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Structural and functional characterization of α-isopropylmalate synthase and citramalate synthase, members of the LeuA dimer superfamily

机译:LeuA二聚体超家族成员α-异丙基苹果酸合酶和柠檬酸合酶的结构和功能表征

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摘要

The manipulation of modular regulatory domains from allosteric enzymes represents a possible mechanism to engineer allostery into non-allosteric systems. Currently, there is insufficient understanding of the structure/function relationships in modular regulatory domains to rationally implement this methodology. The LeuA dimer regulatory domain represents a well-conserved, novel fold responsible for the regulation of two enzymes involved in branched chain amino acid biosynthesis, α-isopropylmalate synthase and citramalate synthase. The LeuA dimer regulatory domain is responsible for the feedback inhibition of these enzymes by their respective downstream products. Both enzymes display multidomain architecture with a conserved N-terminal TIM barrel catalytic domain and a C-terminal (βββα) _2 LeuA dimer domain joined by a flexible linker region. Due to the similarity of three-dimensional structure and catalytic mechanism combined with low sequence similarity, we propose these enzymes can be classified as members of the LeuA dimer superfamily. Despite their similarity, members of the LeuA dimer superfamily display diversity in their allosteric mechanisms. In this review, structural aspects of the LeuA dimer superfamily are discussed followed by three examples highlighting the diversity of allosteric mechanisms in the LeuA dimer superfamily.
机译:来自变构酶的模块化调节域的操纵代表了将变构工程化为非变构系统的可能机制。当前,对模块化监管领域中的结构/功能关系了解不足,无法合理地实施此方法。 LeuA二聚体调节域代表了一个高度保守的新颖折叠,负责调节支链氨基酸生物合成中涉及的两种酶α-异丙基苹果酸合酶和柠檬酸合酶。 LeuA二聚体调节结构域负责这些酶各自下游产物的反馈抑制。两种酶均显示具有保守的N端TIM桶催化结构域和C端(βββα)_2 LeuA二聚体结构域的多结构域结构,该结构域通过柔性接头区域连接。由于三维结构的相似性和催化机理以及较低的序列相似性,我们建议将这些酶归类为LeuA二聚体超家族成员。尽管它们相似,但LeuA二聚体超家族的成员在其变构机制中仍表现出多样性。在这篇综述中,讨论了LeuA二聚体超家族的结构方面,随后是三个例子,突出了LeuA二聚体超家族的变构机制的多样性。

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