Cloning, Expression, Enzymatic Characterization and Mechanistic Studies of M13 Mutant Acetohydroxyacid Synthase That Rescues Valine Feedback Inhibition

Yaqing Tan, Xingxing Gao, Zhiqiang An, Nan Wang, Yaqian Ma, Hailing Zhang
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Abstract

Acetohydroxyacid synthase (AHAS) is a key enzyme in the first step of the branched-chain amino acid synthesis pathway, and the production of acetohydroxybutyrate from one molecule of 2-ketobutyric acid and one molecule of pyruvate. AHAS is inhibited by feedback from L-valine, L-leucine, and L-isoleucine, and the expression of ilvBN, the gene encoding AHAS, is regulated by all three branched-chain amino acids. A change in amino acids 20–22 on the regulatory subunit (M13 mutation) removes the feedback inhibition by valine. We cloned the gene encoding AHAS (ilvBN) into a vector and then transfected it into Escherichia coli BL21 for expression with targeted changes in amino acids 20–22 on the regulatory subunit, and then determined the activity of the mutated AHAS and its inhibitory effects on valine, isoleucine, and leucine. The enzyme containing the M13 mutation was feedback resistant to all three amino acids. Previous studies have suggested that the binding sites for the three branched-chain amino acids may be at the same variable center. We investigated the enzymatic properties of wild-type and mutant AHAS, modeled their crystal structures, and resolved the mechanism of feedback inhibition induced by mutant M13, which will be useful for continuing the modification of AHAS and the design of broad-spectrum herbicides.
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可恢复缬氨酸反馈抑制的 M13 突变体乙酰羟基酸合成酶的克隆、表达、酶学特征和机理研究
乙酰羟基酸合成酶(AHAS)是支链氨基酸合成途径第一步的关键酶,也是由一分子 2-酮丁酸和一分子丙酮酸生成乙酰羟基丁酸的关键酶。AHAS受到L-缬氨酸、L-亮氨酸和L-异亮氨酸的反馈抑制,而编码AHAS的基因ilvBN的表达受这三种支链氨基酸的调节。调节亚基上 20-22 氨基酸的改变(M13 突变)消除了缬氨酸的反馈抑制作用。我们将编码 AHAS(ilvBN)的基因克隆到载体中,然后将其转染到大肠杆菌 BL21 中进行表达,并对调节亚基上的 20-22 氨基酸进行了有针对性的改变,然后测定了突变后 AHAS 的活性及其对缬氨酸、异亮氨酸和亮氨酸的抑制作用。含有 M13 突变的酶对这三种氨基酸都具有反馈抗性。以前的研究表明,三种支链氨基酸的结合位点可能位于同一个可变中心。我们研究了野生型和突变体 AHAS 的酶学特性,建立了它们的晶体结构模型,并解析了突变体 M13 诱导反馈抑制的机制,这将有助于继续改造 AHAS 和设计广谱除草剂。
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