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担子菌朱红密孔菌高效生产漆酶。

Highly efficient production of laccase by the basidiomycete Pycnoporus cinnabarinus.

作者信息

Alves Alexandra M C R, Record Eric, Lomascolo Anne, Scholtmeijer Karin, Asther Marcel, Wessels Joseph G H, Wösten Han A B

机构信息

Groningen Biomolecular Sciences and Biotechnology Institute (GBB), University of Groningen, Haren, The Netherlands.

出版信息

Appl Environ Microbiol. 2004 Nov;70(11):6379-84. doi: 10.1128/AEM.70.11.6379-6384.2004.

Abstract

An efficient transformation and expression system was developed for the industrially relevant basidiomycete Pycnoporus cinnabarinus. This was used to transform a laccase-deficient monokaryotic strain with the homologous lac1 laccase gene placed under the regulation of its own promoter or that of the SC3 hydrophobin gene or the glyceraldehyde-3-phosphate dehydrogenase (GPD) gene of Schizophyllum commune. SC3-driven expression resulted in a maximal laccase activity of 107 nkat ml(-1) in liquid shaken cultures. This value was about 1.4 and 1.6 times higher in the cases of the GPD and lac1 promoters, respectively. lac1-driven expression strongly increased when 25 g of ethanol liter(-1) was added to the medium. Accordingly, laccase activity increased to 1,223 nkat ml(-1). These findings agree with the fact that ethanol induces laccase gene expression in some fungi. Remarkably, lac1 mRNA accumulation and laccase activity also strongly increased in the presence of 25 g of ethanol liter(-1) when lac1 was expressed behind the SC3 or GPD promoter. In the latter case, a maximal laccase activity of 1,393 nkat ml(-1) (i.e., 360 mg liter(-1)) was obtained. Laccase production was further increased in transformants expressing lac1 behind its own promoter or that of GPD by growth in the presence of 40 g of ethanol liter(-1). In this case, maximal activities were 3,900 and 4,660 nkat ml(-1), respectively, corresponding to 1 and 1.2 g of laccase per liter and thus representing the highest laccase activities reported for recombinant fungal strains. These results suggest that P. cinnabarinus may be a host of choice for the production of other proteins as well.

摘要

为工业相关担子菌朱红密孔菌开发了一种高效的转化和表达系统。该系统用于用同源的漆酶基因lac1转化漆酶缺陷的单核菌株,该基因置于其自身启动子或裂褶菌的SC3疏水蛋白基因或甘油醛-3-磷酸脱氢酶(GPD)基因的调控之下。在液体摇瓶培养中,由SC3驱动的表达产生的漆酶最大活性为107 nkat ml(-1)。在GPD和lac1启动子的情况下,该值分别高出约1.4倍和1.6倍。当向培养基中添加25 g乙醇 liter(-1)时,由lac1驱动的表达强烈增加。相应地,漆酶活性增加到1,223 nkat ml(-1)。这些发现与乙醇在一些真菌中诱导漆酶基因表达这一事实相符。值得注意的是,当lac1在SC3或GPD启动子之后表达时,在存在25 g乙醇 liter(-1)的情况下,lac1 mRNA积累和漆酶活性也强烈增加。在后一种情况下,获得的漆酶最大活性为1,393 nkat ml(-1)(即360 mg liter(-1))。通过在存在40 g乙醇 liter(-1)的条件下生长,在其自身启动子或GPD启动子之后表达lac1的转化体中漆酶产量进一步增加。在这种情况下,最大活性分别为3,900和4,660 nkat ml(-1),分别相当于每升1 g和1.2 g漆酶,因此代表了重组真菌菌株报道的最高漆酶活性。这些结果表明,朱红密孔菌也可能是生产其他蛋白质的理想宿主。

相似文献

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Highly efficient production of laccase by the basidiomycete Pycnoporus cinnabarinus.担子菌朱红密孔菌高效生产漆酶。
Appl Environ Microbiol. 2004 Nov;70(11):6379-84. doi: 10.1128/AEM.70.11.6379-6384.2004.

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