首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Negative Roles of a Novel Nitrogen Metabolite Repression-Related Gene TAR1 in Laccase Production and Nitrate Utilization by the Basidiomycete Cryptococcus neoformans
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Negative Roles of a Novel Nitrogen Metabolite Repression-Related Gene TAR1 in Laccase Production and Nitrate Utilization by the Basidiomycete Cryptococcus neoformans

机译:新型氮代谢物阻抑相关基因TAR1在漆酶生产和新孢子菌隐球菌的硝酸盐利用中的负作用。

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摘要

The multicopper oxidase laccase is widespread in fungi and has great industrial importance. One puzzle regarding laccase production in the basidiomycetous yeast Cryptococcus neoformans is that it is inhibited by high temperature (e.g., 37°C). In this paper, we report identification of a nitrogen metabolite repression-related gene, TAR1, which is responsible for laccase repression. Disruption of TAR1 results in a significant increase in the level of LAC1 mRNA at 37°C. The putative protein Tar1 shares a moderate level of similarity with the nitrogen metabolite repressors Nmr1 and NmrA from Neurospora crassa and Aspergillus nidulans, respectively. Likewise, Tar1 has a negative role in the utilization of nitrate. Furthermore, the structure of Tar1 is unique. Tar1 lacks the long C-terminal region of Nmr1 and NmrA. It contains the canonical Rossmann fold motif, GlyXXGlyXXGly, whereas Nmr1 and NmrA have variable residues at the Gly positions. Interestingly, the promoter region of TAR1 contains three TTC/GAA repeats which are likely the heat shock factor (Hsf) binding sites, implying that Hsf has a role in laccase inhibition. TAR1 mediation of temperature-associated repression of LAC1 suggests a novel mechanism of laccase regulation and a new function for Nmr proteins. Our work may be helpful for industry in terms of promotion of laccase activity.
机译:紫铜氧化酶漆酶广泛存在于真菌中,在工业上具有重要意义。关于在新孢子菌酵母中产生漆酶的一个难题是高温(例如37℃)抑制了漆酶的产生。在本文中,我们报告了与氮代谢物抑制相关的基因TAR1的鉴定,该基因负责漆酶的抑制。 TAR1的破坏导致37°C时LAC1 mRNA的水平显着增加。推定的蛋白质Tar1与来自Neurospora crassa和niperlanillus nidulans的氮代谢物阻抑物Nmr1和NmrA具有中等程度的相似性。同样,Tar1对硝酸盐的利用也有负面作用。此外,Tar1的结构是独特的。 Tar1缺少Nmr1和NmrA的长C端区域。它包含规范的Rossmann折叠基序GlyXXGlyXXGly,而Nmr1和NmrA在Gly位置具有可变残基。有趣的是,TAR1的启动子区域包含三个TTC / GAA重复序列,可能是热休克因子(Hsf)结合位点,暗示Hsf在漆酶抑制中起作用。 TAR1介导的LAC1的温度相关镇压表明漆酶调节的新机制和Nmr蛋白的新功能。我们的工作对于促进漆酶活性可能对工业有帮助。

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