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Metabolic Impacts of Using Nitrogen and Copper-Regulated Promoters to Regulate Gene Expression in Neurospora crassa

机译:使用氮和铜调节的启动子来调节景天孢子的基因表达的代谢影响。

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摘要

The filamentous fungus Neurospora crassa is a long-studied eukaryotic microbial system amenable to heterologous expression of native and foreign proteins. However, relatively few highly tunable promoters have been developed for this species. In this study, we compare the tcu-1 and nit-6 promoters for controlled expression of a GFP reporter gene in N. crassa. Although the copper-regulated tcu-1 has been previously characterized, this is the first investigation exploring nitrogen-controlled nit-6 for expression of heterologous genes in N. crassa. We determined that fragments corresponding to 1.5-kb fragments upstream of the tcu-1 and nit-6 open reading frames are needed for optimal repression and expression of GFP mRNA and protein. nit-6 was repressed using concentrations of glutamine from 2 to 20 mM and induced in medium containing 0.5–20 mM nitrate as the nitrogen source. Highest levels of expression were achieved within 3 hr of induction for each promoter and GFP mRNA could not be detected within 1 hr after transfer to repressing conditions using the nit-6 promoter. We also performed metabolic profiling experiments using proton NMR to identify changes in metabolite levels under inducing and repressing conditions for each promoter. The results demonstrate that conditions used to regulate tcu-1 do not significantly change the primary metabolome and that the differences between inducing and repressing conditions for nit-6 can be accounted for by growth under nitrate or glutamine as a nitrogen source. Our findings demonstrate that nit-6 is a tunable promoter that joins tcu-1 as a choice for regulation of gene expression in N. crassa.
机译:丝状真菌Neurospora crassa是一个经过长期研究的真核微生物系统,适合天然和外源蛋白质的异源表达。但是,已经为该物种开发了相对很少的高度可调的启动子。在这项研究中,我们比较了tcu-1和nit-6启动子在N. crassa中GFP报告基因的受控表达。尽管铜调节的tcu-1先前已被表征,但这是首次探索氮控制的nit-6在猪笼草中表达异源基因的研究。我们确定对应于tcu-1和nit-6开放阅读框上游1.5-kb片段的片段对于最佳抑制和表达GFP mRNA和蛋白质是必需的。 nit-6通过使用2至20 mM的谷氨酰胺浓度来抑制,并在含有0.5-20 mM硝酸盐作为氮源的培养基中被诱导。每个启动子在诱导后3小时内达到最高表达水平,在使用nit-6启动子转移至阻遏条件后1小时内未检测到GFP mRNA。我们还使用质子NMR进行了代谢谱分析实验,以鉴定每个启动子在诱导和抑制条件下代谢物水平的变化。结果表明,用于调节tcu-1的条件不会显着改变主要代谢组,并且nit-6的诱导和抑制条件之间的差异可以通过在硝酸盐或谷氨酰胺作为氮源下的生长来解释。我们的研究结果表明,nit-6是一种可调节的启动子,可与tcu-1结合,作为调节猪笼草基因表达的一种选择。

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