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首页> 外文期刊>Current Genetics: Eukaryotes with Emphasis on Yeasts, Fungi, Mitochondria, Plastids >The veA gene is necessary for the negative regulation of the veA expression in Aspergillus nidulans.
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The veA gene is necessary for the negative regulation of the veA expression in Aspergillus nidulans.

机译:veA基因对于构巢曲霉中veA表达的负调控是必需的。

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The veA gene is one of the key genes in regulating sexual development of Aspergillus nidulans. During the study on the veA gene, it was observed that the veA expression level is slightly higher in a veA1 mutant than in a wild type at 37 degrees C, suggesting that the wild type veA gene is necessary for the negative regulation of the veA expression. In the veA1 mutant, the veA expression was higher than in a wild type grown at 42 degrees C but equal at 30 degrees C. Furthermore, in a veA deletion mutant having its own promoter and the N-terminus of the VeA ORF, expression of the N-terminus by the veA promoter was highly up-regulated, supporting the possibility that the veA gene is important for the negative regulation of the veA expression. Analyses of the lacZ transcript and the beta-galactosidase activity from the reporter strains in the veA1 background, which were constructed by transformation of the lacZ reporter plasmids containing the lacZ gene under the control of the intact or the truncated veA promoters from the -943 to +262 bp region, showed that the truncated promoters produced more veA transcript and higher beta-galactosidase activity than the intact one at 30 degrees C, but equal at 42 degrees C. In addition, the serial-deletion analysis of the veA promoter identified a crucial region in the promoter from -943 to -740 bp for this derepression of the veA expression. Taken together, these results indicated that the veA gene is necessary for the negative regulation of the veA expression. Moreover, the veA expression was derepressed in the light-illuminated condition, where the VeA protein is hardly transported into the nucleus.
机译:veA基因是调控构巢曲霉性发育的关键基因之一。在研究veA基因的过程中,发现在37摄氏度时veA1突变体中的veA表达水平略高于野生型,这表明野生型veA基因对于veA表达的负调控是必需的。在veA1突变体中,veA的表达高于在42摄氏度但在30摄氏度下生长的野生型。此外,在具有自己的启动子和VeA ORF N端的veA缺失突变体中, veA启动子的N端高度上调,支持veA基因对于veA表达的负调控很重要的可能性。 veA1背景中报告株的lacZ转录物和β-半乳糖苷酶活性分析,是通过将包含lacZ基因的lacZ报告质粒在完整或截短的veA启动子控制下从-943转化为lacZ报告质粒而构建的。 +262 bp区域显示,截短的启动子在30°C时比完整的启动子产生更多的veA转录物和更高的β-半乳糖苷酶活性,但在42°C时相等。此外,对veA启动子的序列缺失分析确定对于veA表达的这种抑制,启动子的关键区域从-943到-740 bp。综上所述,这些结果表明veA基因对于veA表达的负调控是必需的。此外,在光照条件下,veA蛋白几乎不转运到细胞核中,veA表达降低。

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