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Identification of the sites of action for regulatory genes controlling the amdS gene of Aspergillus nidulans.

机译:确定控制构巢曲霉amdS基因的调控基因的作用位点。

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摘要

The amdS gene of Aspergillus nidulans, which encodes an acetamidase enzyme, is positively regulated by the trans-acting genes amdR, facB, amdA, and areA. Sequence changes in several cis-acting mutations in the 5' region of the gene which specifically affect amdS regulation were determined. The amdI9 mutation, which results in increased facB-dependent acetate induction, is due to a single-base change at base pair -210 relative to the start point of translation. The amdI93 mutation, which abolishes amdR-dependent omega-amino acid induction, is a deletion of base pairs -181 to -151. The amdI66 mutation, which causes increased gene activation in strains carrying amdA regulatory gene mutations, is a duplication of base pairs -107 to -90. Transformation of A. nidulans can generate transformants containing multiple integrated copies of plasmid sequences. When these plasmids carry a potential binding site for a regulatory gene product, growth on substrates whose catabolism requires genes activated by that regulatory gene can be reduced, apparently because of titration of the regulatory gene product. Introduction of 5' amdS sequences via cotransformation into strains of various genotypes was used to localize sequences apparently involved in binding of the products of the amdR, amdA, and facB genes. The position of these sequences is in agreement with the positions of the specific cis-acting mutations. Consistent with these results, a transformant of A. nidulans derived from a plasmid deleted for sequences upstream from -111 was found to have lost amdR- and facB-mediated control but was still regulated by the amdA gene. In addition, amdS expression in this transformant was still dependent on the areA gene.
机译:构巢酰胺酶的构巢曲霉的amdS基因受到反式作用基因amdR,facB,amdA和areA的正调控。确定了基因5'区域中几个特定于amdS调控的顺式作用突变的序列变化。 amdI9突变导致facB依赖性乙酸盐诱导增加,这是由于相对于翻译起点的碱基对-210处的单碱基变化。消除了amdR依赖性ω-氨基酸诱导的amdI93突变是碱基对-181至-151的缺失。 amdI66突变在携带amdA调节基因突变的菌株中引起增强的基因激活,是碱基对-107至-90的重复。构巢曲霉的转化可以产生包含质粒序列的多个整合拷贝的转化体。当这些质粒带有调节基因产物的潜在结合位点时,显然由于调节基因产物的滴定,其分解代谢需要被该调节基因激活的基因的底物上的生长可以减少。通过共转化将5'amdS序列引入各种基因型菌株中的方法是用于定位显然参与amdR,amdA和facB基因产物结合的序列。这些序列的位置与特定的顺式作用突变的位置一致。与这些结果一致,发现源自缺失-111上游序列的质粒的构巢曲霉的转化体失去了amdR和facB介导的控制,但仍受amdA基因调控。另外,在该转化体中的amdS表达仍然依赖于areA基因。

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