation) respond in a similar manner to different concentrations of d-xylose. Although low d-xylose concentrations provoke the greatest change in transcript levels, in particular, for hemicellulase-encoding genes, transcript formation in the presence of high concentrations of d-xylose was also observed. Interestingly, a high d-xylose concentration is favorable for certain groups of genes. Furthermore, the repressing influence of CreA on the transcription and transcript levels of a subset of these genes was observed regardless of whether a low or high concentration of d-xylose was used. Interestingly, the decrease in transcript levels of certain genes on high d-xylose concentrations is not reflected by the transcript level of their activator, XlnR. Regardless of the d-xylose concentration applied and whether CreA was functional, xlnR was constitutively expressed at a low level.

摘要

黑曲霉是生产半纤维素酶和果胶酶等工业酶的重要生物体。木聚糖骨架单体 d-木糖是大量多糖降解酶协调表达的诱导物质。在这项研究中,研究了 22 个基因对低(1mM)和高(50mM)d-木糖浓度的反应。这 22 个基因编码的酶作用于木聚糖骨架降解酶、辅助酶、纤维素降解酶或参与黑曲霉戊糖代谢途径的酶。值得注意的是,具有相似功能(如木聚糖骨架降解)的基因编码的酶对不同浓度的 d-木糖的响应方式相似。尽管低浓度的 d-木糖会引起转录水平最大的变化,特别是对半纤维素酶编码基因而言,但在高浓度的 d-木糖存在下也观察到了转录的形成。有趣的是,高浓度的 d-木糖有利于某些基因群。此外,无论使用低浓度还是高浓度的 d-木糖,CreA 对这些基因子集的转录和转录水平都有抑制作用。有趣的是,某些基因在高浓度 d-木糖下转录水平的降低并不反映其激活子 XlnR 的转录水平。无论施加的 d-木糖浓度如何,以及 CreA 是否起作用,xlnR 都以低水平组成型表达。

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