Identification of Aspergillus brlA response elements (BREs) by genetic selection in yeast.

Identification of Aspergillus brlA response elements (BREs) by genetic selection in yeast.
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通过酵母遗传选择鉴定曲霉 brlA 响应元件 (BRE)。

DOI:
10.1093/genetics/133.1.29
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发表时间:
1993
期刊:
影响因子:
3.3
通讯作者:
Timberlake,WE
Timberlake,WE
中科院分区:
生物学2区
文献类型:
--
作者:
Chang,YC;Timberlake,WE

文献摘要

被引文献

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构巢曲霉的 brlA 基因在控制分生孢子梗发育中发挥着核心作用。为了测试 brlA 编码转录调节因子的假设并鉴定 BrlA 多肽的相互作用位点,我们在含有插入到与大肠杆菌 lacZ 基因融合的最小酵母启动子上游的曲霉属 DNA 序列的酿酒酵母(酵母)菌株中表达 brlA。最初,对来自发育调节的 rodA 基因启动子区域的 DNA 片段进行了测试,结果显示其介导 brlA 依赖性转录激活。根据曲霉属基因组文库对酵母中 brlA 的反应能力,从曲霉属基因组文库中选择了另外两个 DNA 片段。这些片段包含存在于 rodA 片段中的序列基序的多个拷贝,我们建议将其作为 BrlA 相互作用的位点并指定为 brlA 响应元件 (BRE)。含有位于最小曲霉属启动子上游的 BRE 的 DNA 片段能够赋予曲霉属发育调节作用。 rodA 上游区域 BRE 的缺失大大降低了其发育诱导。合成寡核苷酸的多个拷贝,具有在酵母中 BRE 介导的 brlA 依赖性转录激活中鉴定的共有序列。结果表明,brlA 的主要活性是转录激活,并初步鉴定了 BrlA 多肽的相互作用位点。
The brlA gene of Aspergillus nidulans plays a central role in controlling conidiophore development. To test the hypothesis that brlA encodes a transcriptional regulator and to identify sites of interaction for the BrlA polypeptide, we expressed brlA in Saccharomyces cerevisiae (yeast) strains containing Aspergillus DNA sequences inserted upstream of a minimal yeast promoter fused to the Escherichia coli lacZ gene. Initially, a DNA fragment from the promoter region of the developmentally regulated rodA gene was tested and shown to mediate brlA-dependent transcriptional activation. Two additional DNA fragments were selected from an Aspergillus genomic library by their ability to respond to brlA in yeast. These fragments contained multiple copies of a sequence motif present in the rodA fragment, which we propose to be sites for BrlA interaction and designate brlA response elements (BREs). DNA fragments containing BREs upstream of a minimal Aspergillus promoter were capable of conferring developmental regulation in Aspergillus. Deletion of BREs from the upstream region of rodA greatly decreased its developmental induction. Multiple copies of a synthetic oligonucleotide with the consensus sequence identified among the BREs mediated brlA-dependent transcriptional activation in yeast. The results show that a primary activity of brlA is transcriptional activation and tentatively identify sites of interaction for the BrlA polypeptide.